Stress hormone timing creates a different kind of obesity, study suggests

· Medical Xpress

by Weill Cornell Medical College

edited by Lisa Lock, reviewed by Robert Egan

Lisa Lock

Scientific Editor

Meet our editorial team
Behind our editorial process

Robert Egan

Senior Editor

Meet our editorial team
Behind our editorial process Editors' notes

This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility:

fact-checked

peer-reviewed publication

trusted source

proofread

The GIST Add as preferred source


Liver tissue from mice after 60 days of treatment. From left to right: control, glucocorticoid-rhythm flattening, and high-fat diet. The top row shows H&E-stained liver tissue, while red staining in the bottom row marks fat in the liver. Mice with flattened glucocorticoid rhythms on a standard diet displayed minimal liver fat compared with mice fed a high-fat diet, despite similar obesity. Scale bar, 100 µm. Credit: Teruel Lab

Obesity caused by disrupted stress-hormone rhythms is metabolically very different from obesity caused by a high-fat diet, according to a new preclinical study by Weill Cornell Medicine investigators. The researchers found in mice that glucocorticoid-rhythm disruption concentrates insulin resistance in skeletal muscle while preserving key insulin responses in fat tissue and liver. This allows fat tissue to continue storing lipids, while the liver remains largely protected from the fat accumulation typically seen with high-fat-diet obesity.

In the study, published Sept. 8 in Cell Reports, Dr. Mary Teruel, associate professor of biochemistry at Weill Cornell Medicine, and her team, including postdoctoral associates and co-first authors Drs. Agnieszka Agas and Sanjeev Sharma, separated the effects of hormone timing from diet by independently varying both factors. Mice had either normal or flattened glucocorticoid rhythms and ate either a standard diet or a high-fat diet.

Normally, glucocorticoid levels fall during the animals' rest period and rise around the start of their active period. The researchers flattened the rhythm by raising the low hormone level during rest and blunting the daily peak, without substantially increasing average glucocorticoid levels.

The findings build on a 2022 study in Cell Reports from the Teruel laboratory showing that flattening glucocorticoid rhythms caused mice to accumulate large amounts of fat without increased food intake, while maintaining normal blood glucose and relatively little liver fat. The new study explains how that unusual metabolic state is maintained.

"We realized there are two different mechanisms, hormones and diet, making mice obese," said Teruel, who is also a member of the Joan and Sanford I. Weill Center for Metabolic Health and the Gale and Ira Drukier Institute for Children's Health at Weill Cornell Medicine. "This may be occurring in people, too."

Credit: Cell Reports (2026). DOI: 10.1016/j.celrep.2026.117926

Two routes to obesity

Over 30 days, mice on the high-fat diet increased their fat mass about threefold. The glucocorticoid-flattened mice on a standard diet accumulated nearly as much fat, about 2.5 times control levels. Mice exposed to both the high-fat diet and glucocorticoid flattening accumulated the most fat, showing that the two drivers of obesity were largely additive.

Mice in the glucocorticoid-flattened group also lost lean muscle mass, but only during the first week. Lean mass then stabilized and began to increase. Despite becoming profoundly obese, these mice were largely protected from the pathological fatty liver seen in high-fat diet-fed mice. Their fat was instead preferentially stored in white adipose tissue under the skin and around organs.

"It's not just how many calories they were eating. The timing of the hormonal signals changed how the body handled those calories and where the energy was stored, which was a bit astonishing to me," Teruel said.

Insulin resistance shifts by tissue

Both high-fat diet-fed and glucocorticoid-flattened mice developed insulin resistance, but it was distributed differently. In the glucocorticoid-flattened mice, insulin resistance was concentrated in skeletal muscle, while fat tissue retained a key response to insulin that suppresses fat release. At the same time, insulin levels rose dramatically. This unusual pattern may help the animals maintain metabolic balance by allowing high insulin levels to keep lipids stored in adipose tissue rather than accumulating pathologically in the liver.

Human studies have linked disruption of the normal daily cortisol rhythm, including higher cortisol when levels are normally low, with obesity and abdominal fat. Altered rhythms have also been reported with chronic stress and shift work. The preclinical experiments allowed the researchers to isolate hormone timing from diet and determine how rhythm disruption changes metabolism.

Obesity may have distinct drivers

In the United States, about 40% of adults and about 20% of children have obesity, according to the Centers for Disease Control and Prevention. The findings raise the possibility that diet may not be the only factor shaping obesity. "We're asking ourselves, is this really just all about the food, or is there something else going on?" Teruel said. "Have factors like sleep deprivation or stress flattened our normal daily glucocorticoid rhythms?"

While more research is needed, "we should stop treating obesity as one thing," Teruel said. "We should stop treating insulin resistance as one thing too. Our preclinical results show that muscle, fat and liver can respond very differently to insulin depending on what is driving the metabolic change."

Metabolic health may therefore depend not only on how much fat is stored, but also on where insulin resistance develops and whether fat tissue remains able to store lipid rather than releasing it to other organs.

Publication details

Agnieszka Agas et al, Disrupted glucocorticoid rhythms selectively induce severe skeletal muscle insulin resistance and uncouple obesity from hepatic steatosis, Cell Reports (2026). DOI: 10.1016/j.celrep.2026.117926

Journal information: Cell Reports

Key medical concepts

Fatty Liver

Clinical categories

EndocrinologyWeight managementSleep & Recovery Provided by Weill Cornell Medical College Who's behind this story?

Lisa Lock

BA art history, MA material culture. Former museum editor, paramedic, and transplant coordinator. Editing for Science X since 2021. Full profile →

Robert Egan

Bachelor's in mathematical biology, Master's in creative writing. Well-traveled with unique perspectives on science and language. Full profile →

Citation: Stress hormone timing creates a different kind of obesity, study suggests (2026, September 10) retrieved 10 September 2026 from https://medicalxpress.com/news/2026-09-stress-hormone-kind-obesity.html This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no part may be reproduced without the written permission. The content is provided for information purposes only.