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Potential biomarker found for lung disease in scleroderma patients

Researchers discovered a protein called CTRP9 associated with pulmonary function in scleroderma patients with interstitial lung disease. Patients with higher CTRP9 levels developed more severe lung disease, while low levels were linked to preserved function. The study suggests CTRP9 could help predict treatment needs for these patients.

SourceMichigan Medicine - University of Michigan·TypeData/statistical analysis·DateAug 3, 2021

Online mental health therapy significantly aids the isolated, immunosuppressed in pandemic

Researchers found that online mental health intervention improved anxiety and depression in people with scleroderma, a disease causing skin and connective tissue tightening. The four-week program offered group mental health intervention from trained peer support leaders, resulting in significant improvements six weeks later.

SourceMichigan Medicine - University of Michigan·JournalThe Lancet Rheumatology·DateJun 16, 2021

New regulator of immune responses discovered

Researchers at the University of Leeds have identified a new internal regulator that helps control the body's response to fight infection. The discovery has the potential to help find new drugs to tackle autoimmune diseases, such as lupus and scleroderma, by suppressing the immune system.

SourceUniversity of Leeds·JournalNature·DateMay 29, 2019

Inhibiting cancer-causing protein could prevent scleroderma fibrosis

Researchers discovered that inhibiting the cancer-causing protein EZH2 can correct increased fibrosis and abnormal blood vessel function in scleroderma patients. This breakthrough suggests that existing EZH2 inhibitors could be repurposed to treat scleroderma, offering new hope for this currently incurable disease.

SourceMichigan Medicine - University of Michigan·JournalProceedings of the National Academy of Sciences·DateFeb 26, 2019

Scleroderma study: Hope for a longer life for patients with rare autoimmune disorder

A new clinical trial has found that a stem cell transplant treatment can significantly improve the survival and quality of life for patients with severe scleroderma. The experimental procedure uses chemotherapy and radiation to destroy the body's malfunctioning immune system, then replaces it via a stem-cell transplant.

SourceUniversity of Virginia Health System·JournalNew England Journal of Medicine·DateJan 12, 2018

New HSS study finds hope in understanding and better treating scleroderma

A new study by Hospital for Special Surgery researchers suggests that plasmacytoid dendritic cells play a key role in causing fibrosis and inflammation in scleroderma patients. The study's findings, published in Science Translational Medicine, also identify a potential target for treatment: the TLR8 receptor on the surface of these cells.

SourceHospital for Special Surgery·JournalScience Translational Medicine·DateJan 10, 2018

Stem cell transplant for severe scleroderma improves survival, quality of life

A new clinical trial has shown that a stem cell transplant regimen can improve survival and quality of life for people with severe scleroderma. The study found myeloablative autologous hematopoietic stem cell transplant to be superior to treatment with the immune-suppressing drug cyclophosphamide, offering significantly greater long-te...

SourceNIH/National Institute of Allergy and Infectious Diseases·JournalNew England Journal of Medicine·DateJan 3, 2018

New clues on tissue scarring in scleroderma

A Northwestern University discovery identifies a specific protein, fibronectin (FnEDA), as a key player in promoting fibrosis in people with scleroderma. The study found that blocking this protein's activity can prevent skin fibrosis in mice, offering new avenues for treatment.

SourceNorthwestern University·JournalScience Translational Medicine·DateApr 17, 2014

Flipping the switch on scleroderma

Researchers at Michigan State University have identified the core signaling pathway that activates scleroderma and found chemical compounds that can turn it off. This discovery offers a new approach to treating the disease, which currently lacks effective treatments.

SourceMichigan State University·JournalJournal of Pharmacology and Experimental Therapeutics·DateApr 4, 2014

Researchers implicate well-known protein in fibrosis

Researchers at Northwestern University have implicated toll-like receptor 4 (TLR4) in the development of tissue fibrosis, a hallmark of scleroderma. The study found that mutations in the TLR4 gene made mice resistant to experimental scleroderma and that patients with scleroderma had abnormal TLR4 levels in affected tissues.

SourceNorthwestern University·JournalAmerican Journal Of Pathology·DateNov 20, 2012

New genetic path for scleroderma

A genetic pathway previously known for its role in embryonic development and cancer has been identified as a target for systemic sclerosis, or scleroderma, therapy. The finding reveals that the Wnt signaling pathway is abnormally activated in scleroderma patients, leading to fibrosis and tissue damage.

SourceNorthwestern University·JournalArthritis & Rheumatism·DateMar 19, 2012

Causes found for stiff skin conditions

A study by Johns Hopkins Medicine reveals that a rare inherited disorder called stiff skin syndrome shares genetic similarities with the debilitating condition scleroderma, affecting about one in 5,000 people. The findings suggest a potential treatment strategy involving the protein fibrillin-1 and its role in regulating TGFbeta activity.

SourceJohns Hopkins Medicine·JournalScience Translational Medicine·DateMar 19, 2010

Tips from the American Journal of Pathology

Two studies identified a novel biomarker for metastatic bladder cancer and discovered stem cell factor's role in airway remodeling in asthma. Additionally, researchers found that Staphlococcus aureus beta-toxin causes lung injury in pneumonia, while rosiglitazone may reduce the severity of scleroderma.

SourceAmerican Journal of Pathology·JournalAmerican Journal Of Pathology·DateJan 22, 2009