Fracture Healing in the Setting of Endocrine Diseases, Aging, and Cellular Senescence

Author:

Saul Dominik12,Khosla Sundeep1ORCID

Affiliation:

1. Kogod Center on Aging and Division of Endocrinology, Mayo Clinic , Rochester, Minnesota 55905 , USA

2. Department of Trauma, Orthopedics and Reconstructive Surgery, Georg-August-University of Goettingen , 37073 Goettingen , Germany

Abstract

Abstract More than 2.1 million age-related fractures occur in the United States annually, resulting in an immense socioeconomic burden. Importantly, the age-related deterioration of bone structure is associated with impaired bone healing. Fracture healing is a dynamic process which can be divided into four stages. While the initial hematoma generates an inflammatory environment in which mesenchymal stem cells and macrophages orchestrate the framework for repair, angiogenesis and cartilage formation mark the second healing period. In the central region, endochondral ossification favors soft callus development while next to the fractured bony ends, intramembranous ossification directly forms woven bone. The third stage is characterized by removal and calcification of the endochondral cartilage. Finally, the chronic remodeling phase concludes the healing process. Impaired fracture healing due to aging is related to detrimental changes at the cellular level. Macrophages, osteocytes, and chondrocytes express markers of senescence, leading to reduced self-renewal and proliferative capacity. A prolonged phase of “inflammaging” results in an extended remodeling phase, characterized by a senescent microenvironment and deteriorating healing capacity. Although there is evidence that in the setting of injury, at least in some tissues, senescent cells may play a beneficial role in facilitating tissue repair, recent data demonstrate that clearing senescent cells enhances fracture repair. In this review, we summarize the physiological as well as pathological processes during fracture healing in endocrine disease and aging in order to establish a broad understanding of the biomechanical as well as molecular mechanisms involved in bone repair.

Funder

National Institutes of Health

German Research Foundation

Deutsche Forschungsgemeinschaft

Publisher

The Endocrine Society

Subject

Endocrinology,Endocrinology, Diabetes and Metabolism

Reference247 articles.

1. Hip fractures. An epidemiological review;Rose;Bull Hosp Jt Dis.,1999

2. Economic burden of osteoporotic fractures in US managed care enrollees;Williams;Am J Manag Care.,2020

3. Effects of aging on fracture healing;Clark;Curr Osteoporos Rep.,2017

4. Independent roles of estrogen deficiency and cellular senescence in the pathogenesis of osteoporosis: evidence in young adult mice and older humans;Farr;J Bone Miner Res.,2019

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