Researchers at McMaster University have discovered an unexpected role for a natural hormone already known to reduce appetite and promote weight loss. The hormone appears to protect the liver from inflammation through a previously unknown signaling pathway, a finding that could point toward new approaches for treating advanced fatty liver disease.
The study, published in cellular metabolism on August 10, 2026, found that GDF15 can reduce liver inflammation and slow the development of liver scarring even when weight loss does not occur. The result challenges the long-held view that the hormone’s benefits are primarily related to its effects on appetite and body weight.
A new target for advanced fatty liver disease
Millions of people around the world are affected by metabolic dysfunction-associated steatohepatitis (MASH), an advanced form of fatty liver disease that can eventually lead to cirrhosis, liver cancer, and liver failure. New weight loss medications have helped improve outcomes for many patients, but inflammation in the liver can remain even after substantial weight loss.
By identifying a biological pathway that directly regulates this inflammation, the new findings suggest that future therapies could potentially target liver inflammation alongside existing treatments focused on liver weight and fat.
“Our findings show that GDF15 does much more than regulate appetite and body weight,” says Gregory Steinberg, professor in the Department of Medicine at McMaster University, co-director of the Metabolism, Obesity and Diabetes Research (MODR) Center and senior author of the study. “We found that GDF15 activates a natural signaling pathway from the brain to the liver that helps suppress liver inflammation and reduce fibrosis. This changes the way we think about the hormone and suggests it may be part of the body’s own defense system against chronic liver injury.”
How GDF15 sends a protective signal to the liver
To explore how GDF15 affects advanced liver disease, the team used mouse models designed to closely replicate human MASH. The researchers combined genetic, pharmacological, genomic and spatial transcriptomics techniques to examine what happens when the hormone is activated.
They found that GDF15 initiates signaling from the brain through the nervous system, ultimately triggering the release of glucocorticoids. These steroid hormones are important for metabolism, immune activity, and the body’s response to stress.
Glucocorticoids then help suppress inflammation in the liver. Importantly, the researchers observed these protective effects regardless of changes in food consumption, body weight, or liver fat. GDF15 also appeared to slow the progression of liver fibrosis, the buildup of scar tissue that occurs as liver disease progresses.
“GDF15 helps reprogram liver cells to reduce inflammation and scarring using advanced space technology,” says Dongdong Wang, first corresponding author of the study and assistant professor in McMaster’s Department of Medicine. “Rather than causing liver damage, GDF15 appears to help calm the liver’s immune system. It shifts immune cells to a more protective and less active state, which helps reduce inflammation and prevent liver damage.”
A surprising second role for the GDF15
Investigation published in 2023 by Steinberg and Wang showed that GDF15 helps the body maintain calorie burning during weight loss. The latest findings reveal a very different function for the same hormone: protecting the liver through a previously unknown anti-inflammatory pathway.
The researchers say that together, the two studies could help shape future therapies that specifically target liver inflammation. This inflammation is a major factor driving the progression of MASH and remains difficult to treat.
Steinberg, an executive member of NexusHealth at McMaster and chief scientific officer, shareholder and co-founder of Espervita Therapeutics, was recently a co-author preclinical research describing a promising drug candidate for advanced liver disease.
That research focused on a possible therapeutic compound. Instead, the new study reveals a biological pathway that the body naturally uses to control liver inflammation, providing additional clues that could help guide the development of future treatments.
Combine weight loss with inflammation control
“Current therapies focus primarily on reducing body weight and liver fat,” Steinberg says. “Our work suggests that there may be value in combining those approaches with therapies that directly target inflammation. By understanding how the body naturally protects the liver, we can identify new opportunities to develop more effective treatments for people living with MASH.”
The study also included collaborators Rune E. Kuhre and Sebastian B. Jørgensen of Novo Nordisk A/S. The research was funded by the Natural Sciences and Engineering Research Council of Canada (NSERC), the Canadian Institutes of Health Research (CIHR), and Diabetes Canada. Novo Nordisk provided research support and supplied the hormone GDF15 used in the study.