Vázquez-Lorente Héctor, Herrera-Quintana Lourdes, Jiménez-Sánchez Laura, Fernández-Perea Beatriz, Plaza-Diaz Julio
Department of Physiology, Schools of Pharmacy and Medicine, University of Granada, 18071 Granada, Spain.
Biomedical Research Center, Health Sciences Technology Park, University of Granada, 18016 Granada, Spain.
Antioxidants (Basel). 2024 Aug 17;13(8):996. doi: 10.3390/antiox13080996.
Evidence is increasing that vitamin D and CYP11A1-derived vitamin D, tachysterol, and lumisterol metabolites play a significant antioxidant role beyond its classical functions in bone health and calcium metabolism. Several recent studies have linked these elements to reduced oxidative stress as well as improved immune, cardiovascular, and neurological functions as a result of chronic kidney disease and cancer. Additionally, supplementation with this vitamin has been shown to be one of the most cost-effective micronutrient interventions worldwide, highlighting its potential as a therapeutic approach. The underlying mechanisms and implications of this antioxidant function of vitamin D or CYP11A1-derived vitamin D, tachysterol, and lumisterol metabolites are not well understood. This comprehensive and narrative review is aimed at summarizing the current evidence regarding the molecular mechanisms implicated in this antioxidant function of vitamin D, as well as to provide a general overview and to identify key research areas for the future, offering an extensive perspective that can guide both researchers and clinicians in the management of diseases associated with oxidative stress and/or insufficient vitamin D status.
越来越多的证据表明,维生素D以及细胞色素P450 11A1(CYP11A1)衍生的维生素D、速甾醇和光甾醇代谢物在骨骼健康和钙代谢的经典功能之外,还发挥着重要的抗氧化作用。最近的几项研究将这些元素与慢性肾病和癌症导致的氧化应激减轻以及免疫、心血管和神经功能改善联系起来。此外,补充这种维生素已被证明是全球最具成本效益的微量营养素干预措施之一,凸显了其作为一种治疗方法的潜力。维生素D或CYP11A1衍生的维生素D、速甾醇和光甾醇代谢物这种抗氧化功能的潜在机制和影响尚未得到充分理解。这篇全面的叙述性综述旨在总结目前关于维生素D这种抗氧化功能所涉及分子机制的证据,并提供一个总体概述,确定未来的关键研究领域,提供一个广泛的视角,以指导研究人员和临床医生管理与氧化应激和/或维生素D水平不足相关的疾病。