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Roles and mechanism of microRNAs in the regulation of skeletal muscle insulin resistance / 生理学报
Acta Physiologica Sinica ; (6): 497-504, 2019.
Article in Zh | WPRIM | ID: wpr-777162
Responsible library: WPRO
ABSTRACT
Insulin resistance is a common pathophysiological mechanism of obesity and type 2 diabetes mellitus. Skeletal muscle is one of the major target organs of insulin-mediated glucose uptake, metabolism and utilization, and it is the earliest and most important site of insulin resistance. Studies have shown that the impairments of glucose uptake, insulin signaling pathway and mitochondrial biosynthesis are closely related to skeletal muscle insulin resistance. When insulin resistance develops in skeletal muscle, multiple microRNAs (miRNAs) are up-regulated (miR-106b, miR-23a, miR-761, miR-135a, Let-7 and miR-29a) or down-regulated (miR-133a, miR-149 and miR-1). They participate in the regulation of skeletal muscle glucose uptake, insulin signaling pathway and mitochondrial biogenesis, and thus play important roles in the occurrence and development of skeletal muscle insulin resistance. Therefore, these miRNAs may serve as potential targets for the treatment of skeletal muscle insulin resistance or diabetes.
Subject(s)
Full text: 1 Index: WPRIM Main subject: Physiology / Insulin Resistance / Muscle, Skeletal / MicroRNAs / Diabetes Mellitus, Type 2 / Genetics / Insulin Limits: Humans Language: Zh Journal: Acta Physiologica Sinica Year: 2019 Type: Article
Full text: 1 Index: WPRIM Main subject: Physiology / Insulin Resistance / Muscle, Skeletal / MicroRNAs / Diabetes Mellitus, Type 2 / Genetics / Insulin Limits: Humans Language: Zh Journal: Acta Physiologica Sinica Year: 2019 Type: Article