PRESS-NEWS.org - Press Release Distribution
PRESS RELEASES DISTRIBUTION

CHOP-led study identifies two different regulatory T cell populations

Study findings could lead to paradigm shift in how autoimmune diseases are treated, allowing for suppression of autoantibodies while maintaining immune protection

2023-04-07
(Press-News.org)

Philadelphia, April 7, 2022—A regulatory class of human T cells descends from two different origins, one that relates to autoimmunity and one that relates to protective immunity, according to a new study led by Children’s Hospital of Philadelphia (CHOP). The findings, published today in Science Immunology, could pave the way for new treatments for autoimmune diseases that target the immune system selectively.

“When it comes to autoimmunity, the prevailing wisdom has been that the only way to stop inflammation is to suppress the immune system broadly, making patients more susceptible to infection,” said senior author Neil D. Romberg, MD, an attending physician in the Division of Allergy and Immunology at Children's Hospital of Philadelphia. “However, that is only true if all T cells come from the same place. What this study shows is that there are two different T cell lineages, which means you might be able to have your cake and eat it too – suppressing inflammation due to autoimmunity while allowing T cells that fight infection to thrive.”

Germinal centers (GCs) are spherical collections of cells inside tonsils, lymph nodes, and the spleen that orchestrate interactions between T follicular helper (Tfh) cells and B cells. The action within these GCs is locally governed by FOXP3+ T follicular regulatory (Tfr) cells. Although the proper function of Tfr cells is likely important to immunologic health – and their dysfunction a potential contributor to various disease states – few studies have assessed the biologic roles of human Tfr cells and none have addressed where they come from or how they develop within tissues.  

To solve this problem, the researchers, led by Carole Le Coz, PhD, a former postdoctoral researcher in the Romberg Lab, used a combination of computational, in vitro, and in vivo techniques to describe the origins, functions, and positions of Tfr cells within GCs. Since GCs are located in secondary lymphoid tissues like lymph nodes, spleens, and tonsils, the researchers analyzed tonsils that had been removed from healthy donor patients. 

Using an interlocking suite of single cell technologies, the researchers were able to show that there is one subpopulation of Tfr cells that is induced by Tfh cells, which they called iTfrs, and another subpopulation that were “naturally” derived from Tregs, a subpopulation of T cells that are responsible for moderating the immune system, which they called nTfrs. In doing so, the demonstrated that there are two developmental trajectories: Treg-to-nTfr and Tfh-to-iTfr.

Once the researchers identified these two subpopulations of Tfr cells, they analyzed whether these two regulatory T cells express the surface protein CD38 differently. They found that iTfr cells express CD38, whereas nTfr cells do not. They were also able to catalogue the precise location of these different subpopulations within the GCs, in addition to demonstrating their developmental path and ability so support B cell function.

“This study raises the question of whether we could selectively deplete iTfr cells through anti-CD38 treatments, while leaving nTfrs intact – using a silver bullet rather than a bomb to target specific T cells,” Dr. Romberg said. “A similar approach could also potentially be used in a therapeutic context to boost immunity in patients with weakened immune systems.”

This work was supported by grants from the National Institutes of Health, National Institute of Allergy and Infectious Diseases (AI146026), National Institute of Allergy and Infectious Diseases (AI155577, AI115712, AI117950, AI108545, CA210944, AI114852), National Heart, Lung, and Blood Institute (R38 HL143613, T32 HL 7775-28), and the National Cancer Institute (T32 CA009140). Additional funding was provided by the Parker Institute for Cancer Immunotherapy, the Parker Bridge Fellow Award, the Gray Foundation, the Chan Zuckerberg Initiative Pediatric Networks for the Human Cell Atlas, the Gail B. Slap Department of Pediatrics Fellowship Award, and the Sayer family.

Le Coz et al. “Human T follicular helper clones seed the germinal center-resident regulatory pool,” Science Immunology, April 7, 2023, DOI: 10.1126/sciimmunol.ade8162

#

About Children’s Hospital of Philadelphia: A non-profit, charitable organization, Children’s Hospital of Philadelphia was founded in 1855 as the nation’s first pediatric hospital. Through its long-standing commitment to providing exceptional patient care, training new generations of pediatric healthcare professionals, and pioneering major research initiatives, the 595-bed hospital has fostered many discoveries that have benefited children worldwide. Its pediatric research program is among the largest in the country. The institution has a well-established history of providing advanced pediatric care close to home through its CHOP Care Network, which includes more than 50 primary care practices, specialty care and surgical centers, urgent care centers, and community hospital alliances throughout Pennsylvania and New Jersey, as well as an inpatient hospital with a dedicated pediatric emergency department in King of Prussia. In addition, its unique family-centered care and public service programs have brought Children’s Hospital of Philadelphia recognition as a leading advocate for children and adolescents. For more information, visit https://www.chop.edu. 

 

END



ELSE PRESS RELEASES FROM THIS DATE:

Here’s how a worm’s embryonic cells changed its development potential

Here’s how a worm’s embryonic cells changed its development potential
2023-04-07
Researchers have spotted how specific proteins within the chromosomes of roundworms enable their offspring to produce specialized cells generations later, a startling finding that upends classical thinking that hereditary information for cell differentiation is mostly ingrained within DNA and other genetic factors. The Johns Hopkins University team reports for the first time the mechanisms by which a protein known as histone H3 controls when and how worm embryos produce both highly specific cells and pluripotent cells, cells that can turn certain genes on ...

New genetic finding provides clue for personalizing depression treatment

New genetic finding provides clue for personalizing depression treatment
2023-04-07
A team of scientists at the Medical University of South Carolina (MUSC) has identified a stress-regulated gene that plays a role in the link between long-term stress and a common type of depressive behavior in mice. Specifically, this gene was needed for long-term stress to produce a loss of interest in activities that were once rewarding or pleasurable – often called anhedonia. However, the gene did not play a role in other common depressive-like symptoms, such as social avoidance and increased anxiety-like behavior. The team reported its findings recently in eLife. The study was led by neuroscientists Makoto Taniguchi, Ph.D., and Christopher Cowan, Ph.D., and also ...

Lonely people’s divergent thought processes may contribute to feeling “alone in a crowded room”

2023-04-07
Common wisdom suggests that a core difference between solitude and loneliness is choice. Whereas a person who appreciates solitude might choose to enjoy a quiet night in or a solo trip abroad, a lonely person may feel disconnected from other people even in a crowded room. New research published in Psychological Science supports this notion, suggesting that lonely people may think differently regardless of the size of their social networks.  “We found that lonely individuals are exceptionally dissimilar to their peers in the way that they process the world around them … ...

New research: Policies that aim to increase the supply of teachers may also lower teacher pay, thereby perpetuating the cycle of teacher shortages

2023-04-07
Context and Background Teaching has historically been a licensed profession in which a limited number of schools of education were typically housed in universities and offered a traditional path to certification (Kleiner, 2000). However, 30 years of documented teacher shortages in the United States resulted in federal and state policies that reduce barriers to teacher licensure (Cross, 2017). The goal of these policies is to create a larger pool of new teachers in less time than it typically takes schools of education to produce ...

UC Riverside-led study sheds light on how IBD can develop

UC Riverside-led study sheds light on how IBD can develop
2023-04-07
RIVERSIDE, Calif. -- Inflammatory bowel disease, or IBD, describes Crohn’s disease and ulcerative colitis, two chronic diseases that cause inflammation in the intestines. IBD, which affects about 3 million adults in the United States, is an autoimmune disorder — a condition in which the body’s immune system attacks healthy tissues. Its symptoms include diarrhea, rectal bleeding, fatigue, weight loss, and stomach cramps. The intestinal epithelium, made up of a layer of cells that lines the intestine, plays an important role in IBD because it can be easily disrupted during gut inflammation. A specialized ...

Novel approach prevents liver damage in animal models of Alagille syndrome

2023-04-07
Alagille syndrome, a genetic disease estimated to affect 1 in 30,000 individuals, is caused by mutations in the gene JAG1 in most cases. The mutations affect multiple organs including the liver where it often results in cholestasis, a condition in which the flow of bile from the liver stops or slows, leading to bile buildup that in time causes liver damage. Current treatments focus on delaying disease progression; the only cure for liver disease in Alagille syndrome is liver transplantation. Researchers at Baylor College of Medicine and collaborating institutions have discovered a strategy that prevents liver damage in animal ...

Study reveals epigenetic vulnerability of acute myeloid leukemia

2023-04-07
Acute myeloid leukemia (AML) is an aggressive blood cancer that causes uncontrolled accumulation of white blood cells. Because of the poor outcomes of this disease, researchers across the globe have been on the hunt for new ways to treat AML, while preserving normal blood development. Researchers at Baylor College of Medicine and collaborating institutions report in the journal Cancer Research a new vulnerability of this cancer that can be targeted with a class of experimental drugs. These drugs target a protein complex called SWI/SNF, which many cells use to make DNA more open and accessible. ...

nTIDE March 2023 jobs report: people with disabilities maintain record labor force participation rate, outperforming people without disabilities

nTIDE March 2023 jobs report: people with disabilities maintain record labor force participation rate, outperforming people without disabilities
2023-04-07
East Hanover, NJ – April, 7 2023 – People with disabilities maintained their record labor force participation rate in March, continuing to outperform people without disabilities, according to today’s National Trends in Disability Employment – semi-monthly update (nTIDE), issued by Kessler Foundation and the University of New Hampshire’s Institute on Disability (UNH-IOD). Year-to-year, people with and without disabilities showed gains in employment, reflecting the economy’s ongoing recovery from the effects of the COVID-19 ...

Researchers find an antibody that targets omicron and other SARS-CoV-2 variants

2023-04-07
A team led by researchers at Weill Cornell Medicine, the University of Wisconsin-Madison; Scripps Research and the University of Chicago has identified an antibody that appears to block infection by all dominant variants of the virus that causes COVID-19, including Omicron, the most recent. Their discovery could lead to more potent vaccines and new antibody-based treatments.  In a study published March 6 in the Journal of Clinical Investigation, senior author Dr. Patrick Wilson, the Anne E. Dyson Professor of Pediatric Research and a member of the Gale and Ira ...

Sustained-release chemotherapy gives new option for frail patients with invasive bladder cancer

2023-04-07
April 7, 2023 – For patients with advanced bladder cancer who are medically unfit for standard treatment, a new intravesical (inside the bladder) chemotherapy delivery system called TAR-200 is safe and shows initial evidence of effectiveness, reports a study in the May issue of The Journal of Urology®, an Official Journal of the American Urological Association (AUA). The journal is published in the Lippincott portfolio by Wolters Kluwer. TAR-200 is a drug-device combination product that is inserted into the bladder and provides continuous, low-dose, local delivery of chemotherapy. "Our preliminary clinical trial found that TAR-200 was generally safe, well tolerated, and had ...

LAST 30 PRESS RELEASES:

Spinning fusion fuel for efficiency

The American Pediatric Society names Dr. Beth Tarini as the recipient of the 2025 Norman J. Siegel New Member Outstanding Science Award

New Clinical Study Confirms the Anti-Obesity Effects of Kimchi

Highly selective pathway for propyne semihydrogenation achieved via CoSb intermetallic catalyst

GERD linked to cardiovascular risk factors: New insights from Mendelian randomization study

Content moderators are influenced by online misinformation

Adulting, nerdiness and the importance of single-panel comics

Study helps explain how children learned for 99% of human history

The impact of misinformation on Spanish-language social media platforms

Populations overheat as major cities fail canopy goals: new research

By exerting “crowd control” over mouse cells, scientists make progress towards engineering tissues

First American Gastroenterological Association living guideline for moderate-to-severe ulcerative colitis

Labeling cell particles with barcodes

Groundwater pumping drives rapid sinking in California

Neuroscientists discover how the brain slows anxious breathing

New ion speed record holds potential for faster battery charging, biosensing

Haut.AI explores the potential of AI-enhanced fluorescence photography for non-invasive skin diagnostics

7-year study reveals plastic fragments from all over the globe are rising rapidly in the North Pacific Garbage Patch 

New theory reveals the shape of a single photon 

We could soon use AI to detect brain tumors

TAMEST recognizes Lyda Hill and Lyda Hill Philanthropies with Kay Bailey Hutchison Distinguished Service Award

Establishment of an immortalized red river hog blood-derived macrophage cell line

Neural networks: You might not need to buy every ticket to win the lottery

Healthy New Town: Revitalizing neighborhoods in the wake of aging populations

High exposure to everyday chemicals linked to asthma risk in children

How can brands address growing consumer scepticism?

New paradigm of quantum information technology revealed through light-matter interaction!

MSU researchers find trees acclimate to changing temperatures

World's first visual grading system developed to combat microplastic fashion pollution

Teenage truancy rates rise in English-speaking countries

[Press-News.org] CHOP-led study identifies two different regulatory T cell populations
Study findings could lead to paradigm shift in how autoimmune diseases are treated, allowing for suppression of autoantibodies while maintaining immune protection