Abstract TU198: Exercise-induced Elevation of Fibroblast growth factor-1 Observed in MoTrPAC Data Promotes Skeletal Muscle Insulin Sensitivity in Mice.

H Hemangi Bhonsle (Virginia Tech, Roanoke, Virginia, United States) K Kenya Takahashi (Virginia Tech, Roanoke, Virginia, United States) M Mei Zhang A A. Robert Burgardt (Virginia Tech, Roanoke, Virginia, United States) Y Yuqi Wang C Chongzhi Zang (Department of Genome Sciences and University of Virginia Comprehensive Cancer Center, University of Virginia) Z Zhen Yan (Shandong Key Laboratory of Environmental Processes and Health, School of Environmental Science and Engineering)

Abstract

Exercise is well-known to improve metabolic function and reduce the risk of development of cardiometabolic diseases, however, the molecular mechanisms underlying the exercise benefits remain incompletely understood. Fibroblast growth factor-1 (Fgf1) is secreted from brown adipose tissue and skeletal muscle upon acute exercise in rats. We observed increased expression of Fgf1 in skeletal muscle after single bout of exercise in mice. Recent study shows that recombinant FGF1 (rFGF1) injection lowers blood glucose levels in diet-induced obese mice to a healthy range. However, the role the of endogenous FGF1 induced by endurance exercise training in whole-body insulin sensitivity are unknown. To address this question, we have generated loss-of-function Fgf1- knock-in (KI) mice by using CRISPR/Cas9-mediated gene editing. Three-month-old WT and KI (male and female) mice were subjected to voluntary wheel running for 4 weeks with sedentary controls followed by measurements for whole-body metabolism (energy expenditure, locomotor activity and food intake by CLAMS) body composition (Echo MRI), exercise capacity (metabolic treadmill), cardiac function, cognitive function, as well as whole-body and skeletal muscle insulin signaling (GTT, ITT, HOMA-IR and serum insulin levels during GTT). Our data shows that Fgf1KI mice failed to improve glucose tolerance after 4-week training. We therefore, for the first time, demonstrate that Fgf1 plays a critical role in improving insulin sensitivity in response to endurance exercise training in mice. Altogether, our findings support an important role of Fgf1 in promoting insulin sensitivity in response to endurance exercise training, which has improved our understanding of molecular mechanisms underlying exercise-associated health benefits.

Article Details

Journal Circulation
Volume / Issue Vol. 153, Issue Suppl_1
Published March 24, 2026
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (7)

H

Hemangi Bhonsle

Virginia Tech, Roanoke, Virginia, United States

K

Kenya Takahashi

Virginia Tech, Roanoke, Virginia, United States

M

Mei Zhang

A

A. Robert Burgardt

Virginia Tech, Roanoke, Virginia, United States

Y

Yuqi Wang

C

Chongzhi Zang

Department of Genome Sciences and University of Virginia Comprehensive Cancer Center, University of Virginia

Z

Zhen Yan

Shandong Key Laboratory of Environmental Processes and Health, School of Environmental Science and Engineering