The recent development, application, and future prospects of muscle atrophy animal models

肌萎缩 恶病质 肌肉萎缩 浪费的 萎缩 医学 营养不良 肌生成抑制素 临床试验 生物信息学 重症监护医学 神经科学 骨骼肌 癌症 病理 生物 内科学
作者
Gongchang Zhang,Fengjuan Hu,Tingting Huang,Xiaoqing Ma,Ying Cheng,Xiaolei Liu,Wei Jiang,Birong Dong,Chenying Fu
标识
DOI:10.1002/mef2.70008
摘要

Abstract Muscle atrophy, characterized by the loss of muscle mass and function, is a hallmark of sarcopenia and cachexia, frequently associated with aging, malignant tumors, chronic heart failure, and malnutrition. Moreover, it poses significant challenges to human health, leading to increased frailty, reduced quality of life, and heightened mortality risks. Despite extensive research on sarcopenia and cachexia, consensus in their assessment remains elusive, with inconsistent conclusions regarding their molecular mechanisms. Muscle atrophy models are crucial tools for advancing research in this field. Currently, animal models of muscle atrophy used for clinical and basic scientific studies are induced through various methods, including aging, genetic editing, nutritional modification, exercise, chronic wasting diseases, and drug administration. Muscle atrophy models also include in vitro and small organism models. Despite their value, each of these models has certain limitations. This review focuses on the limitations and diverse applications of muscle atrophy models to understand sarcopenia and cachexia, and encourage their rational use in future research, therefore deepening the understanding of underlying pathophysiological mechanisms, and ultimately advancing the exploration of therapeutic strategies for sarcopenia and cachexia.
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