Tom Nikkola | VIGOR Training

Tom Nikkola | VIGOR Training

By Tom Nikkola | VIGOR TrainingHealth & FitnessNutritionMental HealthFitness
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Tom Nikkola | VIGOR Training episodes

  • Unlock Your Brain’s Potential: How To Optimize Your Neurotransmitters

    When writing about health and fitness, I often weave hormones into the discussion. I’m asked more about hormones than most other topics, as well. But there’s another crucial category of communicators that deserves equal attention: neurotransmitters.

    These chemicals have a massive influence on how you feel, think, and even how you perform. They’re often overlooked in mainstream health discussions, but understanding them can be a game-changer for your well-being. In this guide, we will dig deep into neurotransmitters: what they are, how they’re different from hormones, and why you should care about them for your overall health.

    The Difference Between Hormones and Neurotransmitters

    Hormones are like the body’s long-distance messengers. Produced by glands in the endocrine system, they travel through the bloodstream to deliver signals to various tissues and organs.Marieb, E. N., & Hoehn, K. (2018). Human Anatomy & Physiology (11th ed.). Pearson. They’re behind a lot of what happens in your body, from controlling your metabolism to regulating your sleep cycles.

    Neurotransmitters, on the other hand, are more like local couriers. They operate mainly in the brain, helping neurons communicate with each other.Kandel, E. R., Schwartz, J. H., & Jessell, T. M. (2000). Principles of Neural Science (4th ed.). McGraw-Hill. Unlike hormones, they don’t travel long distances. They make their impact in the tiny spaces between neurons, called synapses, and their effects are often immediate.

    Key Differences
    1. Speed of Action: Neurotransmitters work fast, almost instantly. Hormones usually take more time to show their effects.
    2. Range of Influence: Hormones can affect multiple systems throughout the body. Neurotransmitters usually have a more localized impact, especially within the brain.
    3. Regulatory Mechanisms: Hormones are typically regulated by feedback loops involving multiple organs. Neurotransmitters are primarily regulated within the nervous system.
    4. How Neurotransmitters Impact Your Health
      Physical Health

      Dopamine and norepinephrine aren’t just about feeling good; they’re about energy optimization. These neurotransmitters act in the brain’s arousal system, influencing both wakefulness and alertness. Low levels can lead to symptoms akin to chronic fatigue syndrome, affecting not just your mood but also your physical stamina.Tumilty, S., et al. (2018). The effects of norepinephrine on hemodynamics and oxygen metabolism in hyperdynamic sepsis. Journal of Intensive Care Medicine, 33(6), 357-364.

      Physical Performance

      Acetylcholine is a neurotransmitter that you might not have heard of, but it’s crucial for anyone interested in physical performance. It acts as the messenger between your nerves and muscles, facilitating the contraction that allows for movement. A deficiency in acetylcholine can lead to muscle weakness and decreased athletic performance.Deschenes, M. R., & Wilson, M. H. (2003). Age-related differences in synaptic plasticity following muscle unloading. The Journals of Gerontology Series A: Biological Sciences and Medical Sciences, 58(8), B678-B687.

      Mental Health

      When it comes to mood regulation, serotonin and dopamine are the big players. An imbalance in serotonin levels has been directly linked to mood disorders like depression and anxiety. Dopamine also plays a role in how we perceive pleasure and reward, which impacts our emotional well-being.Wise, R. A. (2004). Dopamine, learning and motivation. Nature Reviews Neuroscience, 5(6), 483-494.

      Acetylcholine doesn’t just affect your muscles; it’s also vital for your brain. It plays a significant role in attention, learning, and memory. Studies have found that decreased acetylcholine levels are associated with cognitive impairments, including those seen in Alzheimer’s disease.Schliebs, R., & Arendt, T. (2011). The cholinergic system in aging and neuronal degeneration. Behavioural Brain Research, 221(2), 555-563.

      Daily Life and Productivity

      Ever find it hard to concentrate? Dopamine could be a factor. This neurotransmitter is essential for focus and the ability to sustain attention. Low levels have been linked to attention deficit disorders and decreased productivity.Volkow, N. D., et al. (2011). Motivation deficit in ADHD is associated with dysfunction of the dopamine reward pathway. Molecular Psychiatry, 16(11), 1147-1154.

      Here’s where the dopamine-reward system comes into play. This system is what pushes you to achieve your goals, whether it’s acing an exam or hitting a new personal record in the gym. Without sufficient dopamine, you might find it hard to muster the motivation to accomplish tasks, big or small.Schultz, W. (2015). Neuronal reward and decision signals: from theories to data. Physiological Reviews, 95(3), 853-951.

      Read also: Hope Molecules: The Amazing Chemicals of Mental Health.

      Creating Imbalances and Deficiencies: The Modern Lifestyle
      Stress

      Chronic stress is more than just an emotional burden; it’s a biochemical one. Long-term stress elevates cortisol levels, which in turn can deplete your brain’s serotonin and dopamine levels.Marin, M. F., et al. (2011). Chronic stress, cognitive functioning and mental health. Neurobiology of Learning and Memory, 96(4), 583-595. This can lead to a vicious cycle where stress triggers neurotransmitter imbalances, leading to increased stress sensitivity and mental health issues.Southwick, S. M., Vythilingam, M., & Charney, D. S. (2005). The psychobiology of depression and resilience to stress: implications for prevention and treatment. Annual Review of Clinical Psychology, 1, 255-291.

      Dietary Choices

      You are what you eat, and this is especially true for your neurotransmitters. Diets high in processed foods and sugars can lead to imbalances in serotonin and dopamine.Francis, H., & Stevenson, R. (2013). The longer-term impacts of Western diet on human cognition and the brain. Appetite, 63, 119-128. On the flip side, nutrient-dense foods rich in amino acids, vitamins, and minerals can support neurotransmitter balance.Young, S. N. (2007). How to increase serotonin in the human brain without drugs. Journal of Psychiatry & Neuroscience, 32(6), 394-399.

      Medications

      Certain medications, including some antidepressants and antipsychotics, can significantly alter neurotransmitter levels.Hyman, S. E., & Nestler, E. J. (1996). Initiation and adaptation: A paradigm for understanding psychotropic drug action. The American Journal of Psychiatry, 153(2), 151-162. While these drugs can be life-saving for some, they often come with a host of side effects, including further neurotransmitter imbalances.Pacher, P., & Kecskemeti, V. (2004). Trends in the development of new antidepressants. Current Medicinal Chemistry, 11(7), 925-943.

      Substance Abuse

      Substances like alcohol, drugs, and even caffeine can dramatically affect neurotransmitter levels. For instance, alcohol can both excite and inhibit neurotransmitter activity, leading to mood swings and cognitive impairments.Lovinger, D. M., & Roberto, M. (2013). Synaptic effects induced by alcohol. Current Topics in Behavioral Neurosciences, 13, 31-86.

      The Road to Restoration: Diet, Supplements, and Exercise
      Dietary Changes
      Nutrients for Neurotransmitter Production
      • Serotonin: Tryptophan-rich foods like turkey, chicken, and eggs can help boost serotonin levels.Fernstrom, J. D., & Fernstrom, M. H. (2007). Tyrosine, phenylalanine, and catecholamine synthesis and function in the brain. The Journal of Nutrition, 137(6), 1539S-1547S.
      • Dopamine: Tyrosine-rich foods such as lean beef, soy, and legumes are effective for increasing dopamine.Markus, C. R., et al. (2008). The bovine protein alpha-lactalbumin increases the plasma ratio of tryptophan to the other large neutral amino acids, and in vulnerable subjects raises brain serotonin activity, reduces cortisol concentration, and improves mood under stress. The American Journal of Clinical Nutrition, 77(6), 1446-1455.
      • The Role of Micronutrients
        • B-vitamins: Essential for serotonin and dopamine synthesis, found in whole grains and leafy greens.Kennedy, D. O. (2016). B vitamins and the brain: Mechanisms, dose and efficacy—A review. Nutrients, 8(2), 68.
        • Magnesium: Helps regulate neurotransmitter function, found in nuts and seeds.
        • Supplementation
          Targeted Supplements for Specific Neurotransmitters
          • Serotonin Imbalance
            • 5-HTP: Direct precursor to serotonin, useful for depression and insomnia.Shaw, K., Turner, J., & Del Mar, C. (2002). Tryptophan and 5-hydroxytryptophan for depression. Cochrane Database of Systematic Reviews, (1), CD003198.
            • St. John’s Wort: Increases serotonin levels, often used for mild to moderate depression.Linde, K., et al. (2008). St John’s wort for major depression. Cochrane Database of Systematic Reviews, (4), CD000448.
            • SAMe (S-Adenosyl methionine): Involved in neurotransmitter synthesis, can improve mood.Sharma, A., Gerbarg, P., Bottiglieri, T., Massoumi, L., Carpenter, L. L., Lavretsky, H., … & Muskin, P. R. (2017). S-Adenosylmethionine (SAMe) for Neuropsychiatric Disorders: A Clinician-Oriented Review of Research. The Journal of Clinical Psychiatry, 78(6), e656–e667.
            • Dopamine Deficiency
              • L-Tyrosine: A precursor to dopamine, effective for focus and motivation.Gillman, P. K. (2006). A review of serotonin toxicity data: implications for the mechanisms of antidepressant drug action. Biological Psychiatry, 59(11), 1046-1051.
              • Mucuna Pruriens: Contains L-DOPA, which converts to dopamine in the brain.Lampariello, L. R., Cortelazzo, A., Guerranti, R., Sticozzi, C., & Valacchi, G. (2012). The Magic Velvet Bean of Mucuna pruriens. Journal of Traditional and Complementary Medicine, 2(4), 331–339.
              • Rhodiola Rosea: An adaptogen that can increase dopamine sensitivity.Panossian, A., & Wikman, G. (2010). Rosenroot (Rhodiola rosea): Traditional Use, Chemical Composition, Pharmacology and Clinical Efficacy. Phytomedicine, 17(7), 481–493.
              • Acetylcholine
                • Alpha-GPC: Boosts acetylcholine, useful for cognitive function.Zeisel, S. H. (2004). Nutritional importance of choline for brain development. Journal of the American College of Nutrition, 23(6_suppl), 621S-626S.
                • Huperzine A: Inhibits the breakdown of acetylcholine, beneficial for memory and focus.Qian, Z. M., & Ke, Y. (2014). Huperzine A: Is it an Effective Disease-Modifying Drug for Alzheimer’s Disease? Frontiers in Aging Neuroscience, 6, 216.
                • GABA
                  • GABA Supplements: Direct supplementation can improve relaxation and sleep quality.Abdou, A. M., Higashiguchi, S., Horie, K., Kim, M., Hatta, H., & Yokogoshi, H. (2006). Relaxation and immunity enhancement effects of gamma-aminobutyric acid (GABA) administration in humans. BioFactors, 26(3), 201-208.
                  • L-Theanine: Found in tea, this amino acid can boost GABA levels and has a calming effect.Kakuda, T., Nozawa, A., Unno, T., Okamura, N., & Okai, O. (2000). Inhibiting effects of theanine on caffeine stimulation evaluated by EEG in the rat. Bioscience, Biotechnology, and Biochemistry, 64(2), 287-293.
                  • Magnesium: Acts as a natural GABA agonist, improving sleep and reducing anxiety.Poleszak, E., Szewczyk, B., Kędzierska, E., Wlaź, P., Pilc, A., & Nowak, G. (2004). Antidepressant- and anxiolytic-like activity of magnesium in mice. Pharmacology Biochemistry and Behavior, 78(1), 7-12.
                  • Timing and Dosage
                    • 5-HTP: 50-100mg, 30 minutes before meals, three times a day.
                    • L-Tyrosine: 500-1000mg, before activities requiring focus.
                    • Alpha-GPC: 300-600mg, best taken in the morning to enhance cognitive function throughout the day.Abbie E. Smith-Ryan, Erica J. Roelofs, Malia N. Blue, et al., Timing of ergogenic aids and micronutrients on muscle and exercise performance, Journal of the International Society of Sports Nutrition, 16, 1, (2019).
                    • GABA: 100-200mg before bedtime or during times of high stress.
                    • Physical Exercise
                      Exercise Types and Neurotransmitter Levels
                      • For Boosting Serotonin: Aerobic exercise like running and cycling are effective.Meeusen, R. (2014). Exercise, nutrition and the brain. Sports Medicine, 44(Suppl 1), 47-56.
                      • For Increasing Dopamine: High-intensity interval training (HIIT) can be more effective for boosting dopamine levels.Neeper, S. A., Gómez-Pinilla, F., Choi, J., & Cotman, C. W. (1996). Physical activity increases mRNA for brain-derived neurotrophic factor and nerve growth factor in rat brain. Brain Research, 726(1-2), 49-56.
                      • Exercise Prescriptions
                        • Low Serotonin: Aim for at least 150 minutes of moderate aerobic exercise per week.Cotman, C. W., & Berchtold, N. C. (2002). Exercise: A behavioral intervention to enhance brain health and plasticity. Trends in Neurosciences, 25(6), 295-301.
                        • Low Dopamine: Incorporate at least two HIIT sessions per week, consisting of 4-6 high-intensity intervals.
                        • Additional Approaches to Optimize Neurotransmitters
                          Mindfulness and Stress Management

                          Practicing mindfulness can significantly modulate neurotransmitter levels. Mindfulness-based stress reduction (MBSR) has been shown to increase serotonin and dopamine levels while reducing cortisol.Tang, Y. Y., Ma, Y., Wang, J., Fan, Y., Feng, S., Lu, Q., … & Posner, M. I. (2007). Short-term meditation training improves attention and self-regulation. Proceedings of the National Academy of Sciences, 104(43), 17152–17156.

                          Activities like deep-breathing exercises and progressive muscle relaxation can also positively affect neurotransmitter balance by reducing stress hormones and promoting relaxation.Zaccaro, A., Piarulli, A., Laurino, M., Garbella, E., Menicucci, D., Neri, B., & Gemignani, A. (2018). How Breath-Control Can Change Your Life: A Systematic Review on Psycho-Physiological Correlates of Slow Breathing. Frontiers in Human Neuroscience, 12, 353.

                          Sleep Quality

                          Sleep plays a critical role in neurotransmitter balance. REM sleep, in particular, helps reset brain chemistry, making it essential for maintaining optimal neurotransmitter levels.Walker, M. P. (2009). The role of sleep in cognition and emotion. Annals of the New York Academy of Sciences, 1156(1), 168-197.

                          Adhering to a consistent sleep schedule and creating a sleep-friendly environment can significantly improve sleep quality and, by extension, neurotransmitter balance.Irish, L. A., Kline, C. E., Gunn, H. E., Buysse, D. J., & Hall, M. H. (2015). The role of sleep hygiene in promoting public health: A review of empirical evidence. Sleep Medicine Reviews, 22, 23-36.

                          Social Interactions and Support

                          The importance of social interactions extends beyond the feel-good moments they provide. Our brains are wired to be social, and neurotransmitters like oxytocin, dopamine, and serotonin play a critical role in social bonding and interactions.Feldman, R., Monakhov, M., Pratt, M., & Ebstein, R. P. (2016). Oxytocin Pathway Genes: Evolutionary Ancient System Impacting on Human Affiliation, Sociality, and Psychopathology. Biological Psychiatry, 79(3), 174-184. This “social neurochemistry” influences not only our mood but also our cognitive function, stress levels, and even long-term mental health.

                          Oxytocin: The Bonding Molecule

                          Oxytocin, often referred to as the “bonding molecule,” is released during positive social interactions like hugging, listening, and even simple eye contact. Elevated oxytocin levels have been shown to reduce stress and anxiety, effectively counteracting the negative effects of cortisol and promoting a sense of well-being.Heinrichs, M., Baumgartner, T., Kirschbaum, C., & Ehlert, U. (2003). Social support and oxytocin interact to suppress cortisol and subjective responses to psychosocial stress. Biological Psychiatry, 54(12), 1389-1398.

                          Dopamine: The Reward of Social Connection

                          Social interactions also trigger the release of dopamine, reinforcing the “rewarding” aspect of human connection. This dopamine release can enhance mood and motivation, making social interactions a natural and effective way to boost this crucial neurotransmitter.Berridge, K. C., & Kringelbach, M. L. (2015). Pleasure systems in the brain. Neuron, 86(3), 646-664.

                          The Mental Health Implications of Social Isolation

                          In contrast, social isolation or lack of quality social interactions can lead to imbalances in these neurotransmitters, contributing to feelings of loneliness, increased stress, and heightened risk of depression.Cacioppo, J. T., & Cacioppo, S. (2018). The growing problem of loneliness. The Lancet, 391(10119), 426.

                          Building a Support Network in a Remote World

                          In today’s remote work environment, maintaining a social support network may require proactive effort. Virtual meetups, regular video calls with friends and family, or even online social groups related to your interests can serve as modern avenues for social connection. These interactions, even if virtual, can still positively impact neurotransmitter levels and overall mental well-being.Holt-Lunstad, J., Smith, T. B., & Layton, J. B. (2010). Social relationships and mortality risk: A meta-analytic review. PLoS Medicine, 7(7), e1000316.

                          Conclusion: Taking Control of Your Neurotransmitter Balance

                          Understanding neurotransmitters goes beyond the realms of science and into everyday well-being. They’re not just chemicals in our brain; they are the regulators of mood, focus, stress, and social interaction. Whether it’s serotonin’s role in combating depression or the power of oxytocin in social bonding, these “brain messengers” have a profound impact on our lives.

                          It’s clear that our modern lifestyle—replete with stress, poor diet, lack of exercise, and dwindling social interactions—can wreak havoc on neurotransmitter balance. But the good news is that you have the power to restore this balance.

                          • Dietary Changes: Consuming nutrient-rich foods can provide the essential building blocks for neurotransmitter production.
                          • Supplementation: Various supplements target specific neurotransmitters, offering another layer of balance restoration.
                          • Physical Exercise: Different types of exercise can boost different neurotransmitters, offering both physical and mental benefits.
                          • Mindfulness and Stress Management: Techniques like mindfulness can further help balance neurotransmitters.
                          • Social Interactions: In today’s remote world, maintaining a social life is more crucial than ever for mental well-being.
                          • By being proactive about your lifestyle choices, you can optimize your neurotransmitter levels and, in turn, improve your mental and physical health. It’s an empowering journey, and it starts with the first step of awareness.

                            16 min
                          • The Truth About Water Fasts: Good, Bad, and Alternatives.
                            Water fasting has become a buzzword in the world of health and fitness. It makes headlines, is the focus of online challenges, and has plenty of social media influencers framing it up as a "health hack." But is it a miracle cure-all, an overhyped fad, or something in between?
                            In today's society, where quick fixes are often sought after but seldom effective, it's crucial to separate fact from fiction.
                            This article aims to provide you with a comprehensive, science-backed look into the practice of water fasting. We'll delve into its history, the underlying physiology, and the potential benefits and risks. We'll also take a look at the popular belief that water fasting is a powerful detoxifying solution, and offer some practical alternatives for those who find water fasting too extreme or risky.
                            Oh, and if you were wondering, I do not recommend multiple-day water fasts for reasons that should soon be obvious. However, there are plenty of people interested in doing one.
                            Whether you're contemplating your first fast or are a seasoned faster looking for more information, this article is your go-to guide for understanding the truth about water fasting.
                            History of Fasting
                            Fasting is far from a modern-day concept. In fact, it's one of the oldest therapeutic practices known to mankind, deeply rooted in various cultures and religions. From the Biblical accounts of Jesus fasting in the desert to the sacred Islamic practice of Ramadan, fasting has been heralded for its spiritual and physical benefits for millennia.
                            In recent years, however, fasting has made a resurgence, not just as a religious or cultural practice, but as a scientifically-backed approach to improving health. Modern-day fasting is often stripped of its spiritual origins, rebranded under various names like intermittent fasting, time-restricted eating, and of course, water fasting. But whether it's an ancient ritual or a 21st-century health trend, the core concept remains the same: abstaining from food for a period of time to achieve a specific outcome.
                            What Is Water Fasting?
                            Water fasting is a form of voluntary food deprivation where one abstains from all forms of food and caloric beverages, consuming only water for a set period. Unlike other forms of fasting, where certain foods or some calories may still be allowed, water fasting is more restrictive. It aims to bring the body into a state where it relies on stored fat and other reserves for energy, rather than incoming food.
                            There are different types of water fasting, each with its own set of rules and durations:
                            Short-Term Water Fasting: Lasts for 24 to 72 hours and is generally considered safe for most healthy adults.
                            Extended Water Fasting: Goes beyond 72 hours and should only be done under medical supervision.
                            Periodic Water Fasting: Involves shorter fasts done repeatedly over a longer period, like once a week or once a month.
                            While water fasting may seem extreme to some, it's essential to understand how it differs from other types of fasting. Unlike intermittent fasting, where eating windows and fasting periods are defined but caloric intake is not restricted, water fasting requires complete abstinence from calories. This results in a deeper fasting state, triggering unique physiological responses.
                            The Science Behind Water Fasting
                            Understanding the physiological changes that occur during water fasting is crucial for grasping both its benefits and risks. When you abstain from food, several processes kick in to sustain your body's energy requirements.
                            Glycogen Depletion: Initially, your body taps into glycogen stores in the liver and muscles for energy. However, these stores are limited and deplete within about 24 hours.Cahill, G. F., Jr. (2006). Fuel metabolism in starvation. Annual Review of Nutrition, 26, 1-22.
                            Ketosis: As glycogen stores run out, the body starts breaking down fats to produce ketones, a secondary source of energy.Veech, R. L. (2004).
                            22 min
                          • The Low Testosterone Crisis: 17 Causes You Need to Know About
                            We're in the midst of a testosterone crisis. Alarmingly, the average levels of this crucial male hormone have been plummeting, with one seminal study reporting a staggering 1% annual decline in average testosterone levels since the late 20th century.Travison, T. G., Araujo, A. B., O'Donnell, A. B., Kupelian, V., & McKinlay, J. B. (2007). A population-level decline in serum testosterone levels in American men. The Journal of Clinical Endocrinology & Metabolism, 92(1), 196-202. This decline isn't just a number; it's a reality affecting men's health, well-being, and quality of life. Lower testosterone levels have been linked to an increased risk of cardiovascular disease, decreased muscle mass, diminished cognitive function, and even a reduced lifespan.Araujo, A. B., Esche, G. R., Kupelian, V., O'Donnell, A. B., Travison, T. G., Williams, R. E., ... & McKinlay, J. B. (2007). Prevalence of symptomatic androgen deficiency in men. The Journal of Clinical Endocrinology & Metabolism, 92(11), 4241-4247. So, to call it a "crisis" is no exaggeration at all.
                            You're in the right place if you're concerned about low testosterone or suspect you may be part of this growing trend. This article breaks down the 17 leading causes of low testosterone—all supported by scientific evidence. It's actionable, understandable information that you can use to take charge of your health.
                            1. Aging
                            By the time you hit 30, your testosterone levels could start to decline by around 1% each year.Harman, S. M., Metter, E. J., Tobin, J. D., Pearson, J., & Blackman, M. R. (2001). Longitudinal effects of aging on serum total and free testosterone levels in healthy men. The Journal of Clinical Endocrinology & Metabolism, 86(2), 724-731. Why does this happen? Simply put, it's due to a slowdown in testicular function coupled with a decrease in the responsiveness to luteinizing hormone (LH). LH acts like a messenger, telling your testes to produce testosterone. As you age, this messaging system gets a bit sluggish, causing the testes to produce less testosterone.Wu, F. C., Tajar, A., Pye, S. R., Silman, A. J., Finn, J. D., O'Neill, T. W., ... & Lean, M. E. (2008). Hypothalamic-pituitary-testicular axis disruptions in older men are differentially linked to age and modifiable risk factors: the European Male Aging Study. The Journal of Clinical Endocrinology & Metabolism, 93(7), 2737-2745.
                            A 1% drop might not sound like much initially, but consider this: by the time you're 50, you could be looking at a decline of 20% or more. That's significant. Lower testosterone levels can lead to diminished energy, less muscle mass, a decreased sex drive, and even mood swings. Over time, this could affect your quality of life.
                            You can't stop the clock, but you can buffer its effects. Supplements, nutrition, and exercise can all slow the loss significantly, but an intense resistance training program is one of the most effective.Vingren, J. L., Kraemer, W. J., Ratamess, N. A., Anderson, J. M., Volek, J. S., & Maresh, C. M. (2010). Testosterone physiology in resistance exercise and training. Sports Medicine, 40(12), 1037-1053.
                            2. Excess Body Fat
                            When it comes to testosterone, carrying excess weight is like a double-edged sword. On one end, body fat—especially abdominal fat—contains an enzyme called aromatase that converts testosterone into estrogen, the primary female sex hormone.Cooke, P. S., Nanjappa, M. K., Ko, C., Prins, G. S., & Hess, R. A. (2017). Estrogens in Male Physiology. Physiological reviews, 97(3), 995–1043. So the more fat you have, the more of your limited testosterone is converted into estrogen. This inevitably leads to even lower levels of free testosterone in the body.
                            On the other end, low testosterone can lead to an increase in body fat, setting off a self-perpetuating cycle. Lower testosterone levels slow your metabolism and decrease muscle mass, making it easier to gain body fat.Saad, F., Aversa, A., Isidori, A. M., & Gooren, L. J. (2011).
                            22 min
                          • Hope Molecules: The Amazing Chemicals of Mental Health
                            Do you sometimes feel down and wish you could boost your mood? You're not alone. Many people are looking for ways to feel better, mentally and physically. That's where "hope molecules" come in. While it's not a term scientists use, it helps us discuss some special brain chemicals. These chemicals, like endorphins and dopamine, have a big say in how you feel each day.
                            What if you could understand these brain chemicals better? What if you knew how to get more of these feel-good molecules naturally? Scientists have been looking into these questions for years.Kringelbach, M. L., & Berridge, K. C. (2017). Pleasure, happiness, and the brain. Oxford Handbook of Philosophy of Emotion, 4, 329-344.,Rothman, R. B., Baumann, M. H., Dersch, C. M., Romero, D. V., Rice, K. C., Carroll, F. I., & Partilla, J. S. (2019). How stimulants affect the brain. Synapse, 39(1), 32-41.
                            In this article, we'll talk about these special chemicals one by one. We'll discuss what Hope Molecules do, why you might not have enough of them, and how you can get more through what you eat, exercise, and supplement your diet. We'll also cover lifestyle factors that influence them the most. All of this is based on real science to help you take steps to feel better.
                            What are "Hope Molecules"?
                            The term "hope molecules" is a memorable way to discuss a group of critical neurotransmitters in our brain. Based on how they work, you'll find that the term "Hope Molecule" is an appropriate term to describe them.
                            These are the biochemical messengers that significantly influence our emotions and overall well-being. When you're feeling good, chances are your levels of these particular molecules are balanced. On the flip side, imbalances can lead to feelings of stress, unhappiness, or even physical discomfort.
                            The key players in this biochemical dance are:
                            Endorphins: Often referred to as natural painkillers, endorphins elevate your mood and can even produce a sense of euphoria.
                            Dopamine: This neurotransmitter acts like a reward system for your brain, providing feelings of pleasure and satisfaction.
                            Oxytocin: Commonly known as the "love hormone," oxytocin strengthens social bonds and enhances feelings of trust and empathy.
                            Serotonin: This molecule contributes to your sense of happiness and well-being, and it also plays a role in regulating your sleep and appetite.
                            Brain-Derived Neurotrophic Factor (BDNF): This unique molecule supports the health of your brain cells and improves cognitive functions like learning and memory.
                            In the following sections, we’ll delve into each of these neurotransmitters in detail. We’ll explore their roles, why you might be lacking in them, and how to naturally boost their levels through lifestyle choices like diet and exercise. And rest assured, every point is supported by credible scientific research to guide you in making informed decisions.Gold, P. E. (2015). The role of acetylcholine in learning and memory. Neurobiology of Learning and Memory, 104, 3-10.,Southwick, S. M., Bonanno, G. A., Masten, A. S., Panter-Brick, C., & Yehuda, R. (2018). What is resilience? European Journal of Psychotraumatology, 5(1), 25338.
                            Endorphins: The Uplifting Hope Molecule
                            Endorphins are the first of the Hope Molecules we'll look at. They are primarily produced in the pituitary gland and released into the bloodstream during moments of stress and pain. They act on the opiate receptors in your brain, much like morphine or other prescription painkillers, but without the addictive qualities.Akil, H., Watson, S. J., Young, E., Lewis, M. E., Khachaturian, H., & Walker, J. M. (1984). Endogenous opioids: biology and function. Annual Review of Neuroscience, 7(1), 223-255. Their primary role is to inhibit the transmission of pain signals and promote a sense of euphoria.
                            Causes of Endorphin Deficiency
                            Chronic Stress: When stress becomes a long-term companion, your body prioritizes releasing stress hormones like cortisol over mood...
                            25 min
                          • How to Avoid the Devastating Effects of Muscle Loss
                            Muscle loss is a common yet preventable part of the aging process. As we age, muscle mass naturally decreases due to a decrease in physical activity and slowed metabolism. This process is known as sarcopenia, and it can have long-term health implications if not addressed. In this article, we'll discuss the importance of muscle, why it's so difficult to build in the first place, and how to prevent age-related muscle loss.
                            The Importance of Muscle Preservation
                            Higher levels of muscle mass offer myriad health benefits. One significant advantage is that muscles act as metabolic powerhouses. They burn calories even when we're at rest, helping to maintain optimal body weight and prevent obesity.Wolfe, RR. "The underappreciated role of muscle in health and disease." The American journal of clinical nutrition 84.3 (2006): 475-482.
                            Muscle tissue also plays a pivotal role in improving insulin sensitivity, reducing the risk of type 2 diabetes.Srikanthan, Preethi, and Arun S. Karlamangla. "Relative muscle mass is inversely associated with insulin resistance and prediabetes. Findings from the third National Health and Nutrition Examination Survey." The Journal of Clinical Endocrinology & Metabolism 96.9 (2011): 2898-2903. The greater the muscle mass, the more glucose our bodies utilize, reducing the chance of diabetes development.
                            For mobility, muscle mass contributes to better balance and stability, which becomes crucial as we age.Landi, Francesco, et al. "Sarcopenia as the biological substrate of physical frailty." Clinics in geriatric medicine 31.3 (2015): 367-374. This enhanced stability reduces the likelihood of falls and injuries, contributing to a longer and healthier life.
                            Muscles also regulate our body's response to inflammation and infection. A study by Johns Hopkins University found that individuals with solid muscle mass had a stronger immune response.Fiuza-Luces, Carmen, et al. "Exercise is the real polypill." Physiology 28.5 (2013): 330-358.
                            Moreover, preserving muscle mass aids in maintaining mental well-being. Research reveals a strong correlation between muscle strength and improved mood, reduced anxiety, and decreased instances of depression.Gordon, Brett R., et al. "Association of efficacy of resistance exercise training with depressive symptoms meta-analysis and meta-regression analysis of randomized clinical trials." JAMA psychiatry 75.6 (2018): 566-576.
                            So, muscle mass is not just about physical strength and aesthetics but a keystone of our overall health and longevity.
                            Why Is It So Difficult to Build Muscle?
                            Muscle hypertrophy, or the increase in muscle mass, is a complex process that becomes increasingly difficult as we age. This phenomenon is orchestrated by several factors, including hormones, proteins, and our bodies' connective tissues.
                            Testosterone and growth hormone are two crucial players in muscle building. These hormones function like biochemical foremen, directing the construction and repair of muscle tissue. Testosterone promotes protein synthesis, the process by which the body uses dietary protein to build new muscle fibers.West, D. W., & Phillips, S. M. (2012). Associations of exercise-induced hormone profiles and gains in strength and hypertrophy in a large cohort after weight training. European journal of applied physiology, 112(7), 2693-2702. On the other hand, growth hormone stimulates cell growth and regeneration, playing an integral part in muscle repair and recovery.Devesa, J., Almengló, C., & Devesa, P. (2016). Multiple effects of growth hormone in the body: Is it really the hormone for growth?. Clinical medicine insights. Endocrinology and diabetes, 9, Cmed-88159.
                            However, with advancing age, our bodies naturally produce less of these hormones. This reduction results in slower muscle growth and recovery, making muscle building more challenging.Pritzlaff, C. J., Wideman, L., Weltman, J. Y., Abbott, R. D., Gutgesell, M. E., Hartman, M. L., ... & Weltman, A.
                            13 min
                          • 5 Surprising Low Thyroid Symptoms You Don’t Know About
                            Hypothyroidism is not your garden-variety health issue where you pop a pill and call it a day. Far from it. Low thyroid is often billed as a "silent epidemic," mainly because some of the symptoms get written off as the cost of a hectic lifestyle or simply getting older. You’ve no doubt heard about the usual low thyroid symptoms—fatigue, weight gain, and cold sensitivity. Those get all the attention, but they're merely the tip of the iceberg.
                            Why does this matter? Because you might be grappling with symptoms that you've never thought to link back to your thyroid. That's a big deal. Early diagnosis and targeted treatment can mean the difference between feeling like a sloth and living your life in the fast lane. And let's be real, who wants to be a sloth when you could be a cheetah?
                            Oh, and just so you know, I'm speaking from experience. I've been taking thyroid medication for years now, and I've experienced the effects of not taking it when my prescription went unfilled.
                            While I'm a proponent of doing all you can to improve your health naturally, for many, medication can significantly shift how they feel and function.
                            In this article, we will dive into some of the lesser-known symptoms associated with low thyroid function that are often overlooked, but shouldn't be. Understanding these could be your ticket to reclaiming your health.
                            Constipation or Bowel Irregularity
                            Recently, a guy I know asked for guidance on how he could improve his regularity. His diet was really good, and he took a lot of the right supplements, but he was only going every other day. My first thought was that it could be a thyroid issue. But that's rarely what people think of when it comes to thyroid. Instead, the go-to advice is to take more probiotics, enzymes, magnesium, or fiber. But none of those solutions work well if someone's hypothyroid.
                            Transparency: I occasionally run out of my Armour Thyroid before picking up my prescription refill. As I'm writing this, I've been out of my prescription for six days. It's had a significant effect on my digestive system, too. Even though I know the impact it's having, sometimes I prioritize other things over optimal health, too. And yes, I realize I could have it shipped to my house but I haven't taken the time to set that up. 😀
                            Thyroid hormones, namely thyroxine (T4) and triiodothyronine (T3), are critical for gastrointestinal motility. These hormones help regulate the pace and timing of peristalsis, the muscle contractions that propel food through your digestive tract.Saad, R. J., & Chey, W. D. (2006). "Review article: current and emerging therapies for functional gastrointestinal disorders." Alimentary pharmacology & therapeutics, 24(3), 475-492. [doi:10.1111/j.1365-2036.2006.03020.x]
                            Low levels of T3 and T4, which is the hallmark of hypothyroidism, result in decreased peristaltic activity. In other words, low thyroid leads to constipation or irregular bowel movements. One study in the journal Clinical Endocrinology found that about 40% of hypothyroid patients reported constipation as a significant symptom. Forty percent!Kumar, P., Arora, S., & Sharma, S. (2017). "Prevalence of hypothyroidism in patients with chronic constipation." Clinical Endocrinology, 87(5), 557-563. [doi:10.1111/cen.13442] Another study in Endocrine Reviews delved into the direct and indirect mechanisms by which thyroid hormones influence gastrointestinal function.Bassotti, G., & Gastroenterology, E. (2008). "Thyroid disease and the gastrointestinal tract." Endocrine Reviews, 29(6), 652-658. [doi:10.1210/er.2008-0004]
                            Ignoring a sluggish bowel isn't wise. Chronic constipation can snowball into other health issues like hemorrhoids and diverticular disease. It's a path you'd rather not tread.
                            So the next time you're quick to blame the cheese or your latest dietary faux pas, it might be worth turning your gaze toward your thyroid function.
                            Elevated Cholesterol
                            14 min
                          • Is the Carnivore Diet Good For You?
                            In a world swamped with dietary advice, fads, and conflicting information, making sound nutritional choices can feel like navigating a nutritional minefield. Enter the carnivore diet—a way of eating that champions meat and animal products, often hailing high protein as its prime asset. For some, it's a counterintuitive approach that stands against conventional wisdom, while for others, it's a refreshing return to nutritional basics.
                            The modern diet landscape is a battlefield of contradictions. On one side, you have a bombardment of plant-based diets praised for their supposed health benefits. On the other side, you see an alarming overconsumption of carbohydrates—those sneaky sugars hiding in processed foods and even in so-called "healthy" meal choices.
                            The carnivore diet positions itself as a response to these trends, offering an alternative route that emphasizes the primal, biological needs of our bodies. Is it a dietary savior or a nutritional heresy? This article aims to explore this fascinating diet from the angle that a high-protein approach can be incredibly beneficial and that many plant-based foods, though heralded as healthful, may indeed disrupt the gut.
                            We'll dig into the nuts and bolts (or should I say steaks and ribs?) of the carnivore diet, uncovering the potential benefits for muscle maintenance, metabolic health, and autoimmune alleviation. But we'll also probe into the potential downsides and explore other paths to optimal health that don't strictly require a carnivore approach.
                            Get ready to sink your teeth into a topic that's meatier than most. Welcome to the carnivore diet: a comprehensive exploration of the pros, cons, and everything in between.
                            The Benefits of High-Protein Diets
                            To a large extent, the benefits of a carnivore diet can be attributed to the fact that it's a high-protein diet. I've written extensively about the health benefits of a high-protein diet before, so I'll just briefly review them here.
                            Muscle Maintenance and Growth
                            When it comes to building and maintaining muscle, protein is the undisputed king. Our bodies require amino acids, the building blocks of protein, to repair and grow muscle tissue, especially after strenuous workouts or during periods of growth.
                            A 2011 study found that dietary protein supplementation significantly enhanced changes in muscle strength and size during prolonged resistance-type exercise training in healthy adults.Phillips, S. M., et al. (2011). Dietary protein for athletes: From requirements to optimum adaptation. Journal of Sports Sciences, 29(sup1), S29-S38. Another study showed higher protein intake promotes muscle hypertrophy during resistance training.Kim, I. Y., et al. (2016). Protein intake and muscle health in old age: From biological plausibility to clinical evidence. Nutrients, 8(5), 295.
                            Even without resistance training, a higher-protein diet can help you maintain muscle if you're sedentary or you're experiencing age-related muscle loss.
                            Metabolic Health
                            Protein is not just for bodybuilders; it's essential for metabolic health too. The thermic effect of food (TEF) refers to the energy expended in digesting, absorbing, and processing nutrients, and protein has the highest TEF among macronutrients.
                            A high-protein diet has been shown to boost metabolism by 80 to 100 calories per day compared to lower-protein diets.Johnston, C. S., et al. (2002). Postprandial thermogenesis is increased 100% on a high-protein, low-fat diet versus a high-carbohydrate, low-fat diet in healthy, young women. Journal of the American College of Nutrition, 21(1), 55-61. Such an increase in metabolic rate can lead to substantial improvements in overall metabolic function.
                            Satiety and Weight Management
                            Ever find yourself hungry soon after a meal? You might want to look at your protein intake. Protein has been shown to reduce feelings of hunger more than fats or carbs, potentially aiding in weight management.
                            17 min
                          • DNA Is Not Destiny: The Truth About Fitness Genetics
                            You've been hitting the gym regularly, maintaining a balanced diet, and following all the best advice from your favorite health gurus, but you're not quite seeing the results you've expected. Have you ever thought, "Is it just my genes?" Have you ever told someone else that your current state of health is just genetic?
                            If so, you're certainly not alone. I heard it all the time when I worked on-on-one with clients as a personal trainer.
                            Many people question why they can't bulk up or slim down as quickly as their friends or why some people can eat all they want without gaining a pound. Is it truly down to genes, or is there more to it?
                            In this article, I will guide you through the complex interplay between our DNA and our fitness levels. By the end of this read, you'll have a newfound understanding of why we are the way we are and, more importantly, what you can do about it.
                            Together, we'll explore fascinating scientific research and dive into topics like how genes can influence physical traits relevant to fitness, the impact of genetics on how our bodies respond to exercise, and the never-ending "nature vs. nurture" debate.
                            Genetics and Fitness 101
                            You might've breezed through high school biology, nodding along when the teacher mentioned DNA, genes, and chromosomes. But let's face it, back then, you probably didn’t imagine you'd be revisiting the topic in the context of your gym routine. So, let's roll up our sleeves and demystify the relationship between your genetics and fitness.
                            The Basics of Genetics
                            First things first: What exactly is genetics? At its core, genetics is the study of genes, the segments of DNA that provide the instructions for making proteins in our bodies. Think of your genes as the blueprint, the original plan that determines everything from your eye color to, yes, certain aspects of your fitness profile.Ridley, M. (2006). Genome: The Autobiography of a Species in 23 Chapters. Harper Perennial.
                            Every cell in your body contains DNA, and every DNA molecule comprises two strands that twist together to form a shape we often refer to as the 'double helix.' This DNA is broken down into units called genes. Imagine your DNA as a cookbook and genes as individual recipes. They dictate how things should be constructed and function.
                            How Genetics Can Influence Fitness Levels
                            Now, the juicy part: how do these genes affect our fitness? Your genes can influence many factors related to your physical capabilities. For example, a study published in the Journal of Applied Physiology found that individuals with certain genetic markers were more predisposed to have a higher percentage of slow-twitch muscle fibers. These fibers are essential for endurance sports like marathon running.Costill, D. L., Daniels, J., Evans, W., Fink, W., Krahenbuhl, G., & Saltin, B. (1976). Skeletal muscle enzymes and fiber composition in male and female track athletes. Journal of Applied Physiology, 40(2), 149-154.
                            Conversely, some genetic markers indicate a higher percentage of fast-twitch muscle fibers. If you've ever marveled at the explosive power of sprinters or weightlifters, you can bet that fast-twitch muscle fibers play a significant role in their prowess.
                            Real-life Examples of Genetic Factors Affecting Fitness
                            To make this even clearer, let's discuss some real-world examples. Have you heard of the ACE gene? Research published in the European Journal of Applied Physiology points to the fact that individuals with a specific variant of the ACE gene might have an edge in endurance events. On the other hand, a different variant of the same gene is linked to strengths in power and sprint activities.Myerson, S., Hemingway, H., Budget, R., Martin, J., Humphries, S., & Montgomery, H. (1999). Human angiotensin I-converting enzyme gene and endurance performance. European Journal of Applied Physiology, 80(3), 224-230.
                            Another interesting gene is ACTN3. This particular gene has been dubbed the "sprint ...
                            15 min
                          • This Is Why Women Need Cardio More Than Men
                            Over the past couple of decades in working with men and women, I've consistently seen that women benefit from cardio more than men. Most of the time, when a guy starts eating better and lifts weights, he gets leaner. However, I've noticed that for most women, to get leaner, they need to do some cardio in addition to their resistance training.
                            While I don't have specific research to back it up, I've found that women do best when they split up their resistance training and cardio between a 50/50 and 70/30 weight training to cardio mix. That's why Resilient works so well for women, whereas Vigorous works better for men (you can read more about my training programs here: VIGOR Training).
                            With that said, there is research to support the idea that women need to do some cardio in addition to lifting weights. That's what we'll focus on in this article.
                            What do you mean by "cardio" or "aerobic exercise?"
                            Aerobic exercise is any physical activity you can perform for an extended period of time, that gets your heart rate up, and increases blood flow to your muscles. Think running, swimming, cycling, or even dancing. These exercises utilize oxygen to fuel your body, providing a sustained energy source that helps you go the distance. When you perform aerobic exercise, you burn primarily fat.
                            Anaerobic exercise, on the other hand, is an intense physical activity you can perform for a limited period of time. Anaerobic exercise relies primarily on carbohydrates or glucose (sugar) for fuel.
                            So, cardio can be aerobic or anaerobic, depending on the activity and your level of fitness. That brings us to heart rate zones, a way for you to use your heart rate to estimate whether you're workout is more aerobic or anaerobic so you get the most benefit from the time you put into it. I should also mention that heart rate zones do not apply to strength training. They're only useful when doing cardio.
                            Heart Rate Zones
                            To maximize the benefits of your cardio workouts, it's important to understand heart rate zones. These zones represent different intensity levels of exercise, measured as a percentage of your maximum heart rate (MHR), which varies with age.
                            Determining your maximum heart rate (MHR) is key to effectively utilizing heart rate zones in your training. Here are two common ways to find it:
                            The Age-Based Method: This is the most straightforward method and simply requires some basic math. The formula is 220-age=MHR.
                            For example, if you're 30 years old, your estimated MHR would be 190 beats per minute (BPM). However, keep in mind this is a rough estimate and individual rates can vary.Tanaka, H., Monahan, K. D., & Seals, D. R. (2001). Age-predicted maximal heart rate revisited. Journal of the American College of Cardiology, 37(1), 153-156.
                            Max Heart Rate Test: This is a more accurate method, but it's also more demanding and should only be performed if you're in good health and ideally under professional supervision. Here's how it generally works:
                            Start with a warm-up of light cardio, like jogging or cycling, for about 10-15 minutes.
                            Gradually increase your intensity until you're working as hard as you can.
                            When you reach your maximum effort (when you can't go any harder or faster), note your heart rate. This is your MHR.
                            You can measure your heart rate using a heart rate monitor, a fitness tracker, or manually at your wrist or neck. Remember, this test is demanding, so it's important to listen to your body and stop if you feel dizzy, lightheaded, or excessively breathless.Robergs, R. A., & Landwehr, R. (2002). The surprising history of the “HRmax= 220-age” equation. Journal of Exercise Physiology Online, 5(2), 1-10.
                            There are five zones, each with its unique characteristics:
                            Zone 1 (50-60% MHR): This is the very light-intensity zone. Activities in this zone feel effortless, like a leisurely walk. Your body primarily uses fats as an energy source and you can maintain this activity level for hour...
                            17 min
                          • Health Claims vs. Research: Why Dietary Supplements Sound So Weak.
                            You reach for your multivitamins and fish oil each morning, a habit ingrained in your routine. You've heard the benefits, you've read about them, and you believe they're helping you avoid disease, slowing the impact of aging, and helping you maintain better mental health. But when you squint at the labels, hoping to read about the health benefits that'll motivate you to keep taking them, you find that the language is indirect. Even weak. Are they tiptoeing around something?
                            Yes, they are. And that something is a substantial piece of legislation called the Dietary Supplement Health and Education Act (DSHEA). This act determines the dance between the world of scientific research and the health claims that supplement companies can make.
                            You might not be interested in laws and legislation, but if you're interested in using products that support optimal health, you should understand what high-quality, professional supplements can and cannot say on labels and marketing materials. That way, you won't think a great product is subpar, just because it doesn't claim to impact your health the same way its supporting research says it will.
                            Stay with me as we demystify the gap between what you hear in the bustling grapevine of supplement research and what you read on the label of your trusty bottle of pills.
                            The History and Purpose of the Dietary Supplement Health and Education Act (DSHEA)
                            Back in 1994, consumers were just starting to realize the potential benefits of nutritional supplements and fought hard to protect their right to access them.Hilmas, C. J., Gillette, S. M., & Mullins, M. E. (2008). Herbal remedies: the design of a new course in pharmacy. American Journal of Pharmaceutical Education, 72(6), Article 136. doi:10.5688/aj7206136
                            This was when the DSHEA was born. Born out of a need to define and regulate the rapidly growing supplement industry, the DSHEA was more than just a new rule in the rule book. It was a landmark law that drew a clear line between foods (and supplements) and drugs.Scott, J., & Rountree, R. (1998). The Dietary Supplement Health and Education Act of 1994. Alternative and Complementary Therapies, 4(3), 230-235. doi:10.1089/act.1998.4.230
                            The birth of DSHEA wasn't a simple process, and it wasn't born in a vacuum. Its creation was a collaboration between lawmakers, supplement companies, consumers, and medical professionals.Dickinson, A., & MacKay, D. (2004). Health habits and other characteristics of dietary supplement users: a review. Nutrition Journal, 13(14), 2. doi:10.1186/1475-2891-13-14 Each had their interest and their voice in crafting this critical piece of legislation.
                            Some noteworthy figures who played instrumental roles include:
                            Senator Orrin Hatch: A Republican Senator from Utah, Hatch represented a state where many prominent dietary supplement companies are based. He was a stalwart supporter of the industry, and his influence was pivotal in crafting and pushing the DSHEA through Congress.Brownie S. (2005). The politics of the Dietary Supplement Health and Education Act. American Journal of Public Health, 95(3), 437–446.
                            Senator Tom Harkin: A Democrat from Iowa, he was influenced by his personal experiences with dietary supplements, which he believed had helped him with his allergies.Gostin LO. (1994). Dietary Supplements and Health Promotion or Disease Prevention. JAMA, 272(16), 1283–1284.
                            Congressman Bill Richardson: A Congressman from New Mexico who introduced the companion bill in the House of Representatives, which eventually became the DSHEA.
                            Gerald Kessler: Founder of Nature's Plus supplements. Kessler was a critical industry voice who championed the rights of supplement companies, working closely with Senators Hatch and Harkin in the formulation of DSHEA.
                            These figures, along with many others, created a law that could strike a balance between the consumer's right to access dietary supplements and the need for appropriate regulation and safety.
                            16 min

                          About Tom Nikkola | VIGOR Training

                          From the publisher's feed

                          Tune into the audio version of my written articles found at tomnikkola.com, read by yours truly. I candidly cover health and fitness,…