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Behind the Breakthroughs
Behind the Breakthroughs
Author: Inside Precision Medicine
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Medicine is full of breakthroughs. Most don't become medicine. Behind the Breakthroughs explores scientific ideas that could change how we diagnose and treat disease—and what it will take for them to work. Host Jonathan D. Grinstein, PhD, a scientist-turned-journalist, speaks with the researchers, physicians, and entrepreneurs building the next generation of genetic medicines, diagnostics, AI, precision therapeutics, and biotechnology.
Hosted on Acast. See acast.com/privacy for more information.
51 Episodes
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Human Longevity executive chairman Wei-Wu He discusses how the integration of genomics, advanced imaging, and artificial intelligence could transform disease prediction and personalized preventive medicine. Reflecting on Craig Venter’s legacy, he explores the challenges of democratizing precision medicine and the quest to extend human healthspan by identifying and intervening in disease before symptoms emerge.Produced and hosted by Jonathan D. Grinstein, PhDAudio mixed and mastered by Erick ZieglerBrought to you by Inside Precision Medicine (SAGE Publishing) Hosted on Acast. See acast.com/privacy for more information.
Roche’s AXELIOS sequencer, Alzheimer’s blood test, and push to automate mass spectrometry point to a broader strategy of making advanced diagnostics routine. Whether AXELIOS can meaningfully challenge Illumina’s sequencing dominance, however, remains an open question.Produced and hosted by Jonathan D. Grinstein, PhDAudio mixed and mastered by Erick ZieglerBrought to you by Inside Precision Medicine (SAGE Publishing) Hosted on Acast. See acast.com/privacy for more information.
Gene therapy’s biggest bottleneck remains delivery: getting increasingly sophisticated genetic medicines safely into the right cells. SonoThera is taking a radically different approach, using ultrasound and microbubbles instead of viral vectors and nanoparticles, which could allow for larger payloads, repeat dosing, and precise tissue targeting. The key question is whether this seemingly too-good-to-be-true approach can work in humans after promising results across multiple organs in animals.Produced and hosted by Jonathan D. Grinstein, PhDAudio mixed and mastered by Erick ZieglerBrought to you by Inside Precision Medicine (SAGE Publishing) Hosted on Acast. See acast.com/privacy for more information.
Biocatalysis has evolved from a scientific curiosity into a powerful manufacturing platform, culminating in enlicitide, the first oral macrocyclic peptide PCSK9 inhibitor. Merck’s David Thaisrivongs explains how enzyme engineering helped create this “Goldilocks” class of medicines—and could open previously inaccessible drug targets to oral therapies.Produced and hosted by Jonathan D. Grinstein, PhDAudio mixed and mastered by Erick ZieglerBrought to you by Inside Precision Medicine (SAGE Publishing) Hosted on Acast. See acast.com/privacy for more information.
Antimicrobial resistance (AMR) isn't going to be solved by new antibiotics alone—it also requires identifying resistant infections quickly enough to guide treatment and prevent transmission. In this episode of Behind the Breakthroughs, Anne Beaubrun, PhD, of Cepheid and Amish Acharya, PhD, of the Fleming Initiative, discuss how rapid molecular diagnostics, including the TRACE-CPE study, could bring precision medicine to infectious disease by enabling earlier detection of carbapenemase-producing Enterobacterales (CPE)—dangerous, last-resort antibiotic-resistant bacteria that are spreading rapidly in hospitals. They also explore the scientific, clinical, and policy challenges of making rapid diagnostics a routine part of healthcare worldwide.Produced and hosted by Jonathan D. Grinstein, PhDAudio mixed and mastered by Erick ZieglerBrought to you by Inside Precision Medicine (SAGE Publishing) Hosted on Acast. See acast.com/privacy for more information.




