4.5 Review

Advanced Glycation End-Products in Skeletal Muscle Aging

Journal

BIOENGINEERING-BASEL
Volume 8, Issue 11, Pages -

Publisher

MDPI
DOI: 10.3390/bioengineering8110168

Keywords

skeletal muscle aging; sarcopenia; advanced glycation end-products; collagen; collagen cross-linking; motor nerve

Funding

  1. MTF Biologics Junior Investigator Award
  2. Department of Defense [W81XWH1810352]
  3. U.S. Department of Defense (DOD) [W81XWH1810352] Funding Source: U.S. Department of Defense (DOD)

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Advanced age causes harmful changes in skeletal muscles, leading to conditions such as muscle atrophy and an increase in collagen content, ultimately resulting in age-related muscle wasting disease. Advanced glycation end-products accumulate on muscular collagens in old age, promoting collagen accumulation and stiffening the microenvironment. Future research should focus on the role of AGEs in skeletal muscle aging.
Advanced age causes skeletal muscle to undergo deleterious changes including muscle atrophy, fast-to-slow muscle fiber transition, and an increase in collagenous material that culminates in the age-dependent muscle wasting disease known as sarcopenia. Advanced glycation end-products (AGEs) non-enzymatically accumulate on the muscular collagens in old age via the Maillard reaction, potentiating the accumulation of intramuscular collagen and stiffening the microenvironment through collagen cross-linking. This review contextualizes known aspects of skeletal muscle extracellular matrix (ECM) aging, especially the role of collagens and AGE cross-linking, and underpins the motor nerve's role in this aging process. Specific directions for future research are also discussed, with the understudied role of AGEs in skeletal muscle aging highlighted. Despite more than a half century of research, the role that intramuscular collagen aggregation and cross-linking plays in sarcopenia is well accepted yet not well integrated with current knowledge of AGE's effects on muscle physiology. Furthermore, the possible impact that motor nerve aging has on intramuscular cross-linking and muscular AGE levels is posited.

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