Aleksandrowicz Róża, Strączkowski Marek
Department of Prophylaxis of Metabolic Diseases, Bialystok, Institute of Animal Reproduction and Food Research, Polish Academy of Sciences, Olsztyn, Poland.
Endocr Connect. 2023 Apr 12;12(5). doi: 10.1530/EC-23-0023. Print 2023 May 1.
Skeletal muscle is the main metabolic tissue responsible for glucose homeostasis in the body. It is surrounded by the extracellular matrix (ECM) consisting of three layers: epimysium, perimysium, and endomysium. ECM plays an important role in the muscle, as it provides integrity and scaffolding cells. The observed disturbances in this structure are related to the abnormal remodeling of the ECM (through an increase in the concentration of its components). ECM rearrangement may impair insulin action by increasing the physical barrier to insulin transport and reducing insulin transport into muscle cells as well as by directly inhibiting insulin action through integrin signaling. Thus, improper ECM remodeling may contribute to the development of insulin resistance (IR) and related comorbidities. In turn, IR-associated conditions may further aggravate disturbances of ECM in skeletal muscle. This review describes the major components of the ECM that are necessary for its proper function. Particular attention was also paid to receptors (integrins) involved in the signaling of metabolic pathways. Finally, changes in ECM components in the context of clinical and animal studies are discussed. This article will help the reader to systematize knowledge related to the ECM and to better understand the relationship between ECM remodeling and IR, and its role in the pathogenesis of T2DM. The information in this article presents the concept of the role of ECM and its remodeling in the pathogenesis of IR, which may contribute to developing new therapeutic solutions.
骨骼肌是体内负责葡萄糖稳态的主要代谢组织。它被由三层组成的细胞外基质(ECM)所包围:肌外膜、肌束膜和肌内膜。ECM在肌肉中起着重要作用,因为它为细胞提供完整性和支架。在这种结构中观察到的紊乱与ECM的异常重塑有关(通过其成分浓度的增加)。ECM重排可能通过增加胰岛素运输的物理屏障、减少胰岛素向肌肉细胞的运输以及通过整合素信号直接抑制胰岛素作用来损害胰岛素作用。因此,不适当的ECM重塑可能导致胰岛素抵抗(IR)及相关合并症的发生。反过来,与IR相关的病症可能会进一步加重骨骼肌中ECM的紊乱。本综述描述了ECM正常功能所必需的主要成分。还特别关注了参与代谢途径信号传导的受体(整合素)。最后,讨论了临床和动物研究背景下ECM成分的变化。本文将帮助读者系统地了解与ECM相关的知识,并更好地理解ECM重塑与IR之间的关系及其在2型糖尿病发病机制中的作用。本文中的信息提出了ECM及其重塑在IR发病机制中的作用概念,这可能有助于开发新的治疗方案。