Re-engineering bone: pathogenesis, diagnosis and emerging therapies for osteoporosis

骨质疏松症 药物治疗 医学 代谢性骨病 发病机制 骨病 疾病 重症监护医学 医疗保健系统 健骨 生物信息学 医疗保健 病理 内科学 骨矿物 生物 经济 经济增长
作者
Xinyi Dong,Hao Liu,Dian Yuan,Karan Gulati,Yan Liu
出处
期刊:Journal of Materials Chemistry B [Royal Society of Chemistry]
卷期号:13 (17): 4938-4963 被引量:11
标识
DOI:10.1039/d4tb02628d
摘要

Osteoporosis, a multifaceted metabolic bone disease, is becoming increasingly prevalent and poses a significant burden on global healthcare systems. Given the limitations of traditional treatments such as pharmacotherapy, tissue engineering has emerged as a promising alternative for osteoporosis management. This review begins by exploring the pathogenesis of osteoporosis, with a focus on the abnormal metabolic, cellular, and molecular signalling microenvironments that drive the disease. We also examine commonly used clinical diagnostic techniques, discussing their strengths and limitations. Notably, this review evaluates various advanced tissue engineering strategies for osteoporosis treatment. Delivery systems, including injectable hydrogels and nanomaterials, are detailed alongside bone tissue engineering materials such as bioactive ceramics, bone cements, and polymers. Additionally, biologically active substances, including exosomes and cytokines, and emerging therapies that leverage small-molecule drugs are explored. Through a comprehensive analysis of the advantages and limitations of current biomaterials and therapeutic approaches, this review provides insights into future directions for tissue engineering-based solutions. By synthesizing current advancements, it aims to inspire innovative perspectives for the clinical management of osteoporosis.
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