Engineering Innervated Musculoskeletal Tissues for Regenerative Orthopedics and Disease Modeling

Author:

Zhou Zhilong1,Liu Jun12,Xiong Tiandi12,Liu Yuwei13,Tuan Rocky S.245,Li Zhong Alan12467ORCID

Affiliation:

1. Department of Biomedical Engineering The Chinese University of Hong Kong Shatin, NT Hong Kong SAR P. R. China

2. Center for Neuromusculoskeletal Restorative Medicine Hong Kong Science Park Shatin, NT Hong Kong SAR P. R. China

3. Shenzhen Second People's Hospital The First Affiliated Hospital of Shenzhen University Shenzhen Guangdong 518000 P. R. China

4. School of Biomedical Sciences The Chinese University of Hong Kong Shatin, NT Hong Kong SAR P. R. China

5. Institute for Tissue Engineering and Regenerative Medicine The Chinese University of Hong Kong Shatin, NT Hong Kong SAR P. R. China

6. Key Laboratory of Regenerative Medicine, Ministry of Education, School of Biomedical Sciences, Faculty of Medicine The Chinese University of Hong Kong Shatin, NT Hong Kong SAR P. R. China

7. Shenzhen Research Institute The Chinese University of Hong Kong Shenzhen Guangdong 518057 P. R. China

Abstract

AbstractMusculoskeletal (MSK) disorders significantly burden patients and society, resulting in high healthcare costs and productivity loss. These disorders are the leading cause of physical disability, and their prevalence is expected to increase as sedentary lifestyles become common and the global population of the elderly increases. Proper innervation is critical to maintaining MSK function, and nerve damage or dysfunction underlies various MSK disorders, underscoring the potential of restoring nerve function in MSK disorder treatment. However, most MSK tissue engineering strategies have overlooked the significance of innervation. This review first expounds upon innervation in the MSK system and its importance in maintaining MSK homeostasis and functions. This will be followed by strategies for engineering MSK tissues that induce post‐implantation in situ innervation or are pre‐innervated. Subsequently, research progress in modeling MSK disorders using innervated MSK organoids and organs‐on‐chips (OoCs) is analyzed. Finally, the future development of engineering innervated MSK tissues to treat MSK disorders and recapitulate disease mechanisms is discussed. This review provides valuable insights into the underlying principles, engineering methods, and applications of innervated MSK tissues, paving the way for the development of targeted, efficacious therapies for various MSK conditions.

Funder

Shenzhen Science and Technology Innovation Program

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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