Empowered Patient Podcast

Empowered Patient Podcast

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Empowered Patient Podcast episodes

  • First Treatment for Severe Respiratory Condition in Premature Babies with Dr. Marc Salzberg Airway Therapeutics TRANSCRIPT

    Dr. Marc Salzberg, President, CEO, and Chief Medical Officer at Airway Therapeutics, is developing a drug AT-100 to prevent bronchopulmonary dysplasia (BPD) in preterm infants, a severe condition with no existing treatment. These infants are at high risk for BPD because of a low level of a protective protein that reduces inflammation and clears infections from their underdeveloped lungs. The drug's mechanism of action suggests it has potential for treating other inflammatory conditions such as asthma, COPD, and severe pneumonia.

    Marc explains, "We're focusing on developing drugs or interventions for severe respiratory conditions for prevention or treatment of severe respiratory conditions. And our first project is focusing on the respiratory condition that preterm neonates have, which is called bronchopulmonary dysplasia, and cannot be treated or prevented yet. It's a very severe condition. And that really triggered my interest in getting engaged because it's going to be a paradigm shift if we manage to bring this drug to market."

    "The protein that we're developing is an endogenous protein that we all have. In the past years or decade, it has been discovered that this protein has a very essential function in fighting inflammation and infection on a daily basis. Now, there are certain conditions or instances where the protein is low-functioning. For instance, in preterm-born babies, but also in adults with severe respiratory inflammation, with pneumonias, with asthma, or COPD. In all those cases where protein is low, those are the instances where you actually need it most. So, replacing it in those instances is a kind of logical rationale for the concept for the treatment that we're developing."

    #AirwayTherapeutics #BPD #InflammatoryDiseases #Zelpultidealfa #PrematureBabies #PretermBabies

    airwaytherapeutics.com

    Listen to the podcast here

    0 min
  • First Treatment for Severe Respiratory Condition in Premature Babies with Dr. Marc Salzberg Airway Therapeutics

    Dr. Marc Salzberg, President, CEO, and Chief Medical Officer at Airway Therapeutics, is developing a drug AT-100 to prevent bronchopulmonary dysplasia (BPD) in preterm infants, a severe condition with no existing treatment. These infants are at high risk for BPD because of a low level of a protective protein that reduces inflammation and clears infections from their underdeveloped lungs. The drug's mechanism of action suggests it has potential for treating other inflammatory conditions such as asthma, COPD, and severe pneumonia.

    Marc explains, "We're focusing on developing drugs or interventions for severe respiratory conditions for prevention or treatment of severe respiratory conditions. And our first project is focusing on the respiratory condition that preterm neonates have, which is called bronchopulmonary dysplasia, and cannot be treated or prevented yet. It's a very severe condition. And that really triggered my interest in getting engaged because it's going to be a paradigm shift if we manage to bring this drug to market."

    "The protein that we're developing is an endogenous protein that we all have. In the past years or decade, it has been discovered that this protein has a very essential function in fighting inflammation and infection on a daily basis. Now, there are certain conditions or instances where the protein is low-functioning. For instance, in preterm-born babies, but also in adults with severe respiratory inflammation, with pneumonias, with asthma, or COPD. In all those cases where protein is low, those are the instances where you actually need it most. So, replacing it in those instances is a kind of logical rationale for the concept for the treatment that we're developing."

    #AirwayTherapeutics #BPD #InflammatoryDiseases #Zelpultidealfa #PrematureBabies #PretermBabies

    airwaytherapeutics.com

    Download the transcript here

    19 min
  • Leadless Pacemaker Technology Minimally Invasive Procedure That Lowers Surgical Risk with Wade Demmer Medtronic TRANSCRIPT

    Wade Demmer, R&D Vice President at Medtronic, has developed a leadless pacemaker that is implanted on the heart through a minimally invasive procedure utilizing a catheter, potentially creating fewer complications and greater access for patients who could benefit from a pacemaker. This new design is a significantly smaller, safer, and longer-lasting device than traditional pacemakers and does not create a visible lump under the skin. Advancements in battery and computer technology have made the Micra next-generation pacemaker smarter, allowing cardiologists to treat a wider range of heart conditions.

    Wase explains, "So yes, pacemakers have been around for about seventy years. They've been helping people save lives, live fuller lives, and improve quality of life for that whole time. But you know, if you think about the history of a pacemaker, a pacemaker is a computer inside a little box that's implanted in the body. And like any computer, a computer from 70 years ago and a computer from today are very different. You know, 70 years ago, a pacemaker would've been about the size of a hockey puck, but even a little bit thicker. And nowadays, pacemakers are not much bigger than a couple of silver dollars stacked together. So we've made really big advances."

    "When you had those hockey puck-sized pacemakers or even modern-sized pacemakers, there's no place in the heart for it. And so they end up in the chest, and then there's a wire called the lead that goes down through the veins into the heart, and that's where the electricity gets delivered down to make the heartbeat. And that's also where the heart's electricity comes back up, so the pacemaker can know what's wrong. As we have pacemakers smaller and smaller, though, we suddenly reach a point where a radical downsizing is a possibility. And again, leveraging the computer technology of the world, getting a pacemaker inside the heart instead of in the chest."

    #Medtronic #CardiacCare #Pacemaker #LeadlessPacemaker #Micra #Cardiologists #HeartHealth #Innovation

    medtronic.com

    Listen to the podcast here

    0 min
  • Leadless Pacemaker Technology Minimally Invasive Procedure That Lowers Surgical Risk with Wade Demmer Medtronic

    Wade Demmer, R&D Vice President at Medtronic, has developed a leadless pacemaker that is implanted on the heart through a minimally invasive procedure utilizing a catheter, potentially creating fewer complications and greater access for patients who could benefit from a pacemaker. This new design is a significantly smaller, safer, and longer-lasting device than traditional pacemakers and does not create a visible lump under the skin. Advancements in battery and computer technology have made the Micra next-generation pacemaker smarter, allowing cardiologists to treat a wider range of heart conditions.

    Wase explains, "So yes, pacemakers have been around for about seventy years. They've been helping people save lives, live fuller lives, and improve quality of life for that whole time. But you know, if you think about the history of a pacemaker, a pacemaker is a computer inside a little box that's implanted in the body. And like any computer, a computer from 70 years ago and a computer from today are very different. You know, 70 years ago, a pacemaker would've been about the size of a hockey puck, but even a little bit thicker. And nowadays, pacemakers are not much bigger than a couple of silver dollars stacked together. So we've made really big advances."

    "When you had those hockey puck-sized pacemakers or even modern-sized pacemakers, there's no place in the heart for it. And so they end up in the chest, and then there's a wire called the lead that goes down through the veins into the heart, and that's where the electricity gets delivered down to make the heartbeat. And that's also where the heart's electricity comes back up, so the pacemaker can know what's wrong. As we have pacemakers smaller and smaller, though, we suddenly reach a point where a radical downsizing is a possibility. And again, leveraging the computer technology of the world, getting a pacemaker inside the heart instead of in the chest."

    #Medtronic #CardiacCare #Pacemaker #LeadlessPacemaker #Micra #Cardiologists #HeartHealth #Innovation

    medtronic.com

    Download the transcript here

    20 min
  • Remote Affordable Robotic Surgery Transforming Access to Cardiac Procedures with Dr. Vishwa Srivastava SS Innovations International TRANSCRIPT

    Dr. Vishwa Srivastava, APAC CEO of SSI, SS Innovations International, is a leader in telesurgery, using robotic surgery to extend surgical services in underserved areas. The SSI Mantra surgical robot is used for laparoscopic surgery and offers an affordable alternative to prevailing robotic solutions without compromising quality. Telesurgery has potential in remote operations and is also revolutionizing surgical training by providing real-time expert proctoring.

    Vishwa explains, "My father was one of the early global pioneers in robotic cardiac surgery, and he had actually helped Intuitive Surgical back in their early days get their FDA approval. And what he recognized very quickly was that through these minimally invasive robotic cardiac surgical procedures, 20% of his patients went home the next day, 50% in two days or less, and the average length of stay was 3.2 days. So, he became convinced after they twisted his arm to launch robotic cardiac surgical programs. And Dr. Fred Moll at the time was the chairman and founder of Intuitive Surgical, and he wanted to start on the heart because it was the most complex procedure to do a beating heart, totally endoscopic, bypass surgery. And he felt that if you could do that, then everything else would be simple."

    "The way that we look at remote robotic surgery, or what we call telesurgery, currently, we are the only company in India that has received formal regulatory approval from the CDSCO for both teleproctoring and telesurgery. The way that we look at teleproctoring and telesurgery, it's not like one rockstar surgeon sitting in one location operating omnipresent in a hundred different locations."

    "With teleproctoring and telesurgery, the way that we look at it is in addition to operating and extending expertise in the remote areas of the country, we look at teleproctoring and telesurgery the same way that doctors are trained in residency where you always have an attending in the room, the junior surgeon will be operating, and the goal of the proctor or the attending surgeon is to guide the junior surgeon to maturity."

    #SSInnovations #RoboticSurgery #Telesurgery #CardiacProcedures #HeartSurgery #Teleproctoring #RemoteSurgery

    SSInnovations.com

    Listen to the podcast here

    0 min
  • Remote Affordable Robotic Surgery Transforming Access to Cardiac Procedures with Dr. Vishwa Srivastava SS Innovations International

    Dr. Vishwa Srivastava, APAC CEO of SSI, SS Innovations International, is a leader in telesurgery, using robotic surgery to extend surgical services in underserved areas. The SSI Mantra surgical robot is used for laparoscopic surgery and offers an affordable alternative to prevailing robotic solutions without compromising quality. Telesurgery has potential in remote operations and is also revolutionizing surgical training by providing real-time expert proctoring.

    Vishwa explains, "My father was one of the early global pioneers in robotic cardiac surgery, and he had actually helped Intuitive Surgical back in their early days get their FDA approval. And what he recognized very quickly was that through these minimally invasive robotic cardiac surgical procedures, 20% of his patients went home the next day, 50% in two days or less, and the average length of stay was 3.2 days. So, he became convinced after they twisted his arm to launch robotic cardiac surgical programs. And Dr. Fred Moll at the time was the chairman and founder of Intuitive Surgical, and he wanted to start on the heart because it was the most complex procedure to do a beating heart, totally endoscopic, bypass surgery. And he felt that if you could do that, then everything else would be simple."

    "The way that we look at remote robotic surgery, or what we call telesurgery, currently, we are the only company in India that has received formal regulatory approval from the CDSCO for both teleproctoring and telesurgery. The way that we look at teleproctoring and telesurgery, it's not like one rockstar surgeon sitting in one location operating omnipresent in a hundred different locations."

    "With teleproctoring and telesurgery, the way that we look at it is in addition to operating and extending expertise in the remote areas of the country, we look at teleproctoring and telesurgery the same way that doctors are trained in residency where you always have an attending in the room, the junior surgeon will be operating, and the goal of the proctor or the attending surgeon is to guide the junior surgeon to maturity."

    #SSInnovations #RoboticSurgery #Telesurgery #CardiacProcedures #HeartSurgery #Teleproctoring #RemoteSurgery

    SSInnovations.com

    Download the transcript here

    22 min
  • Reconstructive Surgery Reimagined with 3D Printed Custom Implants with Vikram Ahuja and Joe Promoppatam OsseoLabs TRANSCRIPT

    Vikram Ahuja, Co-Founder and CEO, and Joe Promoppatam, Co-Founder and CTO of OsseoLabs, are utilizing 3D printing and AI to advance reconstructive surgery by enabling the creation of personalized, precision-fit implants and surgical instruments. Traditional surgery has relied on standardized implants made of titanium and involves lengthy operations. The OsseoLabs approach reduces surgical planning and operating time, improving patient outcomes by achieving a better fit and enhanced bone integration through the use of advanced implant materials. AI is used to automate and accelerate the design process for these custom devices, enabling a scalable and cost-effective approach to create complex, regulated medical devices.

    Vikram explains, "We want to use our engineering know-how, especially in 3D printing, to improve the quality of the outcome of the surgeries and also help the students to be able to offer a better solution at a speed, and also the outcome that is a little bit more precise. And that's what we have been working on for quite a long time. We want to use the knowledge of 3D printing, biomechanics, and also AI to help, especially in complex surgical cases. So both the patients and the surgeons are better off with the outcome. And the main gap that we are seeing here is not only in the Asian countries where we operate, but also in the US. And the use of 3D presented implants, even though it has been around for quite some time in the US, we still see a lot of gaps that can be improved in what materials are being used, and how the implants are designed. We help the surgeons and also the hospitals throughout this process."

    Joe elaborates, "Yes, for such a device, they all look the same way, but the patients look different. So we see this gap between the available instrumentation and the actual treatment that the surgeons want to conduct. And we want to break that barrier by being able to decide which instrument is required individually, and I mean that in the day, we could not do that. The price can be competitive because all the manufacturing technology is used to support production. But we have to depend on how they matured in the past few years. We are able to adopt the technology, which allows us to decide and print the instrument for specific care and specific surgery. I think the speed and cost become much more practical, and all we need to look into is the 3D printer. But eventually, when you come into something like customization, you talk about the speed. In terms of speed, it's not just the speed of how we make things, but it's about the speed of how we decide things. That's where we see the gap that we can fill using AI to split up the bedside process."

    #OsseoLabs #ReconstructiveSurgery #3DPrinting #PersonalizedImplants #MedAI

    OsseoLabs.com

    Listen to the podcast here

    0 min
  • Reconstructive Surgery Reimagined with 3D Printed Custom Implants with Vikram Ahuja and Joe Promoppatam OsseoLabs

    Vikram Ahuja, Co-Founder and CEO, and Joe Promoppatam, Co-Founder and CTO of OsseoLabs, are utilizing 3D printing and AI to advance reconstructive surgery by enabling the creation of personalized, precision-fit implants and surgical instruments. Traditional surgery has relied on standardized implants made of titanium and involves lengthy operations. The OsseoLabs approach reduces surgical planning and operating time, improving patient outcomes by achieving a better fit and enhanced bone integration through the use of advanced implant materials. AI is used to automate and accelerate the design process for these custom devices, enabling a scalable and cost-effective approach to create complex, regulated medical devices.

    Vikram explains, "We want to use our engineering know-how, especially in 3D printing, to improve the quality of the outcome of the surgeries and also help the students to be able to offer a better solution at a speed, and also the outcome that is a little bit more precise. And that's what we have been working on for quite a long time. We want to use the knowledge of 3D printing, biomechanics, and also AI to help, especially in complex surgical cases. So both the patients and the surgeons are better off with the outcome. And the main gap that we are seeing here is not only in the Asian countries where we operate, but also in the US. And the use of 3D presented implants, even though it has been around for quite some time in the US, we still see a lot of gaps that can be improved in what materials are being used, and how the implants are designed. We help the surgeons and also the hospitals throughout this process."

    Joe elaborates, "Yes, for such a device, they all look the same way, but the patients look different. So we see this gap between the available instrumentation and the actual treatment that the surgeons want to conduct. And we want to break that barrier by being able to decide which instrument is required individually, and I mean that in the day, we could not do that. The price can be competitive because all the manufacturing technology is used to support production. But we have to depend on how they matured in the past few years. We are able to adopt the technology, which allows us to decide and print the instrument for specific care and specific surgery. I think the speed and cost become much more practical, and all we need to look into is the 3D printer. But eventually, when you come into something like customization, you talk about the speed. In terms of speed, it's not just the speed of how we make things, but it's about the speed of how we decide things. That's where we see the gap that we can fill using AI to split up the bedside process."

    #OsseoLabs #ReconstructiveSurgery #3DPrinting #PersonalizedImplants #MedAI

    OsseoLabs.com

    Download the transcript here

    17 min
  • AI Agent Automates Clinical Trial Recruitment Fast Tracking Drug Development with Trân Lê Grove AI TRANSCRIPT

    Trân Lê, Co-Founder and CEO of Grove AI, was founded to automate the manual and inefficient workflows in clinical trial recruitment, patient engagement, and support. The company's AI agent, Grace, is trained on specific trial protocols and approved scripts to respond to patient questions about pre-screening, logistics, and scheduling appointments. This platform aims to increase speed and quality of participant recruitment, improve representation, and expand accessibility to clinical trials by offering support in over 19 languages and providing access to information on demand.

    Trân explains, "The birth of Grove really came from my co-founder, Sohit, and his experience working in the hospital. We were working at Stanford, and there we were, computer scientists building a lot of internal tools for clinical trials, clinical research, as well as for the greater healthcare patient services. And that, combined with my experience trying to enroll in a clinical trial, really set us off to think deeply about how we can automate a lot of the manual workflows that exist today for patients and for providers, as well as for pharma in taking new drugs to market. Specifically, within that, we identified patient engagement and support, and prescreening to be an important part of ensuring that patients know where they're going and what to do when they're participating in these trials. And so we decided to really step out into the industry and change this process and make it an easier and more accessible experience for patients."

    "I would say that having worked inside a hospital and seeing all of this lead generation or getting people educated about the trial is an important aspect, and it's being done by a lot of the recruitment vendors as well as in-house teams out there. In addition to that, a bottleneck that previously has always been there now is possible to automate with agentic AI is actually doing the work of taking all the interest from different potential patients and helping them prescreen and understand the requirements of the trials, getting them to the right site, booking their transportation, reminding them about the appointments, and scheduling that appointment."

    "I would say that Grace, as we call her, is a digital staff or an AI agent - both are comparable terms to describe Grace. The difference is that Grace is trained on the trial, the requirements, and the IRB-approved script of that trial. So she really has the knowledge to be able to respond spontaneously in real time to any questions that the participant may have about the trial."

    #GroveAI #ClinicalTrials #PatientRecruitment #Pharma #HealthTech #DigitalHealth #AI #AgenticAI

    grovetrials.com

    Listen to the podcast here

    0 min
  • AI Agent Automates Clinical Trial Recruitment Fast Tracking Drug Development with Trân Lê Grove AI

    Trân Lê, Co-Founder and CEO of Grove AI, was founded to automate the manual and inefficient workflows in clinical trial recruitment, patient engagement, and support. The company's AI agent, Grace, is trained on specific trial protocols and approved scripts to respond to patient questions about pre-screening, logistics, and scheduling appointments. This platform aims to increase speed and quality of participant recruitment, improve representation, and expand accessibility to clinical trials by offering support in over 19 languages and providing access to information on demand.

    Trân explains, "The birth of Grove really came from my co-founder, Sohit, and his experience working in the hospital. We were working at Stanford, and there we were, computer scientists building a lot of internal tools for clinical trials, clinical research, as well as for the greater healthcare patient services. And that, combined with my experience trying to enroll in a clinical trial, really set us off to think deeply about how we can automate a lot of the manual workflows that exist today for patients and for providers, as well as for pharma in taking new drugs to market. Specifically, within that, we identified patient engagement and support, and prescreening to be an important part of ensuring that patients know where they're going and what to do when they're participating in these trials. And so we decided to really step out into the industry and change this process and make it an easier and more accessible experience for patients."

    "I would say that having worked inside a hospital and seeing all of this lead generation or getting people educated about the trial is an important aspect, and it's being done by a lot of the recruitment vendors as well as in-house teams out there. In addition to that, a bottleneck that previously has always been there now is possible to automate with agentic AI is actually doing the work of taking all the interest from different potential patients and helping them prescreen and understand the requirements of the trials, getting them to the right site, booking their transportation, reminding them about the appointments, and scheduling that appointment."

    "I would say that Grace, as we call her, is a digital staff or an AI agent - both are comparable terms to describe Grace. The difference is that Grace is trained on the trial, the requirements, and the IRB-approved script of that trial. So she really has the knowledge to be able to respond spontaneously in real time to any questions that the participant may have about the trial."

    #GroveAI #ClinicalTrials #PatientRecruitment #Pharma #HealthTech #DigitalHealth #AI #AgenticAI

    grovetrials.com

    Download the transcript here

    20 min

About Empowered Patient Podcast

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Empowered Patient Podcast with Karen Jagoda is a window into the latest innovations in digital health, the changing dynamic between doctors and patients, and the emergence of precision medicine. The…

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