Cracking the Code: The Role of Peripheral Nervous System Signaling in Fracture Repair

Author:

Morris Ashlyn J.,Parker Reginald S.,Nazzal Murad K.,Natoli Roman M.,Fehrenbacher Jill C.,Kacena Melissa A.,White Fletcher A.

Abstract

Abstract Purpose of Review The traditionally understated role of neural regulation in fracture healing is gaining prominence, as recent findings underscore the peripheral nervous system’s critical contribution to bone repair. Indeed, it is becoming more evident that the nervous system modulates every stage of fracture healing, from the onset of inflammation to repair and eventual remodeling. Recent Findings Essential to this process are neurotrophins and neuropeptides, such as substance P, calcitonin gene-related peptide, and neuropeptide Y. These molecules fulfill key roles in promoting osteogenesis, influencing inflammation, and mediating pain. The sympathetic nervous system also plays an important role in the healing process: while local sympathectomies may improve fracture healing, systemic sympathetic denervation impairs fracture healing. Furthermore, chronic activation of the sympathetic nervous system, often triggered by stress, is a potential impediment to effective fracture healing, marking an important area for further investigation. Summary The potential to manipulate aspects of the nervous system offers promising therapeutic possibilities for improving outcomes in fracture healing. This review article is part of a series of multiple manuscripts designed to determine the utility of using artificial intelligence for writing scientific reviews.

Funder

National Institutes of Health

Richard L. Roudebush VA Medical Center

Publisher

Springer Science and Business Media LLC

Subject

Endocrinology, Diabetes and Metabolism

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