Li Hongyang, Cao Wenhai, Tao Lin, Zhu Yue
Department of Orthopedics, First Hospital of China Medical University, Shenyang, China.
Ann Med. 2025 Dec;57(1):2533429. doi: 10.1080/07853890.2025.2533429. Epub 2025 Jul 20.
The purpose of this review is to discuss the role of fat-soluble vitamins in bone metabolism and explore whether there is a relationship between each fat-soluble vitamins in the occurrence and development of osteoporosis.
We selected several databases, including PubMed, PubMed Central (PMC), Embase, and Web of Science, as the primary sources for the search. Keywords closely related to the subject of this study, such as 'osteoporosis', 'vitamin A', 'vitamin D', 'vitamin E', 'Vitamin K', 'ferroptosis', 'osteoblast' and 'osteoclast', were used in the search. The search deadline is April 20, 2025. All included clinical studies were graded for critical analysis GRADE.
Among 573 reviewed articles, 182 were included (52 met GRADE criteria: A=10, B=26, C=11, D=5; 130 N/A). Vitamins D and K enhance osteoblast differentiation via RUNX2/ALP upregulation. Vitamin A's bone effects remain debated, potentially interacting with vitamin D. Vitamins E and K may jointly regulate bone metabolism as ferroptosis inhibitors.
i Fat-soluble vitamins (D, K, E) may positively impact bone mineral density (BMD), while vitamin A's effects remain controversial, potentially harming BMD at high doses. Current single-vitamin studies have limitations; future research should explore combined vitamin interactions to advance osteoporosis diagnosis and treatment.
本综述旨在探讨脂溶性维生素在骨代谢中的作用,并探究每种脂溶性维生素与骨质疏松症发生发展之间是否存在关联。
我们选择了几个数据库,包括PubMed、PubMed Central(PMC)、Embase和Web of Science作为主要检索来源。检索中使用了与本研究主题密切相关的关键词,如“骨质疏松症”“维生素A”“维生素D”“维生素E”“维生素K”“铁死亡”“成骨细胞”和“破骨细胞”。检索截止日期为2025年4月20日。所有纳入的临床研究均采用GRADE进行批判性分析分级。
在573篇综述文章中,纳入了182篇(52篇符合GRADE标准:A = 10篇,B = 26篇,C = 11篇,D = 5篇;130篇不符合标准)。维生素D和K通过上调RUNX2/ALP增强成骨细胞分化。维生素A对骨骼的影响仍存在争议,可能与维生素D相互作用。维生素E和K可能作为铁死亡抑制剂共同调节骨代谢。
(i)脂溶性维生素(D、K、E)可能对骨密度(BMD)产生积极影响,而维生素A的影响仍存在争议,高剂量时可能对BMD有害。目前的单一维生素研究存在局限性;未来的研究应探索联合维生素相互作用,以推进骨质疏松症的诊断和治疗。