Tendon Aging

Subcell Biochem. 2023:103:121-147. doi: 10.1007/978-3-031-26576-1_7.

Abstract

Tendons are mechanosensitive connective tissues responsible for the connection between muscles and bones by transmitting forces that allow the movement of the body, yet, with advancing age, tendons become more prone to degeneration followed by injuries. Tendon diseases are one of the main causes of incapacity worldwide, leading to changes in tendon composition, structure, and biomechanical properties, as well as a decline in regenerative potential. There is still a great lack of knowledge regarding tendon cellular and molecular biology, interplay between biochemistry and biomechanics, and the complex pathomechanisms involved in tendon diseases. Consequently, this reflects a huge need for basic and clinical research to better elucidate the nature of healthy tendon tissue and also tendon aging process and associated diseases. This chapter concisely describes the effects that the aging process has on tendons at the tissue, cellular, and molecular levels and briefly reviews potential biological predictors of tendon aging. Recent research findings that are herein reviewed and discussed might contribute to the development of precision tendon therapies targeting the elderly population.

Keywords: Aging; Biomarkers; Immune system; Tendinopathy; Tendon cells; Tendon tissue.

MeSH terms

  • Aged
  • Aging / physiology
  • Biomechanical Phenomena
  • Humans
  • Tendon Injuries*
  • Tendons / physiology