Researchers at the University of Illinois at Chicago have identified a molecular switch that causes immune cells called macrophages to clean up cellular debris caused by infections instead of contributing to inflammation and tissue injury.
Researchers at the University of Illinois at Chicago have identified a molecular switch that causes immune cells called macrophages to clean up cellular debris caused by infections instead of contributing to inflammation and tissue injury. Their findings are reported in the journal Proceedings of the National Academy of Sciences.
Macrophages are a type of immune cell found throughout the body. These cells can produce inflammation, which is good in moderation because inflammatory signals bring other immune cells to a specific location to clear an infection. However, when inflammation gets out of control, as it can in cases of inflammatory diseases, it can cause excess cellular and tissue damage, contributing to a vicious cycle that is very difficult to reverse. But macrophages also play a significant role in reducing inflammation when they engulf cellular debris or foreign microbes that contribute to inflammation. The mechanism behind macrophages' ability to switch back and forth between these two diametrically opposed roles has long-puzzled scientists.
Researchers led by Saroj Nepal, research assistant professor in the department of pharmacology at the UIC College of Medicine, have found that a molecule called Gas6 is required to induce macrophages to perform their anti-inflammatory role by engulfing and digesting cellular debris that can contribute to inflammation. The molecule could serve as a potential drug target for drug makers interested in coaxing the cells toward their anti-inflammatory state to help treat people.
In a mouse model of acute lung injury, Nepal and colleagues found that lung macrophages expressed both inflammatory and anti-inflammatory proteins. One of the anti-inflammatory proteins was Gas6. In a mouse model of acute lung injury where the animals' macrophages were artificially depleted of Gas6, clearance of inflammatory molecules and proteins in the lungs was severely impaired, and the inflammation could not be resolved. When they artificially boosted levels of Gas6 in the mouse macrophages, inflammation was resolved much faster than in mice with normal macrophages.
"Harnessing the anti-inflammatory function of macrophages using the Gas6 switch holds great potential for treating diseases ranging from heart disease to cancer to rheumatoid arthritis, where inflammation is a key underlying feature," Nepal said.
Chinnaswamy Tiruppathi, Yoshikazu Tsukasaki, Joseph Farahany, Dr. Jalees Rehman and Asrar Malik of UIC and Darwin Prockop of Texas A & M University are co-authors on the paper.
Source: University of Illinois at Chicago
APIC Salutes 2025 Trailblazers in Infection Prevention and Control
June 18th 2025From a lifelong mentor to a rising star, the Association for Professionals in Infection Control and Epidemiology (APIC) honored leaders across the career spectrum at its 2025 Annual Conference in Phoenix, recognizing individuals who enhance patient safety through research, leadership, and daily practice.
Building Infection Prevention Capacity in the Middle East: A 7-Year Certification Success Story
June 17th 2025Despite rapid development, the Middle East faces a critical shortage of certified infection preventionists. A 7-year regional initiative has significantly boosted infection control capacity, increasing the number of certified professionals and elevating patient safety standards across health care settings.
Streamlined IFU Access Boosts Infection Control and Staff Efficiency
June 17th 2025A hospital-wide quality improvement project has transformed how staff access critical manufacturer instructions for use (IFUs), improving infection prevention compliance and saving time through a standardized, user-friendly digital system supported by unit-based training and interdepartmental collaboration.
Swift Isolation Protocol Shields Chicago Children’s Hospital During 2024 Measles Surge
June 17th 2025When Chicago logged its first measles cases linked to crowded migrant shelters last spring, one pediatric hospital moved in hours—not days—to prevent the virus from crossing its threshold. Their playbook offers a ready template for the next communicable-disease crisis.
Back to Basics: Hospital Restores Catheter-Associated UTI Rates to Prepandemic Baseline
June 16th 2025A 758-bed quaternary medical center slashed catheter-associated urinary tract infections (CAUTIs) by 45% over 2 years, proving that disciplined adherence to fundamental prevention steps, not expensive add-ons, can reverse the pandemic-era spike in device-related harm.