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Updated: Aug 17, 2026

Mouse Model of Metabolic Dysfunction-Associated Steatotic Liver Disease with Fibrosis
Published on: July 18, 2025
The relaxin gene-knockout mouse: a model of progressive fibrosis
Chrishan S Samuel1, Chongxin Zhao, Ross A D Bathgate
1Howard Florey Institute of Experimental Physiology & Medicine, University of Melbourne, Parkville, Victoria 3010, Australia. c.samuel@hfi.unimelb.edu.au
Abstract:
Relaxin is well known for its actions on collagen remodeling. To improve our understanding of the physiologic role(s) of relaxin, the relaxin gene-knockout (RLX-KO) mouse was established by our group and subsequently phenotyped. Pregnant RLX-KO mice underwent inadequate development of the pubic symphysis as well as the mammary glands and nipples compared to wild-type mice, thus preventing lactation. Later studies showed that these deficiencies were associated with increased collagen, primarily in the nipple and vagina. Analysis of male RLX-KO mice also demonstrated inadequate reproductive tract development. The testis, epididymis, and prostate of RLX-KO mice showed delayed tissue maturation and growth associated with increased collagen deposition. In nonreproductive tissues, an age-related increase in interstitial collagen (fibrosis) was also detected in the lung, heart, and kidneys of RLX-KO mice and was associated with organ dysfunction. From 6-9 months of age and onwards, all organs of RLX-KO mice, particularly male mice, underwent progressive increases in tissue weight and collagen content (all P < .05) compared with wild-type animals. The increased fibrosis contributed to bronchiole epithelium thickening and alveolar congestion (lung), atrial hypertrophy and increased ventricular chamber stiffness (heart) in addition to glomerulosclerosis (kidney). Treatment of RLX-KO mice with recombinant human relaxin in early and developed stages of fibrosis caused the reversal of collagen deposition in the lung, heart, and kidneys. Together, these findings suggest that relaxin is a naturally occurring inhibitor of collagen deposition during normal development, aging, and pregnancy and can be used to prevent the progression of fibrosis.
Insights
Relaxin inhibits collagen deposition, preventing fibrosis in reproductive tissues and organs like the lungs, heart, and kidneys. This discovery highlights relaxin
Area of Science:
- Endocrinology
- Reproductive Biology
- Fibrosis Research
Background:
- Relaxin is recognized for its role in collagen remodeling.
- The physiological functions of relaxin require further elucidation.
- Relaxin gene-knockout (RLX-KO) mice were created to study relaxin's roles.
Purpose of the Study:
- To investigate the physiological roles of relaxin.
- To characterize the effects of relaxin deficiency on development, pregnancy, and aging.
- To explore relaxin's potential as a therapeutic agent for fibrosis.
Main Methods:
- Phenotyping of relaxin gene-knockout (RLX-KO) mice.
- Assessment of reproductive tract development and function in RLX-KO mice.
- Histological and biochemical analysis of collagen deposition in various organs.
- Evaluation of organ function in RLX-KO mice.
- Treatment of RLX-KO mice with recombinant human relaxin.
Main Results:
- RLX-KO mice exhibited inadequate pubic symphysis and mammary gland development, preventing lactation.
- Increased collagen deposition was observed in the nipples, vagina, testes, epididymis, and prostate of RLX-KO mice.
- Age-related fibrosis and organ dysfunction (lung, heart, kidney) were detected in RLX-KO mice.
- Recombinant human relaxin treatment reversed collagen deposition and ameliorated fibrosis in RLX-KO mice.
Conclusions:
- Relaxin acts as a natural inhibitor of collagen deposition during development, aging, and pregnancy.
- Relaxin deficiency leads to fibrosis and organ dysfunction.
- Relaxin therapy holds potential for preventing and treating fibrotic diseases.
