Modulation of the vitamin D/vitamin D receptor system in osteoporosis pathogenesis: insights and therapeutic approaches

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作者
Yanqi Li
Pengfei Zhao
Biyun Jiang
Kangyong Liu
Lei Zhang
Haotian Wang
Yansheng Tian
Kun Li
Guoqi Liu
机构
[1] Huabei Petroleum Administration Bureau General Hospital,Central Laboratory
[2] Biotecnovo (Beijing) Co. Ltd.,Clinical School of Medicine
[3] North China University of Science and Technology,No.1 Department of Orthopedics
[4] Langfang People’s Hospital,undefined
来源
Journal of Orthopaedic Surgery and Research | / 18卷
关键词
Osteoporosis; Vitamin D receptor; Bone mineral density; Bone remodeling; Calcium metabolism; Genetic variations;
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摘要
Osteoporosis is a prevalent bone disorder characterized by low bone mineral density (BMD) and deteriorated bone microarchitecture, leading to an increased risk of fractures. Vitamin D (VD), an essential nutrient for skeletal health, plays a vital role in maintaining bone homeostasis. The biological effects of VD are primarily mediated through the vitamin D receptor (VDR), a nuclear receptor that regulates the transcription of target genes involved in calcium and phosphate metabolism, bone mineralization, and bone remodeling. In this review article, we conduct a thorough literature search of the PubMed and EMBASE databases, spanning from January 2000 to September 2023. Utilizing the keywords “vitamin D,” “vitamin D receptor,” “osteoporosis,” and “therapy,” we aim to provide an exhaustive overview of the role of the VD/VDR system in osteoporosis pathogenesis, highlighting the most recent findings in this field. We explore the molecular mechanisms underlying VDR’s effects on bone cells, including osteoblasts and osteoclasts, and discuss the impact of VDR polymorphisms on BMD and fracture risk. Additionally, we examine the interplay between VDR and other factors, such as hormonal regulation, genetic variants, and epigenetic modifications, that contribute to osteoporosis susceptibility. The therapeutic implications of targeting the VDR pathway for osteoporosis management are also discussed. By bringing together these diverse aspects, this review enhances our understanding of the VD/VDR system’s critical role in the pathogenesis of osteoporosis and highlights its significance as a potential therapeutic target.
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