
Sign up to save your podcasts
Or


Ronen Eckhouse, Co-Founder and CEO of Rapid Medical, identifies the limitations of current stroke treatments, which are primarily effective for large vessel occlusions. The Rapid Medical TIGERTRIEVER device is designed to safely and effectively treat strokes and remove clots in smaller vessels deeper in the brain. The unique adjustability of the device allows physicians to control the size and force during a procedure, allowing for precise and safer clot removal in complex anatomies.
Ronen explains, "So the quicker or the less time there is between the stroke and the ability to open the occlusions and resupply the brain with oxygen, the better. There are two types of treatments. One is a drug called TPA. It's a clot buster, and that can be administered up to four and a half hours. And then there's what's called thrombectomy, which is basically using a catheter to get to the clot and then removing the clot with a catheter or stent, kind of in mechanical terms. But today, that's only applicable to what's for the bigger arteries in the brain, what's called large vessel occlusions. And these account for about 15% or 20% of the population. So there are good solutions, but they are limited in when they can be used."
"That's exactly where we come in. The reason it's difficult to treat these kinds of smaller vessels in the brain, or what we call the medium-vessel occlusion, is that the deeper you go into the brain, on the one hand, the complexity of the procedure increases. So the vessels are a little bit more fragile. There are more turns and tortuosity. So getting to the clot is a little bit harder, and pulling it out as well."
"At the same time, the benefit is a little bit smaller. So now we're not saving half of the brain. Maybe we're saving 30% of the brain, which is still very significant, but the benefit is a little bit smaller. So the risk-benefit ratio, which is critical and everything we do in medicine, changes when you're going deeper into the brain. And as a result, you need new tools."
#RapidMedical #DMVO #MeVO #Stroke #StrokeCare #Neurology #MedTech #DISTALS #Neurovascular #MedicalDevices #HealthcareInnovation #Thrombectomy #PatientCare #MedicalTechnology #StrokeAwareness #HealthcareProfessionals
rapid-medical.com
Listen to the podcast here
Ronen Eckhouse, Co-Founder and CEO of Rapid Medical, identifies the limitations of current stroke treatments, which are primarily effective for large vessel occlusions. The Rapid Medical TIGERTRIEVER device is designed to safely and effectively treat strokes and remove clots in smaller vessels deeper in the brain. The unique adjustability of the device allows physicians to control the size and force during a procedure, allowing for precise and safer clot removal in complex anatomies.
Ronen explains, "So the quicker or the less time there is between the stroke and the ability to open the occlusions and resupply the brain with oxygen, the better. There are two types of treatments. One is a drug called TPA. It's a clot buster, and that can be administered up to four and a half hours. And then there's what's called thrombectomy, which is basically using a catheter to get to the clot and then removing the clot with a catheter or stent, kind of in mechanical terms. But today, that's only applicable to what's for the bigger arteries in the brain, what's called large vessel occlusions. And these account for about 15% or 20% of the population. So there are good solutions, but they are limited in when they can be used."
"That's exactly where we come in. The reason it's difficult to treat these kinds of smaller vessels in the brain, or what we call the medium-vessel occlusion, is that the deeper you go into the brain, on the one hand, the complexity of the procedure increases. So the vessels are a little bit more fragile. There are more turns and tortuosity. So getting to the clot is a little bit harder, and pulling it out as well."
"At the same time, the benefit is a little bit smaller. So now we're not saving half of the brain. Maybe we're saving 30% of the brain, which is still very significant, but the benefit is a little bit smaller. So the risk-benefit ratio, which is critical and everything we do in medicine, changes when you're going deeper into the brain. And as a result, you need new tools."
#RapidMedical #DMVO #MeVO #Stroke #StrokeCare #Neurology #MedTech #DISTALS #Neurovascular #MedicalDevices #HealthcareInnovation #Thrombectomy #PatientCare #MedicalTechnology #StrokeAwareness #HealthcareProfessionals
rapid-medical.com
Download the transcript here
Robert Schickel, Chief Executive Officer at NUAgo Therapeutics, is developing a cancer therapy using short RNAs to target and disrupt interconnected survival genes in cancer cells. The therapy has been shown to be non-toxic to healthy cells, which have high levels of microRNAs, whereas cancer cells downregulate microRNAs to become metastatic. This is a systems-biology therapeutic approach that targets the entire survival network of a cell, making it independent of specific mutations or pathways and potentially applicable to the vast majority of solid tumors.
Robert explains, "NUAgo is a technology company. We are developing what we define as short RNAs, and these are going to be cancer therapies that really target the survival system of a cancer. This survival system keeps the cancer alive. And instead of going after single components, pathways, or mutations as targeted therapies do, we're using short RNAs to reduce the expression of multiple essential survival genes. And when you get enough of these genes disrupted, the cancer cells can no longer maintain the system that keeps them alive. And at that point, the cell will activate a death response that eliminates the cancer cell by activating several cell death pathways simultaneously. So this is really a unique area in science, and we're developing this. It's a new modality. You see a lot of promise of this in the solid tumor patients."
"The platform that we're building has the potential to go across solid tumor markets. The recent IP that we're filing is for the 11 largest tumor markets from breast and lung, kidney, liver, and all the way down to the smaller, more lethal cancers in pancreas, ovarian, and other small cancers as well. So right now we think we can apply this to about 85% or 90% of the market."
"What we're doing is we take a step back. We're in fundamental biology. So this mechanism really goes back almost a billion years. I mean, fungi have the same mechanism. And so when we go after what are called survival genes, and they are essential for the survival of a cell, they deal with all kinds of cellular functions."
#NUAgoTherapeutics #CancerResearch #Oncology #Biotechnology #PrecisionMedicine #RNATherapeutics #SystemsBiology #MedicalInnovation #HealthcareBreakthrough #CancerTreatment #SurvivalGenes #BiopharmaDevelopment
NUAgotherapeutics.com
Listen to the podcast here
Robert Schickel, Chief Executive Officer at NUAgo Therapeutics, is developing a cancer therapy using short RNAs to target and disrupt interconnected survival genes in cancer cells. The therapy has been shown to be non-toxic to healthy cells, which have high levels of microRNAs, whereas cancer cells downregulate microRNAs to become metastatic. This is a systems-biology therapeutic approach that targets the entire survival network of a cell, making it independent of specific mutations or pathways and potentially applicable to the vast majority of solid tumors.
Robert explains, "NUAgo is a technology company. We are developing what we define as short RNAs, and these are going to be cancer therapies that really target the survival system of a cancer. This survival system keeps the cancer alive. And instead of going after single components, pathways, or mutations as targeted therapies do, we're using short RNAs to reduce the expression of multiple essential survival genes. And when you get enough of these genes disrupted, the cancer cells can no longer maintain the system that keeps them alive. And at that point, the cell will activate a death response that eliminates the cancer cell by activating several cell death pathways simultaneously. So this is really a unique area in science, and we're developing this. It's a new modality. You see a lot of promise of this in the solid tumor patients."
"The platform that we're building has the potential to go across solid tumor markets. The recent IP that we're filing is for the 11 largest tumor markets from breast and lung, kidney, liver, and all the way down to the smaller, more lethal cancers in pancreas, ovarian, and other small cancers as well. So right now we think we can apply this to about 85% or 90% of the market."
"What we're doing is we take a step back. We're in fundamental biology. So this mechanism really goes back almost a billion years. I mean, fungi have the same mechanism. And so when we go after what are called survival genes, and they are essential for the survival of a cell, they deal with all kinds of cellular functions."
#NUAgoTherapeutics #CancerResearch #Oncology #Biotechnology #PrecisionMedicine #RNATherapeutics #SystemsBiology #MedicalInnovation #HealthcareBreakthrough #CancerTreatment #SurvivalGenes #BiopharmaDevelopment
NUAgotherapeutics.com
Download the transcript here
Dr. Babak Saboury, Chief Scientific and Innovation Officer and Physician Founder of United Theranostics, discusses the emergence of nuclear oncology as the fourth pillar of cancer care. United Theranostics is combining advanced molecular imaging and radiopharmaceutical therapies to identify a cancer cell's unique fingerprint and then delivering targeted radiation, reducing side effects by sparing healthy cells. Molecular imaging can serve as a unifying map for guiding a collaborative, multimodal approach to treating a range of cancers.
Babak explains, "I can just very quickly tell you that there are four pillars of treating cancer. Traditionally, when we approached cancer, we wanted to cut it out. That was surgical oncology. Whatever could not be cut out was treated by giving a medication. That was medical oncology. After a while, there was just a modality to the things that were difficult to cut out, but that was a localized hit from outside. That was the radiation oncology. And right now, we are at the beginning of a new horizon. You treat patients systemically, which means all the lesions everywhere. However, you are really there, a magical radiopharmaceutical that goes to find the cell and kills it by radiation. That's a nuclear oncology. So nuclear oncology is the fourth pillar of cancer care."
"So you can imagine that in the past we tried to attack cancer cells. We didn't know what shape they had, which proteins were expressed, or what their characteristics were. So we kind of went blindly and tried to attack them. Imagine that we have a way to find a fingerprint of those cells and go there first to find that fingerprint. And if the fingerprint exists, then go after those cells as a targeted attack. That is where molecular imaging and radiopharmaceutical therapy come into play. So molecular imaging profiles the cancer cells to see what their fingerprint is and whether a certain fingerprint exists. Radiopharmaceutical therapy uses this information to target just those cells and not other cells. And that is the principle of Theranostics, which is a combination of diagnostics and therapeutics, finding and then destroying in a very precise manner."
#UnitedTheranostics #NuclearOncology #PrecisionMedicine #Radiopharmaceuticals #CancerCare #MolecularImaging #Theranostics #OncologyInnovation #PatientCare #HealthcareInnovation #CancerTreatment
Unitedtheranostics.com
Listen to the podcast here
Dr. Babak Saboury, Chief Scientific and Innovation Officer and Physician Founder of United Theranostics, discusses the emergence of nuclear oncology as the fourth pillar of cancer care. United Theranostics is combining advanced molecular imaging and radiopharmaceutical therapies to identify a cancer cell's unique fingerprint and then delivering targeted radiation, reducing side effects by sparing healthy cells. Molecular imaging can serve as a unifying map for guiding a collaborative, multimodal approach to treating a range of cancers.
Babak explains, "I can just very quickly tell you that there are four pillars of treating cancer. Traditionally, when we approached cancer, we wanted to cut it out. That was surgical oncology. Whatever could not be cut out was treated by giving a medication. That was medical oncology. After a while, there was just a modality to the things that were difficult to cut out, but that was a localized hit from outside. That was the radiation oncology. And right now, we are at the beginning of a new horizon. You treat patients systemically, which means all the lesions everywhere. However, you are really there, a magical radiopharmaceutical that goes to find the cell and kills it by radiation. That's a nuclear oncology. So nuclear oncology is the fourth pillar of cancer care."
"So you can imagine that in the past we tried to attack cancer cells. We didn't know what shape they had, which proteins were expressed, or what their characteristics were. So we kind of went blindly and tried to attack them. Imagine that we have a way to find a fingerprint of those cells and go there first to find that fingerprint. And if the fingerprint exists, then go after those cells as a targeted attack. That is where molecular imaging and radiopharmaceutical therapy come into play. So molecular imaging profiles the cancer cells to see what their fingerprint is and whether a certain fingerprint exists. Radiopharmaceutical therapy uses this information to target just those cells and not other cells. And that is the principle of Theranostics, which is a combination of diagnostics and therapeutics, finding and then destroying in a very precise manner."
#UnitedTheranostics #NuclearOncology #PrecisionMedicine #Radiopharmaceuticals #CancerCare #MolecularImaging #Theranostics #OncologyInnovation #PatientCare #HealthcareInnovation #CancerTreatment
Unitedtheranostics.com
Download the transcript here
Shaun Bagai, CEO of RenovoRx, has designed a drug-delivery platform to treat hard-to-reach chemo-resistant tumors such as pancreatic cancer by delivering chemotherapy directly to the tumor site. The RenovoCath device increases the drug concentration in the tumor while significantly reducing systemic toxicities and side effects. The technology is not intended to replace the traditional approach using systemic chemotherapy and radiation, but to achieve better results in tumors with low blood supply that prevent drugs from reaching their target in sufficient concentrations.
Shaun explains, "Generally, when we think about oncology therapies, it's really trying to balance the detriment to the patients with the toxicities and hopefully keep the tumor at bay or kill the tumor such that patients live longer. And unfortunately, we often forget about the patient and hyper-focus on the disease. And the challenge we've taken on is, can we take both into account and actually treat both the patient and the disease by limiting systemic toxicities and effects, and then trying to improve survival by keeping the tumors at bay."
"So, when we look at certain tumors in the body, like pancreatic tumors, for example, they don't have a high level of blood supply. Generally, when we think about tumors, we think of balls of blood vessels with tumor cells, and of tumors such as pancreatic tumors. They don't have large tumor feeder vessels that end in a tumor. And what this does is create a level of chemo resistance because the blood can't carry the chemotherapy forward. And what we've developed with TAMP is a mechanism where we push the drug across the wall of a blood vessel to saturate and bathe the tumor in chemotherapy, such that we get almost a hundredfold increase in tissue concentration compared to if you just gave it systemically throughout the entire body."
#RenovoRx #OncologyInnovation #DrugDelivery #CancerCare #MedicalDevices #PancreaticCancer #ClinicalTrials #PatientCare #Interventionalradiology #Oncology #MedicalTechnology #TAMP #Chemotherapy #CancerTreatment #HealthcareInnovatio#TargetedOncology #InnovativeCancerTherapies #PancreaticCancerAwareness #PrecisionOncology
RenovoRx.com
Listen to the podcast here
Shaun Bagai, CEO of RenovoRx, has designed a drug-delivery platform to treat hard-to-reach chemo-resistant tumors such as pancreatic cancer by delivering chemotherapy directly to the tumor site. The RenovoCath device increases the drug concentration in the tumor while significantly reducing systemic toxicities and side effects. The technology is not intended to replace the traditional approach using systemic chemotherapy and radiation, but to achieve better results in tumors with low blood supply that prevent drugs from reaching their target in sufficient concentrations.
Shaun explains, "Generally, when we think about oncology therapies, it's really trying to balance the detriment to the patients with the toxicities and hopefully keep the tumor at bay or kill the tumor such that patients live longer. And unfortunately, we often forget about the patient and hyper-focus on the disease. And the challenge we've taken on is, can we take both into account and actually treat both the patient and the disease by limiting systemic toxicities and effects, and then trying to improve survival by keeping the tumors at bay."
"So, when we look at certain tumors in the body, like pancreatic tumors, for example, they don't have a high level of blood supply. Generally, when we think about tumors, we think of balls of blood vessels with tumor cells, and of tumors such as pancreatic tumors. They don't have large tumor feeder vessels that end in a tumor. And what this does is create a level of chemo resistance because the blood can't carry the chemotherapy forward. And what we've developed with TAMP is a mechanism where we push the drug across the wall of a blood vessel to saturate and bathe the tumor in chemotherapy, such that we get almost a hundredfold increase in tissue concentration compared to if you just gave it systemically throughout the entire body."
#RenovoRx #OncologyInnovation #DrugDelivery #CancerCare #MedicalDevices #PancreaticCancer #ClinicalTrials #PatientCare #Interventionalradiology #Oncology #MedicalTechnology #TAMP #Chemotherapy #CancerTreatment #HealthcareInnovatio#TargetedOncology #InnovativeCancerTherapies #PancreaticCancerAwareness #PrecisionOncology
RenovoRx.com
Download the transcript here
Suzy Jackson, a digital health specialist focusing on Patient Tech, highlights the shift in the pharmaceutical industry from a provider-focused model to direct engagement with patients. Using AI to create a more consumer-like, personalized healthcare experience will benefit patients and inform researchers and providers about adherence to care and drug side effects. Patient Tech helps reach underserved populations and moves from providing information to a proactive environment, enabling action and more informed discussions with healthcare providers.
Suzy explains, "So everything for me in the Patient Tech space is anything that helps a patient find care, navigate care options, or indeed stay on care, including anything to do with lifestyle interventions and preventative care as well. So I think the category is expanding very, very rapidly, and I'm excited to see what will go on in the next few years."
"Well, I think it's pretty safe to say that this is a new venture for the pharmaceutical industry as a whole. I think traditionally, a lot of time has been spent on ACP education and thinking about how we make HCPs aware of all the choices and therapeutic interventions that are available for their patients. But in the last couple of years, we've really seen a shift, and I think that's caused by a multitude of different factors I'm sure we can speak about, but there's really been a shift to standing on the frontline with patients for pharma and making sure that they're providing patients with care that otherwise patients are going to find in other spaces."
#PatientTech #DigitalHealth #AI #HealthcareInnovation #PatientCenteredCare #HealthEquity #PharmaTech #HealthTech #PatientExperience #WomenInHealth #HealthInnovation #AIinHealthcare #HealthcareLeadership #FutureOfHealth #Lifesciences #PharmaDTP
suzy-jackson.com
Listen to the podcast here
Suzy Jackson, a digital health specialist focusing on Patient Tech, highlights the shift in the pharmaceutical industry from a provider-focused model to direct engagement with patients. Using AI to create a more consumer-like, personalized healthcare experience will benefit patients and inform researchers and providers about adherence to care and drug side effects. Patient Tech helps reach underserved populations and moves from providing information to a proactive environment, enabling action and more informed discussions with healthcare providers.
Suzy explains, "So everything for me in the Patient Tech space is anything that helps a patient find care, navigate care options, or indeed stay on care, including anything to do with lifestyle interventions and preventative care as well. So I think the category is expanding very, very rapidly, and I'm excited to see what will go on in the next few years."
"Well, I think it's pretty safe to say that this is a new venture for the pharmaceutical industry as a whole. I think traditionally, a lot of time has been spent on ACP education and thinking about how we make HCPs aware of all the choices and therapeutic interventions that are available for their patients. But in the last couple of years, we've really seen a shift, and I think that's caused by a multitude of different factors I'm sure we can speak about, but there's really been a shift to standing on the frontline with patients for pharma and making sure that they're providing patients with care that otherwise patients are going to find in other spaces."
#PatientTech #DigitalHealth #AI #HealthcareInnovation #PatientCenteredCare #HealthEquity #PharmaTech #HealthTech #PatientExperience #WomenInHealth #HealthInnovation #AIinHealthcare #HealthcareLeadership #FutureOfHealth #Lifesciences #PharmaDTP
suzy-jackson.com
Download the transcript here
From the publisher's feed

182 Listeners