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Academic Medical Centers: A Call to Maintain the Spirit of Excellence and Innovation

Academic Medical Centers: A Call to Maintain the Spirit of Excellence and Innovation

Newsweek09-07-2025
Medicine once felt like a sacred pursuit. I remember walking the halls of the University of Chicago in the late 1980s, surrounded by pioneers of immunology and genetics, where every discovery felt like it could change the world. We weren't just learning medicine—we were witnessing the birth of modern biology.
In those years, I trained under mentors like Donald Rowley, an expert in B cell regulation, and Janet Rowley, who made a seminal discovery in cancer biology by identifying chromosomal translocations. It was a time of extraordinary progress, and I felt part of a revolution in medicine.
That spirit—the relentless pursuit of discovery, the unwavering devotion to excellence—is what shaped me.
But today, that spirit is under threat. Not only in the United States, where academic medical centers (AMCs) are strained by politics, profit models and bureaucracy—but also in countries like Mexico, where health systems are crumbling under neglect and underfunding.
This is a call to remember what made academic medicine the beacon of progress. And to fight for it, before it fades into nostalgia.
My Personal Journey in Academic Medicine
After completing my basic science training, I began clinical work at Baylor College of Medicine with the goal of becoming an oncologist specializing in bone marrow transplantation. But my time at Baylor College of Medicine and Houston Methodist—home to giants like Dr. Michael DeBakey and Dr. Denton Cooley—changed my path. I witnessed cardiac surgery, heart transplants and artificial heart implantations being performed routinely, while interventional cardiology was just beginning to emerge. It became clear to me that the future of medicine—minimally invasive—was unfolding in cardiovascular care. This inspired me to become a cardiologist.
I would argue that my training experience was exceptional because of the academic medical centers where I trained. Many of us in medicine were shaped by that same spirit: a belief in discovery, in academic rigor, in the power of science to improve lives. Whether in the U.S., Mexico or elsewhere, we share this commitment to excellence, to purpose and to the greater good.
TecSalud
Where Are We Today?
We are once again living in extraordinary times. Advances like immune checkpoint inhibitors, minimally invasive cardiac procedures and gene-editing technologies are transforming medicine. Personalized therapies, powered by genomics and AI, are becoming a reality.
Yet despite this progress, the spirit that once defined academic medicine is fading. Physicians are burdened by financial pressures, hospitals operate like businesses and funding for research is shrinking. The political climate in the U.S. adds further strain: NIH grants have been suspended, elite universities are being threatened and policies like the MFN (Most Favored Nation) proposal discourage innovation in the pharmaceutical and biotech industries. Tariffs are raising costs while public discourse increasingly disregards science itself.
In Mexico, academic medicine faces even greater challenges: low health care spending, lack of universal access and a divide between public and private sectors.
The promise of modern medicine is immense, but we risk losing the ecosystem that makes it possible.
TecSalud
Call to Action: Reclaim the Spirit of Excellence
The engine of medical progress has always been the unique collaboration between universities, hospitals, physicians and industry, especially within AMCs. These institutions are where breakthroughs happen, where future leaders are shaped and where science is translated into real-world impact.
Today, that model is under pressure. Yet it is precisely in these moments of challenge that AMCs must stand firm as beacons of excellence, purpose and innovation.
That is the path we are following in Mexico at TecSalud. We've created a physician group integrated with our medical school, launched research platforms like the Origin project—a genomic and biostatistical study of 100,000 Mexicans—and established a GMP facility to advance cell therapies. We are building a new center for research and clinical training, and forging international partnerships with institutions such as the Ragon Institute and UT Austin. Our centers for early childhood and obesity reflect our commitment to solving the most pressing health challenges of our population.
AMCs are more than institutions; they are moral compasses for medicine. We must protect them, even in the most difficult environments. And we must lead with conviction, staying true to our values and setting a higher standard.
It is true that when I look back on my years of training, I have a special feeling of nostalgia for the mystique that seems to be lost. That spirit may feel distant today, but recognizing the importance of regaining it, is the first step toward a brighter, bolder future in medicine.
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Allergies seem nearly impossible to avoid — unless you're Amish
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Allergies seem nearly impossible to avoid — unless you're Amish

Whether triggered by pollen, pet dander or peanuts, allergies in this day and age seem nearly impossible to avoid. But one group appears virtually immune, a mystery to experts who study allergies. Despite the increasing rate of allergic diseases, both in industrialized and in developing countries, the Amish remain exceptionally - and bafflingly - resistant. Only 7 percent of Amish children had a positive response to one or more common allergens in a skin prick test, compared with more than half of the general U.S. population. Even children from other traditional farming families, who still have lower rates of allergic disease than nonfarm children, are more allergic than the Amish. Subscribe to The Post Most newsletter for the most important and interesting stories from The Washington Post. In fact, one Amish community living in northern Indiana is considered one of the least allergic populations ever measured in the developed world. 'Generally, across the country, about 8 to 10 percent of kids have asthma. In the Amish kids, it's probably 1 to 2 percent,' said Carole Ober, chair of human genetics at the University of Chicago. 'A few of them do have allergies, but at much, much lower rates compared to the general population.' Now, Ober and other researchers are trying to discover what makes Amish and other traditional farming communities unique, in the hopes of developing a protective treatment that could be given to young children. For instance, a probiotic or essential oil that contains substances found in farm dust, such as microbes and the molecules they produce, could stimulate children's immune systems in a way that prevents allergic disease. 'Certain kinds of farming practices, particularly the very traditional ones, have this extraordinary protective effect in the sense that, in these communities, asthma and allergies are virtually unknown,' said Donata Vercelli, a professor of cellular and molecular medicine at the University of Arizona. 'The studies that have been done in these farming populations are critical because they tell us that protection is an attainable goal.' The Amish are members of a Christian group who practice traditional farming - many live on single-family dairy farms - and use horses for fieldwork and transportation. As of 2024, around 395,000 Amish live in the United States, concentrated mostly in Pennsylvania, Ohio and Indiana. Over the past century, the incidence of allergic diseases - including hay fever (allergic rhinitis), asthma, food allergies and eczema - has increased dramatically. Hay fever, or an allergic reaction to tree, grass and weed pollens, emerged as the first recognized allergic disease in the early 1800s, climbing to epidemic levels in Europe and North America by 1900. The 1960s saw a sharp increase in the prevalence of pediatric asthma, a condition in which the airways tighten when breathing in an allergen. From the 1990s onward, there has been an upswing in the developed world in food allergies, including cow's milk, peanut and egg allergies. Urbanization, air pollution, dietary changes and an indoor lifestyle are often cited as possible factors. The 'hygiene hypothesis' - first proposed in a 1989 study by American immunologist David Strachan - suggests that early childhood exposure to microbes protects against allergic diseases by contributing to the development of a healthy immune system. The study found that hay fever and eczema were less common among children born into larger families. Strachan wondered whether unhygienic contact with older siblings served as a protection against allergies. Subsequent findings have given support to the hygiene hypothesis, such as that children who grow up with more household pets are less likely to develop asthma, hay fever or eczema. Perhaps even more beneficial than having older siblings or pets, however, is growing up on a farm. (More than 150 years ago, hay fever was known as an 'aristocratic disease,' almost wholly confined to the upper classes of society. Farmers appeared relatively immune.) This 'farm effect' has been confirmed by studies on agricultural populations around the world, including in the United States, Europe, Asia and South America. But even among farming communities, the most pronounced effect appears to be in the Amish. In a study of 60 schoolchildren by Ober, Vercelli and their colleagues, the prevalence of asthma was four times lower in the Amish as compared with the Hutterites, another U.S. farming community with a similar genetic ancestry and lifestyle. The prevalence of allergic sensitization - the development of antibodies to allergens and the first step to developing an allergy - was six times higher in the Hutterites. The researchers first ruled out a genetic cause; in fact, an analysis showed that the Amish and Hutterite children were remarkably similar in their ancestral roots. Instead, the main difference between these two populations seemed to be the amount of exposure as young children to farm animals or barns. 'The Hutterite kids and pregnant moms don't go into the animal barns. Kids aren't really exposed to the animal barns until they're like 12 or so, when they start learning how to do the work on the farm,' Ober said. 'The Amish kids are in and out of the cow barns all day long from an early age.' When analyzing samples of Amish and Hutterite house dust, they found a microbial load almost seven times higher in Amish homes. Later experiments showed that the airways of mice that inhaled Amish dust had dramatically reduced asthmalike symptoms when exposed to allergens. Mice that inhaled Hutterite dust did not receive the same benefit. Now, Ober and Vercelli are beginning to identify the protective agents in Amish dust that prevent allergic asthma. In 2023, their analysis of farm dust found proteins that act like delivery trucks, loaded with molecules produced by microbes and plants. When these transport proteins deliver their cargo to the mucus that lines the respiratory tract, it creates a protective environment that regulates airway responses and prevents inflammation. 'We don't really talk about the hygiene hypothesis as much anymore because we now understand that it's not really about how hygienic you're living,' said Kirsi Järvinen-Seppo, director of the Center for Food Allergy at the University of Rochester Medical Center. 'It's more like a microbial hypothesis, since beneficial bacteria that colonize the gut and other mucosal surfaces play a significant role.' During the first year or two of life, a baby's immune system is rapidly developing and highly malleable by environmental stimuli, such as bacteria. Some experts believe that exposing young children to certain types of beneficial bacteria can engage and shape the growing immune system in a way that reduces the risk of allergic diseases later in life. Farm dust contains a hodgepodge of bacteria shed from livestock and animal feed that isn't harmful enough to cause illness, but does effectively train the immune system to become less responsive to allergens later in life. In 2021, Järvinen-Seppo and her colleagues compared the gut microbiomes of 65 Old Order Mennonite infants from a rural community in New York with 39 urban/suburban infants from nearby Rochester. Like the Amish, the Old Order Mennonites follow a traditional agrarian lifestyle. Almost three-fourths of Mennonite infants in the study were colonized with B. infantis, a bacterium associated with lower rates of allergic diseases, in contrast to 21 percent of Rochester infants. 'The colonization rate is very low in the United States and other Western countries, compared to very high rates in Mennonite communities, similar to some developing countries,' Järvinen-Seppo said. 'This mirrors the rates of autoimmune and allergic diseases.' These clues about the origin of the farm effect represent a step toward the prevention of allergic diseases, Järvinen-Seppo says. 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Allergies seem nearly impossible to avoid — unless you're Amish
Allergies seem nearly impossible to avoid — unless you're Amish

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time2 days ago

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Allergies seem nearly impossible to avoid — unless you're Amish

Advertisement 'Generally, across the country, about 8 to 10 percent of kids have asthma. In the Amish kids, it's probably 1 to 2 percent,' said Carole Ober, chair of human genetics at the University of Chicago. 'A few of them do have allergies, but at much, much lower rates compared to the general population.' Get Starting Point A guide through the most important stories of the morning, delivered Monday through Friday. Enter Email Sign Up Now, Ober and other researchers are trying to discover what makes Amish and other traditional farming communities unique, in the hopes of developing a protective treatment that could be given to young children. For instance, a probiotic or essential oil that contains substances found in farm dust, such as microbes and the molecules they produce, could stimulate children's immune systems in a way that prevents allergic disease. 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Hay fever, or an allergic reaction to tree, grass and weed pollens, emerged as the first recognized allergic disease in the early 1800s, climbing to epidemic levels in Europe and North America by 1900. The 1960s saw a sharp increase in the prevalence of pediatric asthma, a condition in which the airways tighten when breathing in an allergen. From the 1990s onward, there has been an upswing in the developed world in food allergies, including cow's milk, peanut and egg allergies. Urbanization, air pollution, dietary changes and an indoor lifestyle are often cited as possible factors. Preparing a horse team for work on a farm in Pulaski, Pennsylvania. Keith Srakocic/Associated Press The 'hygiene hypothesis' - first proposed in a 1989 study by American immunologist David Strachan - suggests that early childhood exposure to microbes protects against allergic diseases by contributing to the development of a healthy immune system. The study found that hay fever and eczema were less common among children born into larger families. Strachan wondered whether unhygienic contact with older siblings served as a protection against allergies. Advertisement Subsequent findings have given support to the hygiene hypothesis, such as that children who grow up with more household pets are less likely to develop asthma, hay fever or eczema. Perhaps even more beneficial than having older siblings or pets, however, is growing up on a farm. (More than 150 years ago, hay fever was known as an 'aristocratic disease,' almost wholly confined to the upper classes of society. Farmers appeared relatively immune.) This 'farm effect' has been confirmed by studies on agricultural populations around the world, including in the United States, Europe, Asia and South America. But even among farming communities, the most pronounced effect appears to be in the Amish. In a study of 60 schoolchildren by Ober, Vercelli and their colleagues, the prevalence of asthma was four times lower in the Amish as compared with the Hutterites, another U.S. farming community with a similar genetic ancestry and lifestyle. The prevalence of allergic sensitization - the development of antibodies to allergens and the first step to developing an allergy - was six times higher in the Hutterites. The researchers first ruled out a genetic cause; in fact, an analysis showed that the Amish and Hutterite children were remarkably similar in their ancestral roots. Instead, the main difference between these two populations seemed to be the amount of exposure as young children to farm animals or barns. 'The Hutterite kids and pregnant moms don't go into the animal barns. Kids aren't really exposed to the animal barns until they're like 12 or so, when they start learning how to do the work on the farm,' Ober said. 'The Amish kids are in and out of the cow barns all day long from an early age.' Advertisement When analyzing samples of Amish and Hutterite house dust, they found a microbial load almost seven times higher in Amish homes. Later experiments showed that the airways of mice that inhaled Amish dust had dramatically reduced asthmalike symptoms when exposed to allergens. Mice that inhaled Hutterite dust did not receive the same benefit. On Route 11 near Patten, Maine, in 2017. The Boston Globe Now, Ober and Vercelli are beginning to identify the protective agents in Amish dust that prevent allergic asthma. In 2023, their analysis of farm dust found proteins that act like delivery trucks, loaded with molecules produced by microbes and plants. When these transport proteins deliver their cargo to the mucus that lines the respiratory tract, it creates a protective environment that regulates airway responses and prevents inflammation. 'We don't really talk about the hygiene hypothesis as much anymore because we now understand that it's not really about how hygienic you're living,' said Kirsi Järvinen-Seppo, director of the Center for Food Allergy at the University of Rochester Medical Center. 'It's more like a microbial hypothesis, since beneficial bacteria that colonize the gut and other mucosal surfaces play a significant role.' During the first year or two of life, a baby's immune system is rapidly developing and highly malleable by environmental stimuli, such as bacteria. Some experts believe that exposing young children to certain types of beneficial bacteria can engage and shape the growing immune system in a way that reduces the risk of allergic diseases later in life. Farm dust contains a hodgepodge of bacteria shed from livestock and animal feed that isn't harmful enough to cause illness, but does effectively train the immune system to become less responsive to allergens later in life. Advertisement In 2021, Järvinen-Seppo and her colleagues compared the gut microbiomes of 65 Old Order Mennonite infants from a rural community in New York with 39 urban/suburban infants from nearby Rochester. Like the Amish, the Old Order Mennonites follow a traditional agrarian lifestyle. Almost three-fourths of Mennonite infants in the study were colonized with B. infantis, a bacterium associated with lower rates of allergic diseases, in contrast to 21 percent of Rochester infants. 'The colonization rate is very low in the United States and other Western countries, compared to very high rates in Mennonite communities, similar to some developing countries,' Järvinen-Seppo said. 'This mirrors the rates of autoimmune and allergic diseases.' These clues about the origin of the farm effect represent a step toward the prevention of allergic diseases, Järvinen-Seppo says. Whatever form the treatment takes, the impact on prevention of allergic diseases, which affect millions of people worldwide and reduce quality of life, could be enormous, experts say. 'I don't know that we can give every family a cow. … But we are learning from these time-honored and very stable environments what type of substances and exposures are needed,' Vercelli said. 'Once we know that, I don't think there will be any impediment to creating protective strategies along these lines.'

Allergies seem nearly impossible to avoid — unless you're Amish
Allergies seem nearly impossible to avoid — unless you're Amish

Washington Post

time2 days ago

  • Washington Post

Allergies seem nearly impossible to avoid — unless you're Amish

Whether triggered by pollen, pet dander or peanuts, allergies in this day and age seem nearly impossible to avoid. But one group appears virtually immune, a mystery to experts who study allergies. Despite the increasing rate of allergic diseases, both in industrialized and in developing countries, the Amish remain exceptionally — and bafflingly — resistant. Only 7 percent of Amish children had a positive response to one or more common allergens in a skin prick test, compared with more than half of the general U.S. population. Even children from other traditional farming families, who still have lower rates of allergic disease than nonfarm children, are more allergic than the Amish. In fact, one Amish community living in northern Indiana is considered one of the least allergic populations ever measured in the developed world. 'Generally, across the country, about 8 to 10 percent of kids have asthma. In the Amish kids, it's probably 1 to 2 percent,' said Carole Ober, chair of human genetics at the University of Chicago. 'A few of them do have allergies, but at much, much lower rates compared to the general population.' Now, Ober and other researchers are trying to discover what makes Amish and other traditional farming communities unique, in the hopes of developing a protective treatment that could be given to young children. For instance, a probiotic or essential oil that contains substances found in farm dust, such as microbes and the molecules they produce, could stimulate children's immune systems in a way that prevents allergic disease. 'Certain kinds of farming practices, particularly the very traditional ones, have this extraordinary protective effect in the sense that, in these communities, asthma and allergies are virtually unknown,' said Donata Vercelli, a professor of cellular and molecular medicine at the University of Arizona. 'The studies that have been done in these farming populations are critical because they tell us that protection is an attainable goal.' The Amish are members of a Christian group who practice traditional farming — many live on single-family dairy farms — and use horses for fieldwork and transportation. As of 2024, around 395,000 Amish live in the United States, concentrated mostly in Pennsylvania, Ohio and Indiana. Over the past century, the incidence of allergic diseases — including hay fever (allergic rhinitis), asthma, food allergies and eczema — has increased dramatically. Hay fever, or an allergic reaction to tree, grass and weed pollens, emerged as the first recognized allergic disease in the early 1800s, climbing to epidemic levels in Europe and North America by 1900. The 1960s saw a sharp increase in the prevalence of pediatric asthma, a condition in which the airways tighten when breathing in an allergen. From the 1990s onward, there has been an upswing in the developed world in food allergies, including cow's milk, peanut and egg allergies. Urbanization, air pollution, dietary changes and an indoor lifestyle are often cited as possible factors. The 'hygiene hypothesis' — first proposed in a 1989 study by American immunologist David Strachan — suggests that early childhood exposure to microbes protects against allergic diseases by contributing to the development of a healthy immune system. The study found that hay fever and eczema were less common among children born into larger families. Strachan wondered whether unhygienic contact with older siblings served as a protection against allergies. Subsequent findings have given support to the hygiene hypothesis, such as that children who grow up with more household pets are less likely to develop asthma, hay fever or eczema. Perhaps even more beneficial than having older siblings or pets, however, is growing up on a farm. (More than 150 years ago, hay fever was known as an 'aristocratic disease,' almost wholly confined to the upper classes of society. Farmers appeared relatively immune.) This 'farm effect' has been confirmed by studies on agricultural populations around the world, including in the United States, Europe, Asia and South America. But even among farming communities, the most pronounced effect appears to be in the Amish. In a study of 60 schoolchildren by Ober, Vercelli and their colleagues, the prevalence of asthma was four times lower in the Amish as compared with the Hutterites, another U.S. farming community with a similar genetic ancestry and lifestyle. The prevalence of allergic sensitization — the development of antibodies to allergens and the first step to developing an allergy — was six times higher in the Hutterites. The researchers first ruled out a genetic cause; in fact, an analysis showed that the Amish and Hutterite children were remarkably similar in their ancestral roots. Instead, the main difference between these two populations seemed to be the amount of exposure as young children to farm animals or barns. 'The Hutterite kids and pregnant moms don't go into the animal barns. Kids aren't really exposed to the animal barns until they're like 12 or so, when they start learning how to do the work on the farm,' Ober said. 'The Amish kids are in and out of the cow barns all day long from an early age.' When analyzing samples of Amish and Hutterite house dust, they found a microbial load almost seven times higher in Amish homes. Later experiments showed that the airways of mice that inhaled Amish dust had dramatically reduced asthmalike symptoms when exposed to allergens. Mice that inhaled Hutterite dust did not receive the same benefit. Now, Ober and Vercelli are beginning to identify the protective agents in Amish dust that prevent allergic asthma. In 2023, their analysis of farm dust found proteins that act like delivery trucks, loaded with molecules produced by microbes and plants. When these transport proteins deliver their cargo to the mucus that lines the respiratory tract, it creates a protective environment that regulates airway responses and prevents inflammation. 'We don't really talk about the hygiene hypothesis as much anymore because we now understand that it's not really about how hygienic you're living,' said Kirsi Järvinen-Seppo, director of the Center for Food Allergy at the University of Rochester Medical Center. 'It's more like a microbial hypothesis, since beneficial bacteria that colonize the gut and other mucosal surfaces play a significant role.' During the first year or two of life, a baby's immune system is rapidly developing and highly malleable by environmental stimuli, such as bacteria. Some experts believe that exposing young children to certain types of beneficial bacteria can engage and shape the growing immune system in a way that reduces the risk of allergic diseases later in life. Farm dust contains a hodgepodge of bacteria shed from livestock and animal feed that isn't harmful enough to cause illness, but does effectively train the immune system to become less responsive to allergens later in life. In 2021, Järvinen-Seppo and her colleagues compared the gut microbiomes of 65 Old Order Mennonite infants from a rural community in New York with 39 urban/suburban infants from nearby Rochester. Like the Amish, the Old Order Mennonites follow a traditional agrarian lifestyle. Almost three-fourths of Mennonite infants in the study were colonized with B. infantis, a bacterium associated with lower rates of allergic diseases, in contrast to 21 percent of Rochester infants. 'The colonization rate is very low in the United States and other Western countries, compared to very high rates in Mennonite communities, similar to some developing countries,' Järvinen-Seppo said. 'This mirrors the rates of autoimmune and allergic diseases.' These clues about the origin of the farm effect represent a step toward the prevention of allergic diseases, Järvinen-Seppo says. Whatever form the treatment takes, the impact on prevention of allergic diseases, which affect millions of people worldwide and reduce quality of life, could be enormous, experts say. 'I don't know that we can give every family a cow. … But we are learning from these time-honored and very stable environments what type of substances and exposures are needed,' Vercelli said. 'Once we know that, I don't think there will be any impediment to creating protective strategies along these lines.'

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