Link between insulin resistance and skeletal muscle extracellular matrix remodeling

被引:10
作者
Aleksandrowicz, Roza [1 ]
Straczkowski, Marek [1 ]
机构
[1] Polish Acad Sci, Inst Anim Reprod & Food Res, Dept Prophylaxis Metab Dis, Olsztyn, Poland
关键词
skeletal muscle; ECM remodeling; insulin resistance; metabolic diseases; EXPRESSION; ADHESION; HYALURONAN; DYSTROPHIN; INCREASES; DUCHENNE; INTEGRIN; COLLAGEN; DISEASE; BINDING;
D O I
10.1530/EC-23-0023
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
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.
引用
收藏
页数:12
相关论文
共 59 条
[1]   Implications of Skeletal Muscle Extracellular Matrix Remodeling in Metabolic Disorders: Diabetes Perspective [J].
Ahmad, Khurshid ;
Choi, Inho ;
Lee, Yong-Ho .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2020, 21 (11)
[2]   Cross-Talk Between Extracellular Matrix and Skeletal Muscle: Implications for Myopathies [J].
Ahmad, Khurshid ;
Shaikh, Sibhghatulla ;
Ahmad, Syed Sayeed ;
Lee, Eun Ju ;
Choi, Inho .
FRONTIERS IN PHARMACOLOGY, 2020, 11
[3]   Multifaceted Interweaving Between Extracellular Matrix, Insulin Resistance, and Skeletal Muscle [J].
Ahmad, Khurshid ;
Lee, Eun Ju ;
Moon, Jun Sung ;
Park, So-Young ;
Choi, Inho .
CELLS, 2018, 7 (10)
[4]   Extracellular Matrix Mimics Using Hyaluronan-Based Biomaterials [J].
Amorim, Sara ;
Reis, Celso A. ;
Reis, Rui L. ;
Pires, Ricardo A. .
TRENDS IN BIOTECHNOLOGY, 2021, 39 (01) :90-104
[5]   TNAP limits TGF-β-dependent cardiac and skeletal muscle fibrosis by inactivating the SMAD2/3 transcription factors [J].
Arno, Benedetta ;
Galli, Francesco ;
Roostalu, Urmas ;
Aldeiri, Bashar M. ;
Miyake, Tetsuaki ;
Albertini, Alessandra ;
Bragg, Laricia ;
Prehar, Sukhpal ;
McDermott, John C. ;
Cartwright, Elizabeth J. ;
Cossu, Giulio .
JOURNAL OF CELL SCIENCE, 2019, 132 (15)
[6]   Neuromuscular actuation of biohybrid motile bots [J].
Aydin, Onur ;
Zhang, Xiaotian ;
Nuethong, Sittinon ;
Pagan-Diaz, Gelson J. ;
Bashir, Rashid ;
Gazzola, Mattia ;
Saif, M. Taher A. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2019, 116 (40) :19841-19847
[7]   Increased collagen content in insulin-resistant skeletal muscle [J].
Berria, R ;
Wang, LS ;
Richardson, DK ;
Finlayson, J ;
Belfort, R ;
Pratipanawatr, T ;
De Filippis, EA ;
Kashyap, S ;
Mandarino, LJ .
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2006, 290 (03) :E560-E565
[8]   Focal adhesion kinase regulates insulin resistance in skeletal muscle [J].
Bisht, B. ;
Goel, H. L. ;
Dey, C. S. .
DIABETOLOGIA, 2007, 50 (05) :1058-1069
[9]   In vivo inhibition of focal adhesion kinase causes insulin resistance [J].
Bisht, Bharti ;
Srinivasan, K. ;
Dey, Chinmoy S. .
JOURNAL OF PHYSIOLOGY-LONDON, 2008, 586 (16) :3825-3837
[10]   Focal Adhesion Kinase contributes to insulin-induced actin reorganization into a mesh harboring Glucose transporter-4 in insulin resistant skeletal muscle cells [J].
Bisht, Bharti ;
Dey, Chinmoy S. .
BMC CELL BIOLOGY, 2008, 9 (1)