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Lost Women of Science

Lost Women of Science
Author: Lost Women of Science
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For every Marie Curie or Rosalind Franklin whose story has been told, hundreds of female scientists remain unknown to the public at large. In this series, we illuminate the lives and work of a diverse array of groundbreaking scientists who, because of time, place and gender, have gone largely unrecognized. Each season we focus on a different scientist, putting her narrative into context, explaining not just the science but also the social and historical conditions in which she lived and worked. We also bring these stories to the present, painting a full picture of how her work endures.
106 Episodes
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A finales de la década de 1890, Andrea Evangelina Rodríguez Perozo era una de las tantas niñas pobres luchando por sobrevivir en la ciudad de San Pedro de Macorís, en la República Dominicana. Su vida dio un giro extraordinario cuando dos hermanos, poetas y escritores, llegaron de la capital. Notaron algo especial en la joven, quien vivía cerca. Con su ayuda, Evangelina fue a la escuela y, contra todo pronóstico, decidió ser médica. Fue la primera mujer en estudiar en una escuela de medicina en la República Dominicana y, cuando se graduó en 1911, se convirtió en la primera doctora del país. Pero justo cuando estaba a punto de empezar su carrera, una tragedia inesperada cambiaría el curso de su vida.
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In the late 1890s, Andrea Evangelina Rodríguez Perozo, known as Evangelina, was just another poor girl trying to survive in the provincial town of San Pedro de Macorís in the Dominican Republic. Her life took an extraordinary turn when two brothers, both poets and writers, arrived from the capital. They noticed something special about the young girl who lived nearby. With their help, Evangelina went to school and, against overwhelming odds, decided to become a doctor. She was the first woman to enter medical school in the Dominican Republic, and when she graduated in 1911 she became the country's first female doctor. But just as she was about to start her career an unexpected tragedy changed the course of her life.
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En la década de 1880, una pequeña niña Afro-Dominicana pasaba sus días vendiendo dulces en las calles de San Pedro de Macorís, una bulliciosa ciudad portuaria en la República Dominicana. Abandonada por sus padres, quienes la tuvieron por fuera del matrimonio, su futuro parecía gris: en esta sociedad profundamente estratificada, pocas personas lograban escapar de la vida en la que habían nacido.Pero Andrea Evangelina Rodríguez Perozo tenía algo que hacía que los demás se fijaran en ella. Así ocurrió con dos hermanos influyentes, ambos poetas e intelectuales, quienes reconocieron en ella una mente brillante y un espíritu tenaz. Con el apoyo de ellos, Evangelina logró hacerse un camino inimaginable: convertirse en la primera mujer médica de su país.En esta temporada de cinco capítulos seguiremos a Evangelina mientras estudia medicina, primero en su país natal y luego en París, donde aprende nuevas técnicas en el campo emergente de la ginecología y se encuentra con ideas radicales sobre la salud de las mujeres, ideas que espera transformen la sociedad de su país natal. Poco imaginaba que sus nuevos enfoques sobre la salud femenina eventualmente la llevarían a su trágica caída. Las contribuciones de Evangelina Rodríguez como reformadora y pionera de la salud pública serían prácticamente borradas por el dictador cuyo régimen la persigue hasta su muerte. Aquí reconstruimos su vida y su legado.
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In the 1880s, a small Afro-Dominican girl spent her days selling sweets on the streets of San Pedro de Macorís, a bustling port town in the Dominican Republic. Born out of wedlock and abandoned by her parents, her horizons seemed narrow — in this deeply stratified society, few people ever broke free from the life they were born into.But Andrea Evangelina Rodríguez Perozo had something that made people take notice. Two influential brothers, both poets and intellectuals, recognized a brilliant mind and a tenacious spirit. With the brothers’ support, Evangelina went on to chart a path that was unheard of for any Dominican woman at that time: she became her country’s first female doctor.In this five-part season, we will follow Evangelina as she studies medicine, first in her home country, then in Paris, where she learns new medical techniques in the emerging field of gynecology and encounters radical ideas about women’s health: ideas that she hopes will transform her society back in the Dominican Republic. Little does she think her new approaches to women’s health will eventually lead to her tragic downfall. Evangelina Rodríguez’s contributions as a reformer and pioneer in public health were all but erased by the dictator whose regime hounds her to death. Here, we piece together her life and her legacy.
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Lisa See’s novel Lady Tan’s Circle of Women is inspired by a medical textbook published in 1511 by an eminent female doctor, Tan Yunxian. In this episode, we talk to See about the origin of her novel, and to Lorraine Wilcox, the scholar who translated the original Chinese text, about what the practice of medicine was like for a female doctor during the Ming Dynasty. Tan Yunxian was almost lost to history, but the chronicle of her cases was reprinted by a great nephew and, amazingly, one copy survived through the centuries. Through serendipitous scholarly connections, Wilcox translated it and See used that translation as the inspiration for her novel.
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In 1960 Marthe Gautier left the lab where she had discovered the genetic cause of Down syndrome, and went on to have a successful career as a pediatric cardiologist. For decades, she remained silent as her former colleague Jérôme Lejeune continued to take credit for this pioneering discovery, and history wrote her out of the story. Until 2009. On the 50th anniversary of the paper that announced the discovery of trisomy 21, she decided to set the record straight. The process of changing history did not always go smoothly. In 2014, at the age of 88, she was set to give a talk and receive a medal at a conference, but the event was canceled hours in advance, and she was given the medal privately the next day. Finally, toward the end of her life, Gautier got the recognition she deserved. Before she died in 2022, she was also decorated by the French government for her contributions to science.
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In the mid-1950s Marthe Gautier, a young French doctor and cytogenetics researcher, led a cutting-edge experiment to investigate the cause of Down syndrome. She painstakingly cultured cells in a ramshackle lab until one day she discovered an extra chromosome in the cells of patients with Down syndrome. This proved beyond a doubt that Down syndrome is genetic.In this first episode of our two-part series about Gautier, she sees her discovery appropriated by a male colleague as he rushes to publish her findings. Jérôme Lejeune is listed as the lead author of the discovery even though Gautier did the work. Her name is listed second on this groundbreaking paper, published in 1959. And to add insult to injury, it is misspelled. It will take decades for Gautier to speak out.
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In honor of International Holocaust Remembrance Day, we are telling the story of Margarethe Hilferding, a pioneering psychoanalyst and physician from Vienna who was murdered in a Nazi concentration camp in 1942. She was the first woman to earn a medical degree at the University of Vienna and the first woman to join Sigmund Freud’s Vienna Psychoanalytic Society. In her paper On the Basis of Mother Love, presented to the society in 1911, she argued that the maternal instinct is not innate but can develop after birth, a theory Freud and the rest of her male colleagues rejected. Margarethe soon left the society and devoted much of her life to treating women in working class neighborhoods and advocating for their reproductive health. Her theory of maternal instinct remains controversial even today.
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Dr. Katalin Karikó, a Hungarian-born biochemist, dedicated her life’s work to messenger RNA, which she always believed had the potential to change the world. After decades of being ignored, she persisted with the research that eventually revolutionized the field of medicine and enabled the development of lifesaving vaccines in record time during the COVID-19 pandemic. Dr. Karikó tells her story in her memoir, Breaking Through: My Life In Science, sharing her journey from young researcher in Hungary to Nobel Prize-winning biochemist.In this conversation, she reflects on the challenges and breakthroughs that defined her career, her resilience, and the scientific curiosity that fueled her passion for mRNA research
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At this festive time of year, when many people are bringing trees into their homes to decorate for the holidays, we are going back to our story of a pioneering scientist who made it her mission to ensure that plants traveling across borders did not carry any diseases. It was in 1909, that the Mayor of Tokyo sent a gift of 2,000 prized cherry trees to Washington, D.C. But the iconic blossoms enjoyed each spring along the Tidal Basin are not from those trees. That’s because Flora Patterson, who was the Mycologist in Charge at the USDA, recognized the original saplings were infected, and the shipment was burned on the National Mall. In this episode, we explore Patterson’s lasting impact on the field of mycology, starting with a blight that killed off the American chestnut trees, and how she helped make the USDA’s National Fungus Collection the largest in the world.
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Two female botanists – Elzada Clover and Lois Jotter – made headlines for riding the rapids of the Colorado River in 1938 in an effort to document the Grand Canyon’s plant life. In Brave the Wild River: The Untold Story of Two Women Who Mapped the Botany of the Grand Canyon, author Melissa L. Sevigny retraces their journey and shows how the ambitious river expedition, one that many believed impossible for women, changed not only Clover and Jotter but also our understanding of botany in this remote corner of the American West.
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Carolyn Beatrice Parker came from a family of doctors and academics and worked during World War II as a physicist on the Dayton Project, a critical part of the Manhattan Project tasked with producing polonium. (Polonium is a radioactive metal that was used in the production of early nuclear weapons.) After the war, Parker continued her research and her studies at the Massachusetts Institute of Technology, but she died of leukemia at age 48 before she was able to defend her PhD thesis. Decades later, during the height of the Black Lives Matter protests, citizens in her hometown of Gainesville, Florida voted to rename an elementary school in her honor. November 18th would have been her 107th birthday.
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Anna Von Mertens' thoughtful new exploration of Henrietta Swan Leavitt's life describes and illuminates Leavitt's decades-long study of stars, including the groundbreaking system she developed for measuring vast distances within our universe simply by looking at photographic plates. Leavitt studied hundreds of thousands of stars captured on the glass plates at the Harvard College Observatory, where she worked as a human computer from the turn of the 20th century until her death in 1921. Von Mertens explores her life, the women she worked alongside, and her discoveries, weaving biography, science, and visual imagery into a rich tapestry that deepens our understanding of the universe and the power of focused, methodical attention.
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Although initial clinical trials of tamoxifen as a treatment of breast cancer were positive, Imperial Chemical Industries (ICI) did not believe this market would be commercially viable. The company had hoped for a contraceptive pill – tamoxifen didn’t work for that – not a cancer treatment. In 1972 the higher-ups at ICI decided to cancel the research. But Dora Richardson, the chemist who had originally synthesized the compound, and her boss, Arthur Walpole, were convinced they were on to something important, something that could save lives. They continued the research in secret. Tamoxifen was eventually launched in the U.K. in 1973 and went on to become a global success, saving hundreds of thousands of lives. Dora Richardson’s role in its development, however, was overshadowed by her a male colleague and all but forgotten.
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In the early 1960s, chemist Dr. Dora Richardson synthesized a chemical compound that became one of the most important drugs to treat breast cancer: tamoxifen. Although her name is on the original patent, her contributions have been lost to history. In the first episode of this two-part podcast, Katie Couric introduces us to Dora’s story. Lost Women of Science producer Marcy Thompson tracked down Dora’s firsthand account of the history of the drug’s development. This document, lost for decades, tells the story of how the compound was made and how Imperial Chemical Industries, where Richardson worked, almost terminated the project because the company was hoping to produce a contraceptive, not a cancer therapy.
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While researching her book about thalidomide in America, Jennifer Vanderbes discovered that there were far more survivors in the U.S. than originally thought – at least ten times more. These survivors were born with shortened limbs and other serious medical conditions after their mothers unwittingly took thalidomide in the early 1960s in so-called clinical trials. Wonder Drug tells the story of Vanderbes’ trek across the U.S. in search of these thalidomide survivors. It also revisits the role of the U.S. Food and Drug Administration medical reviewer Dr. Frances Oldham Kelsey – the subject of our recent five-part season – who refused to approve thalidomide for sale in the U.S. In the process of writing her book, Vanderbes became an advocate for the survivors, now in their sixties, and their search for justice and support.
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It’s September 2024 and a group of American thalidomide survivors arrive in Washington D.C. to lobby the government for support. More than 60 years have gone by since Frances Kelsey first stalled the New Drug Approval application from pharma company Merrell for thalidomide. Although she stopped the drug from going on the market in the U.S., hundreds of pregnant women still took thalidomide in Merrell’s so-called clinical trials, and many had babies with shortened limbs and serious medical conditions. Others had miscarriages or stillborn babies. Here we look at the legacy of thalidomide, the changes in drug regulations in the wake of the scandal, and what happened to our hero, Frances Kelsey.
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It’s the summer of 1962 and thalidomide has been off the market in Europe for months. But in the U.S., people are only just beginning to find out about the scandal. The Washington Post breaks the story and puts a picture of Frances Kelsey on the front page. She’s the hero who saved American lives. President John F. Kennedy gives her a medal and her image is splashed across newspapers around the country. At the end of the previous year, Merrell, the company that wanted to sell thalidomide in the U.S., had made a half-hearted attempt to contact some of the doctors who had been given millions of thalidomide samples for so-called clinical trials. Just how many pregnant women might have thalidomide in their medicine cabinets?
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It’s 1961 and Widukind Lenz, a German pediatrician, is going door to door in his efforts to find out what is causing the epidemic of babies born with shortened limbs and other serious medical conditions. In the U.S., drug company Merrell is battling with Dr. Frances Kelsey at the Food and Drug Administration about the approval for thalidomide. She’s asking for data that shows it’s safe in pregnancy (spoiler alert: it’s not). Meanwhile, Merrell continues to send hundreds of thousands of thalidomide pills to doctors in so-called clinical trials. In November 1961, Dr. Lenz goes public with the results of his medical sleuthing and, as host Katie Hafner puts it, “the proverbial shit hits the proverbial fan.”
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It’s the early 1960s and the German pharmaceutical market is booming. A sedative called Contergan is one of the bestselling drugs. Contergan’s active ingredient is thalidomide and it is touted as a wonder drug, a non-addictive sedative safer than barbiturates. In the U.S., the drug is called Kevadon, and its distributor is impatient to get the drug on the market. But Dr. Frances Kelsey, a medical examiner at the U.S. Food and Drug Administration, is stalling the approval of Kevadon. She wants more information from the manufacturer to prove it is safe. Meanwhile, doctors in Scotland and Australia are beginning to suspect thalidomide might, in fact, be very toxic. And in Germany, reports are beginning to emerge of a mysterious epidemic of babies born with missing limbs and other serious medical conditions, but doctors have no idea what's causing it.
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Get fully well soon!
perfect subject for a podcast
This episode was great 👌🏻
I did not know that! “Since her death in 1979, the woman who discovered what the universe is made of has not so much as received a memorial plaque. Her newspaper obituaries do not mention her greatest discovery. […] Every high school student knows that Isaac Newton discovered gravity, that Charles Darwin discovered evolution, and that Albert Einstein discovered the relativity of time. But when it comes to the composition of our universe, the textbooks simply say that the most abundant atom in the universe is hydrogen. And no one ever wonders how we know.” — Jeremy Knowles, discussing the complete lack of recognition Cecilia Payne gets, even today, for her revolutionary discovery. (via alliterate) OH WAIT LET ME TELL YOU ABOUT CECILIA PAYNE. Cecilia Payne’s mother refused to spend money on her college education, so she won a scholarship to Cambridge. Cecilia Payne completed her studies, but Cambridge wouldn’t give her a degree because she was a woman, so she said to heck with that and m
that was excellent 👌🏼😍
this podcast is amazing 👏 😍 keep going 💪🏻
m.h xxxx