Neuronal regulation of bone and tendon injury repair: a focused review

Author:

Xu Mingxin1,Zhu Manyu1,Qin Qizhi1,Xing Xin1,Archer Mary1,Ramesh Sowmya1,Cherief Masnsen1,Li Zhao1,Levi Benjamin2,Clemens Thomas L34,James Aaron W1ORCID

Affiliation:

1. Johns Hopkins University Department of Pathology, , Baltimore, MD 21205, United States

2. Department of Surgery, University of Texas Southwestern , Dallas, TX 75390, United States

3. University of Maryland Department of Orthopaedics, , Baltimore, MD 21205, United States

4. Department of Research Services, Baltimore Veterans Administration Medical Center , Baltimore, MD 21201, United States

Abstract

Abstract Beyond the sensation of pain, peripheral nerves have been shown to play crucial roles in tissue regeneration and repair. As a highly innervated organ, bone can recover from injury without scar formation, making it an interesting model in which to study the role of nerves in tissue regeneration. As a comparison, tendon is a musculoskeletal tissue that is hypo-innervated, with repair often resulting in scar formation. Here, we reviewed the significance of innervation in 3 stages of injury repair (inflammatory, reparative, and remodeling) in 2 commonly injured musculoskeletal tissues: bone and tendon. Based on this focused review, we conclude that peripheral innervation is essential for phases of proper bone and tendon repair, and that nerves may dynamically regulate the repair process through interactions with the injury microenvironment via a variety of neuropeptides or neurotransmitters. A deeper understanding of neuronal regulation of musculoskeletal repair, and the crosstalk between nerves and the musculoskeletal system, will enable the development of future therapies for tissue healing.

Funder

NIH/NIAMS

Publisher

Oxford University Press (OUP)

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