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Вміст надано TGen Talks. Весь вміст подкастів, включаючи епізоди, графіку та описи подкастів, завантажується та надається безпосередньо компанією TGen Talks або його партнером по платформі подкастів. Якщо ви вважаєте, що хтось використовує ваш захищений авторським правом твір без вашого дозволу, ви можете виконати процедуру, описану тут https://uk.player.fm/legal.
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Squid Game is back—and this time, the knives are out. In the thrilling Season 3 premiere, Player 456 is spiraling and a brutal round of hide-and-seek forces players to kill or be killed. Hosts Phil Yu and Kiera Please break down Gi-hun’s descent into vengeance, Guard 011’s daring betrayal of the Game, and the shocking moment players are forced to choose between murdering their friends… or dying. Then, Carlos Juico and Gavin Ruta from the Jumpers Jump podcast join us to unpack their wild theories for the season. Plus, Phil and Kiera face off in a high-stakes round of “Hot Sweet Potato.” SPOILER ALERT! Make sure you watch Squid Game Season 3 Episode 1 before listening on. Play one last time. IG - @SquidGameNetflix X (f.k.a. Twitter) - @SquidGame Check out more from Phil Yu @angryasianman , Kiera Please @kieraplease and the Jumpers Jump podcast Listen to more from Netflix Podcasts . Squid Game: The Official Podcast is produced by Netflix and The Mash-Up Americans.…
TGen Talks
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Вміст надано TGen Talks. Весь вміст подкастів, включаючи епізоди, графіку та описи подкастів, завантажується та надається безпосередньо компанією TGen Talks або його партнером по платформі подкастів. Якщо ви вважаєте, що хтось використовує ваш захищений авторським правом твір без вашого дозволу, ви можете виконати процедуру, описану тут https://uk.player.fm/legal.
TGen Talks explores the human genome to tackle the latest science and discoveries in cancer, neurological disorders, rare diseases, metabolic disorders and infectious disease. Learn about causes and potential cures in our monthly podcast!
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88 епізодів
Відзначити всі (не)відтворені ...
Manage series 1936276
Вміст надано TGen Talks. Весь вміст подкастів, включаючи епізоди, графіку та описи подкастів, завантажується та надається безпосередньо компанією TGen Talks або його партнером по платформі подкастів. Якщо ви вважаєте, що хтось використовує ваш захищений авторським правом твір без вашого дозволу, ви можете виконати процедуру, описану тут https://uk.player.fm/legal.
TGen Talks explores the human genome to tackle the latest science and discoveries in cancer, neurological disorders, rare diseases, metabolic disorders and infectious disease. Learn about causes and potential cures in our monthly podcast!
…
continue reading
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TGen Talks

Summers at TGen offer a unique opportunity for students to dive into the world of biomedical research. The Helios Scholars Program at TGen actively engages student interns in real-world science and administrative functions, as they gain practical experience and contribute to ongoing projects.Join host Karie Dozer as Helios Scholar Audra Welch shares her unfiltered experience in the intensive eight-week program. Discover how this Northern Arizona University biology and Spanish major is diving headfirst into biomedical research, specifically exploring how age influences the brain's response to sepsis.Audra candidly discusses the thrill and challenge of wet lab work, building on the extensive research of her Ph.D. mentor, and the unique experience of preparing for a research symposium presentation. She also reflects on her journey from environmental engineering to medical microbiology and shares the surprising inspiration she found in an American surgeon and medical researcher Dr. Charles Drew.Whether you are an aspiring scientist, or simply curious about the next generation of researchers behind the biomedical advances of the future, Audra’s insights reveal the supportive and welcoming environment at TGen, where learning and discovery drive the science behind the breakthroughs.…
In this episode of TGen Talks, we spotlight the Ivy Neurological Sciences Internship Program at TGen. This year-long program bridges the gap between undergraduate studies and medical school, providing aspiring physicians with direct laboratory experience. Interns actively participate in ongoing research, often leading independent projects. Joining our podcast is Ivy Intern, Megan Locklear, who’s completing a year-long internship working in the glioblastoma lab before entering medical school. Her work exemplifies how TGen empowers the next generation of medical researchers. Join us as we discuss her experiences and the impact of this unique internship. The year of lab work has taught Megan more about what type of medical field she might pursue, the importance of biomedical research when dealing face-to-face with patients and their families and why stepping outside your comfort zone can bring about the best possible learning experiences.…
This month on TGen Talks, we get an insider’s perspective on how today’s biomedical research translates into tomorrow's treatments. We sit down with Stephanie Pond, Ph.D., Vice President of Emerging Opportunities at TGen. We’ll Learn about the crucial role of TGen’s START and EDP programs – the Scientific Technology Assessment Research Team and Enterprise Directed Programs – in accelerating this process. Dr. Pond explains how her team works to identify gaps in current research tools, partner with biotechnology companies to develop new technologies, and help commercialize TGen’s research discoveries. She highlights how advances in multiomics, single-cell sequencing, and spatial technologies are transforming biomedical research and enabling new diagnostic tests and treatments. Dr. Pond also discusses TGen's Enterprise Directed Programs, which focuses on taking research discoveries and developing scalable clinical tests and products. Join us to hear Dr. Pond’s passion for technology and science and her dedication to bringing personalized medicine to life, faster.…
Understanding how infectious diseases spread in the past is important to understanding how they affect populations today. The difficulty lie in piecing together information given that so little is known about how microbes spread historically. Applying academic rigor with scientific assessment, two microbiologists teamed with an archaeologist to look at different types of evidence — genetics, anthropology, paleontology and climate — in an attempt to explain how the fungus that causes Valley fever, Coccidioides immitis, ended up in a specific area of Washington state. The review article in mBio by Drs. David Engelthaler, James C. Chatters and Arturo Casadevall details their approach from a historical perspective, applying what they knew about the biology and epidemiology of C. immitis, which led them to propose a new theory for why it has emerged in that region of Washington. Today, a great deal of discussion around the spread of diseases and the expansion of their habitats focuses on the effects of global warming. And while climate change does have an impact on different environments and habitats, this investigation sought to understand how and why different microbes, like fungi, move from one place to another through the lens of modern biology. Their final analysis, climate change may not always be the reason behind the spread of diseases, but it can reveal past events that could be dangerous. Engelthaler explains more in this edition of TGen Talks.…
Science has come a remarkably long way, especially since sequencing the human genome, but has it come far enough for everyone? A focus of TGen research has always been finding a path to the clinic and ensuring the work is relevant to patients in need. But that’s not always easy. Jeffrey Trent Ph.D., F.A.C.M.G., TGen's Founding President and Research Director, on episode 39 of TGen Talks, discusses how investigators at TGen headquarters continued their research into various cancers and other diseases without missing a beat while most of the world was on COVID lockdown, and shares his views on the value of having summer interns. All this and more on TGen Talks.…
Pulmonary Fibrosis. A debilitating disease that restricts a person’s lung capacity, controllable with drug therapies, but it’s only “cure” is a double lung transplant. Researchers at TGen have released the results of a study that investigated the disease on a cellular level. Using advanced spatial transcriptomics, they identified hidden disease markers in seemingly healthy lung tissue—offering hope for earlier, more personalized treatments. Targeting these early disruptions could improve lung function and outcomes. With current PF treatments only slowing decline, this discovery, published in Nature Genetics, marks a step toward preventing irreversible damage. In this episode of TGen Talks, Nicholas Banovich, Ph.D., discusses the Nature Genetics finding and the new spatial map of gene expression in lung cells. Instead of blending tissue together and analyzing it, scientists can now examine individual cells and pinpoint where molecular changes happen. We’ll break down what this means, how it’s done, and why it could change the way we study lung disease.…
In this episode of TGen Talks, which celebrates Women’s History Month (March), we’ll explore how women in science have shaped the world around us, and how their stories continue to inspire future generations of young women to become researchers, leaders, and trailblazers who continue to break barriers. Joining the podcast this month is Bethany Davis, Ph.D., an enrolled member of the Turtle Mountain Band of Chippewa Indians and a Research Assistant Professor in TGen’s Clinical Genomics and Therapeutics Division. Davis specializes in studying the effects of environmental toxins, like heavy metals, and other conditions that affect the kidneys. She’s particularly focused on understanding the molecular characteristics behind kidney cancer in Native American communities. Beyond her research, however, Dr. Davis shares her personal journey into science. As a woman in a field traditionally dominated by men, she’ll highlight some of the unsung pioneers whose work laid the foundation for modern science, reflect on her personal career path, the challenges she’s faced, and her vision for the future of cancer genomics in Native American health. Join us for an inspiring conversation that illuminates the power of women in science and their impact on advancing health and innovation.…
What if the cure for diseases like Alzheimer’s or cancer lay hidden inside the immune systems of llamas, cows, or even sharks? On this episode of TGen Talks, TGen’s newest faculty member, Dr. John Fryer, introduces us to the world of nanotherapeutics—a new class of biologics derived from the unique immune systems of animals like camels and sharks. These ultra-small molecules, known as “nanobodies,” are revolutionizing the way we think about treating diseases like Alzheimer’s, cancer, and even sepsis. Dr. Fryer explains how these tiny molecules—about 10 times smaller than traditional monoclonal antibodies—can target tough-to-reach areas like the brain, offering new hope for conditions once thought impossible to treat. He dives into his team’s work on neurodegenerative diseases, sepsis, and cancer, and shares how the collaboration between TGen and City of Hope is accelerating the development of these next-generation therapies. What’s even more fascinating? How creativity and curiosity drive scientific discovery, with Dr. Fryer’s lab exploring everything from nano and pico bodies to the science behind brain tumors. Tune in to learn about the science, the passion, and the unexpected inspiration that drives this groundbreaking research.…
Scientists have long known that farm chemicals can be harmful to human health. Many lawn and garden products used by consumers carry warnings, so that users can protect themselves when applying herbicides in their own yards. But which chemicals are the most dangerous? And how much exposure is too much to be considered safe? A new study from TGEN and Arizona State University is shedding light on glyphosate, a common chemical in many herbicides, and its findings indicate that not only does glyphosate cross the blood brain barrier, but its damaging effects on the brain can remain long after the exposure. Patrick Pirrotte, Ph.D., and colleagues at Arizona State University have identified an association between glyphosate exposure and symptoms of neuroinflammation, as well as accelerated Alzheimer’s disease-like pathology. The study tracks both the presence and impact of glyphosate’s byproducts in the brain long after exposure ends, showing an array of persistent, damaging effects on brain health. Listen as Dr. Pirrotte discusses the methods used in the research and how the pervasive use of such chemicals means that most Americans, even those who have no exposure to farms or the application of such herbicides have traces of the harmful compounds in their bodies.…
On this month’s TGen Talks, our host sits down with Leigh Nicholson, Ph.D., who was recently named a research assistant professor in TGen’s Early Detection and Prevention Division. Nicholson studies neurological diseases of all kinds — from the rarest to the very common — including a childhood disorder called Okur-Chung neurodevelopmental syndrome, or OCNDS for short, and Alzheimer’s disease, which affects nearly 7 million Americans. The podcast covers her path to a career in science, her day-to-day research, and why she thinks mentoring young scientists and improving scientific literacy is so important. All this and more, in just under 15 minutes.…
Every September, the scientific community recognizes postdoctoral researchers during Postdoc Appreciation Week. Postdocs bring new ideas and deep expertise as they tackle complex questions and expand knowledge through experiments. In this month’s episode of TGen Talks, Aya Kamzina, Ph.D., one of TGen’s 11 postdoctoral researchers, shares her journey to becoming a postdoc and her experiences at TGen. Dr. Kamzina’s educational path began in Kazakhstan and differs from many of her peers. She discusses her work with organoids and microglia in Dr. Huentelman’s neurogenomics lab, as well as her diverse background in biochemical engineering and molecular biology. Dr. Kamzina also explains why she finds TGen’s translational research meaningful and how it aligns with her goals in shaping the future of science.…
Scientists at TGen have released the results of a more than decade-long study into multiple myeloma. Looking at more than 1100 patients from four different countries, scientists identified new genetic subtypes of the disease, providing insights that could transform how we approach treatment (see related story above). Listen as Jonathan Keats, Ph.D., the study's senior author discusses the findings, their impact on personalized medicine, and how TGen's advanced genomic sequencing is paving the way for more effective and individualized care. In particular, the study has identified a high-risk subgroup of patients with a distressingly short median survival, highlighting the urgent need for tailored therapies and innovative clinical trials.…
Aging. It’s something we’d all like to do better. Americans spend an estimated $5 Billion on anti-aging products every year. But at TGen and City of Hope, scientists like TGen distinguished professor Nicholas Schork, Ph.D., are working to unlock the secrets to not just better ‘aging,’ but disease prevention alongside longevity, and are making promising progress toward medications and methods that will be tailored to each specific person, rather than those that promise longer healthier lives for all. In this episode of TGen Talks, our host Karie Dozer sits down with Schork to discuss the groundbreaking search for substances that can slow down aging. Imagine a daily pill that not only extends your lifespan but also your health span, delaying age-related diseases like heart disease, diabetes, and cancer. Schork, with his extensive background in quantitative genetics and translational biomedical science, explains the exciting potential of longevity and health promoting interventions, termed ‘geroprotectors,’ and the race to develop them. We'll explore the challenges and excitement of developing anti-aging interventions, the race to find effective solutions, and the potential of personalized treatments through “N-of-1” trials. Join us as we delve into the future of aging research and the hope it brings for healthier, longer lives.…
On this month’s TGen Talks, David Engelthaler, Ph.D., professor and director of TGen’s Pathogen and Microbiome Division, discusses the recent surge of bird flu, also known as H5N1. H5N1 has been in the news a lot lately, but what does it all mean? Engelthaler breaks down the science and talks about the effects this particular strain might have on humans. He also explains what constitutes an outbreak, how they fade over time, and why they start anew. Bird flu, like other influenza viruses, changes and mutates over time, and the H5N1 strain is particularly concerning. Although it is currently a low risk for human outbreak (there are only 3 known cases in the U.S. thus far), its impact on other animals, especially poultry and cattle, caught the attention of the CDC, USDA and other groups that monitor such outbreaks. Engelthaler notes that outbreaks are often first noticed by wildlife managers or at zoos, where bird die-offs prompt testing for influenza. Over the past two years, the current bird flu strain has spread significantly by wild birds across North America and the rest of the world. The good news: In Arizona, only one mammal, an Abert’s tree squirrel, has tested positive for H5N1 to date. TGen researchers are working with local wildlife and health officials to monitor the situation.…
This month, TGen Talks explores polygenic risk scores with Dr. David Duggan, an associate professor in the Quantitative Medicine and Systems Biology Division at TGen. A polygenic risk score is a number that indicates the combined effect of many genetic variants on a person's risk of developing a certain trait or disease. Each genetic variant adds a small amount to the overall risk. When these small effects are added together, they help predict the likelihood of developing the trait or disease. Think of the human genome as a deck of cards, where each card represents a different genetic variant. The value of each card represents the risk contribution of that variant. For example, an Ace might represent a high-risk variant (4 points), while a 2 might represent a low-risk variant (1 point). Let's assume all contributions are positive for simplicity, although in reality, some variants might reduce risk. Imagine drawing 10 cards from the deck randomly. These 10 cards represent the genetic variants you inherited from your parents. Each card has a point value (risk contribution). Adding up the points of the 10 cards gives you your polygenic risk score. This score indicates your genetic predisposition to the trait or disease. You can then compare this score against population averages or thresholds to determine if you are at higher or lower risk for the trait or disease. In this analogy, each card represents a genetic variant, and its point value represents its contribution to your overall genetic risk for a specific trait or disease. The polygenic risk score is the sum of these contributions, much like summing the values of drawn cards to get a total score. This information can help you and your doctor make informed health decisions, such as focusing on preventive measures. Dr. Duggan notes that lifestyle factors also play a significant role in disease risk, sometimes reducing genetic risk by up to 50%. Whether you’re a healthcare professional, a genetics enthusiast, or just curious about the future of personalized medicine, this month’s TGen Talks is worth the listen.…
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