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  • Cholesterol: Xanthomas, Blood, & Bile Linking Cholesterol to Heart Disease
    2026/09/03

    An eleven-year-old girl, cholesterol-fed rabbits, a wartime centrifuge, and the receptors that transformed our understanding of heart disease.

    In this episode, we trace how scientists uncovered the connection between cholesterol and atherosclerosis. We begin with an 1889 case involving a young girl covered in xanthomas, then follow cholesterol from its discovery in bile to the fatty plaques found inside diseased arteries.

    From there, we explore the experiments that showed cholesterol could cause atherosclerosis, the technology that separated HDL from LDL, and the families whose early heart disease revealed the genetics of familial hypercholesterolemia. Finally, we examine the discovery of the LDL receptor and how it transformed our understanding of cholesterol metabolism laying the foundation for modern cholesterol-lowering therapies.

    Chapters
    • (00:00:00) - Cholesterol: Xanthomas, Blood, and Bile
    • (00:01:07) - The First Case of Familial Hypercholesterolemia
    • (00:02:49) - What Is Cholesterol?
    • (00:03:54) - From Hardening Arteries to Atherosclerosis
    • (00:04:47) - Cholesterol’s Discovery in Bile
    • (00:08:04) - Finding Cholesterol in Arterial Plaques
    • (00:11:12) - Proving the Connection with Rabbits
    • (00:14:25) - High Cholesterol Runs in Families
    • (00:15:47) - Cholesterol Is More Than One Thing
    • (00:17:37) - Discovering HDL and LDL
    • (00:19:01) - Connecting LDL to Heart Disease
    • (00:21:41) - The Discovery of the LDL Receptor
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    26 分
  • Asthma: Horses, Fish Scale, IgE - The Story of Elucidating the Mechanism of Allergies
    2026/07/27

    A blood transfusion, a horse-drawn carriage, fish scales, and a rare cancer that transformed our understanding of allergies.

    In this episode, Dr. Adam J. Brown concludes the asthma series by telling the remarkable story of IgE—the antibody at the center of allergic disease. We begin with a mysterious 1919 case in which a man seemingly developed a horse allergy after a blood transfusion, then follow the pioneering experiments that revealed allergic sensitivity could be transferred through plasma.

    From there, we piece together the puzzle of allergy by connecting IgE, mast cells, and histamine. You'll discover how allergen-specific IgE triggers the release of histamine, why this pathway is responsible for many allergic reactions and asthma attacks, and how these discoveries paved the way for anti-IgE therapies like omalizumab—changing the treatment of allergic asthma, chronic hives, food allergies, and more.

    Chapters
    • (00:00:00) - Introduction: The Story of IgE
    • (00:01:09) - The Man Who Acquired a Horse Allergy
    • (00:05:22) - The Fish-Scale Allergy Experiment
    • (00:07:00) - The Search for the Mystery Antibody
    • (00:09:02) - The Discovery of IgE
    • (00:10:36) - A Rare Cancer and Peter Shackford’s Donation
    • (00:12:13) - Histamine, Mast Cells, and Paul Ehrlich
    • (00:16:18) - Connecting IgE, Mast Cells, and Histamine
    • (00:18:23) - How Allergens Trigger Histamine Release
    • (00:20:09) - From IgE Receptors to Omalizumab
    • (00:22:37) - Why Do We Have IgE and Mast Cells?
    • (00:24:33) - Closing Thoughts
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    25 分
  • Asthma: From Medieval Pregnant Cows to Albuterol - The Discovery of Beta Agonists
    2026/06/23

    Medieval peasants, poisonous rye fungus, racing hearts, and one of the most important inhalers ever invented. In this episode, Dr. Adam J. Brown continues the asthma series with the strange history of beta-2 agonists and albuterol. We begin with ephedra, ephedrine, and early plant-based asthma treatments, then follow the trail through ergot-contaminated rye, Henry Dale’s experiments with ergotamine and adrenaline, and the discovery that the sympathetic nervous system was working through more than one receptor. From there, we trace Raymond Ahlquist’s alpha/beta receptor breakthrough, the rise of epinephrine and isoproterenol as asthma therapies, the asthma death epidemic of the 1960s, and the leap that separated beta-1 from beta-2 receptors. That discovery opened the door to albuterol—an inhaler designed to target the lungs more than the heart, and still one of the most important rescue treatments in asthma.

    Chapters
    • (00:00:00) - Introduction
    • (00:00:58) - Ephedrine: The Mongolian Asthma Remedy
    • (00:02:26) - Ergot: Medieval Pregnant Cows
    • (00:04:50) - Henry Dale and the Ergot Mystery
    • (00:06:43) - Adrenaline and the Sympathetic System
    • (00:08:24) - The Ergotamine-Adrenaline Paradox
    • (00:11:10) - Ahlquist Discovers Alpha and Beta Receptors
    • (00:12:34) - Early Modern Asthma Treatments
    • (00:13:36) - Isoproterenol and the Asthma Death Epidemic
    • (00:15:16) - Beta-1 vs Beta-2 Receptors
    • (00:15:17) - Albuterol: Modern Rescue Inhaler
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    18 分
  • Asthma: Dreams of Anticholinergics
    2026/05/16

    Asthma treatment wasn’t always built around inhalers. It once came from poisonous plants, smoke, and a mysterious dream. In this episode, we explore the strange history of anticholinergics, tracing the path from Jimsonweed and belladonna to atropine, acetylcholine, and Otto Loewi’s discovery of “Vagusstoff.” We follow how Loewi’s frog-heart experiment helped prove that nerves communicate through chemical messengers, and how Henry Dale’s work connected those discoveries to the vagus nerve and airway constriction. We examine why early plant-based asthma remedies could open the airways while also causing dangerous side effects, and how that understanding eventually led to modern anticholinergic therapy. This episode reveals how a dream, a frog heart, and a toxic smoke helped shape the pharmacology of asthma.

    Chapters
    • (00:00:00) - The Dream That Changed Asthma Medicine
    • (00:00:58) - Types of Neurotransmitters
    • (00:02:41) - Dr. Otto Loewi’s Has a Dream
    • (00:04:22) - Smoking Plants for Asthma
    • (00:06:02) - Jimsonweed
    • (00:08:27) - Belladonna
    • (00:11:36) - Atropine Isolated
    • (00:13:26) - The Autonomic Nervous System
    • (00:14:44) - The Vagus Nerve
    • (00:17:36) - The Frog Heart Experiment
    • (00:18:54) - Vagusstoff Becomes Acetylcholine
    • (00:19:42) - Henry Dale and Anticholinergic
    • (00:21:49) - The Problem With Inhaled Atropine
    • (00:22:15) - Modern Anticholinergic Therapy
    • (00:23:56) - Outro
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    24 分
  • Asthma: From the Greeks to Albuterol How Science Unraveled the Airways
    2026/04/11

    Asthma wasn’t always a diagnosis—it was once just a word for breathlessness. In this episode, we explore how asthma evolved from a nonspecific symptom into a defined disease of the small airways. From early descriptions in Greek medicine to the pathologic insights of Morgagni and the mechanistic thinking of Henry Hyde Salter, we follow the key discoveries that shaped our understanding of asthma. We examine how airway inflammation, bronchospasm, mucus plugging, and allergic responses were gradually identified as central features of the disease. This episode sets the stage for understanding the modern pathophysiology of asthma and the therapies that followed.

    Chapters
    • (00:00:00) - Opening: Episode Setup
    • (00:01:29) - Story: A Sickly Child in the 1800s
    • (00:05:57) - What Is Asthma? (Modern Definition)
    • (00:06:40) - Asthma Symptoms & Triggers
    • (00:08:55) - Origins of the Word “Asthma”
    • (00:09:55) - Muscle Contractions: Early Clinical Observations
    • (00:13:39) - Allergy & Inflammation: 20th Century Shift
    • (00:14:46) - Animal Models of Asthma
    • (00:18:51) - Human Trials with Histamine
    • (00:20:21) - Closing
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    21 分
  • Breaking the RAAS Cycle: ACE Inhibition in Heart and Kidney Disease
    2026/03/12

    From the discovery of a mysterious blood-pressure–lowering effect in the venom of a Brazilian pit viper to the development of the first ACE inhibitor, we trace how scientists transformed a deadly toxin into lifesaving medicine. We follow the work that identified bradykinin-potentiating peptides in snake venom and revealed that angiotensin-converting enzyme could be blocked—leading to the creation of captopril and later drugs such as enalapril and lisinopril. Along the way, landmark experiments and clinical trials showed that ACE inhibitors do far more than lower blood pressure, reshaping the treatment of heart failure and chronic kidney disease by targeting maladaptive activation of the renin–angiotensin–aldosterone system.

    Chapters
    • (00:00:00) - ACE Inhibitor Story Continues: Shutting off RAAS
    • (00:01:00) - Recap: The RAAS Refresher
    • (00:02:36) - Venom Mystery : Why Pit Viper Bites Cause Hypotension
    • (00:05:02) - Venom and the ACE Connection: John Vane's Lab
    • (00:06:20) - Interview With a Pit Viper: Snake’s Take on Pharma
    • (00:09:18) - Venom Into Medicine: Turning Raw Venom into a Drug
    • (00:10:04) - Captopril: The First ACE Inhibitor
    • (00:11:04) - Better ACE Inhibitors: Captopril to Enalapril to Lisinopril
    • (00:12:35) - Maladaptive RAAS Activation: Heart Failure Activates Renin
    • (00:19:36) - Maladaptive RAAS Activation: Kidney Failure Activates Renin
    • (00:24:24) - Episode Conclusion: ACE Inhibitors Transform Cardiorenal Medicine
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    27 分
  • ACE Inhibitors, RAAS Physiology, and Snake Venom: Renin, Angiotensin, and Kidney Blood Pressure Control
    2026/02/11

    From grinding up kidneys and injecting the extracts into animals to the famous Goldblatt clamp experiment, we trace decades of bold science that uncovered the body's most elaborate blood pressure system piece by piece. In part one of a two-part story, we follow the kidney's rise from simple filter to master regulator — through the discovery of renin, the bitter 17-year naming rivalry between Buenos Aires and Cleveland, and the identification of the enzyme that activates it all. Along the way, we encounter a Brazilian pit viper whose venom holds a molecular clue to one of modern medicine's greatest breakthroughs.

    Chapters
    • (00:00:00) - ACE Inhibitors: A Two-Part Story Begins
    • (00:01:00) - Catching Up: Hypertension, Early Treatments, and Accidental Drugs
    • (00:02:35) - What Is an ACE Inhibitor?
    • (00:03:27) - Step-by-Step RAAS: Renin → Angiotensin → Aldosterone
    • (00:05:43) - Enter the Brazilian Pit Viper: Venom and Hypotension
    • (00:07:45) - Dr. Richard Bright and the Kidney–Heart Connection
    • (00:09:13) - Tigerstedt and the Discovery of Renin
    • (00:10:27) - Wild Inspiration: Brown-Séquard’s Influence
    • (00:11:36) - Rabbit Kidney Extracts and a Pressor Substance
    • (00:13:52) - Goldblatt’s Clip: Renal Ischemia Causes Hypertension
    • (00:16:45) - Buenos Aires Group: What Is the Kidney Secreting?
    • (00:19:00) - Hypertensin vs. Angiotonin: Two Names, One Substance
    • (00:22:09) - Dr. Skeggs: Angiotensin I vs II
    • (00:23:30) - Sodium Chloride and the Hint of ACE
    • (00:24:05) - Recap and Tease for Part Two
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    25 分
  • Mercury, the First Antibiotic, and the Birth of Thiazide Diuretics
    2026/01/13

    From mercury injections in early syphilis and heart failure patients to the discovery of carbonic anhydrase and the rise of sulfa drugs, we follow how physicians first learned to manipulate fluid balance. We also explore the development of acetazolamide and the eventual breakthrough of thiazide diuretics—revealing how observation and experimentation reshaped the treatment of heart failure and high blood pressure.

    Chapters
    • (00:01:18) - What are diuretics?
    • (00:02:28) - Mercury for congenital syphilis & surprise diuresis
    • (00:08:46) - Mercury’s problems & the need for safer diuretics
    • (00:10:26) - Sulfa drugs & penicillin’s first patient
    • (00:12:24) - Sulfanilamide, acidosis, and the first kidney clues
    • (00:15:01) - Discovery of carbonic anhydrase and its significance
    • (00:17:36) - Designing better carbonic anhydrase inhibitors (Acetazolamide)
    • (00:19:55) - Chlorthiazide and the thiazide era
    • (00:21:26) - Wrap-up
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    23 分