Xia Yuting, Yu Yuandong, Zhao Yi, Deng Zhifen, Zhang Lei, Liang Guizhao
Key Laboratory of Biorheological Science and Technology, Ministry of Education, Bioengineering College, Chongqing University, Chongqing 400044, China.
College of Life Science, Chongqing Normal University, Chongqing 401331, China.
Foods. 2023 Oct 30;12(21):3973. doi: 10.3390/foods12213973.
As a dietary supplement or functional food additive, vitamin D (VD) deficiency may impact extra-skeletal functions associated with metabolic syndrome (MetS) risk factors. However, the precise effects and mechanisms of VD supplementation on dyslipidemia and insulin resistance in MetS subjects remain controversial. Here, we investigate potential therapeutic targets, pathways and mechanisms of VD against MetS through a comprehensive strategy including meta-analysis, network pharmacology analysis, molecular docking, dynamics simulations, and quantum chemical calculations. Our results reveal that VD supplementation significantly reduces triglyceride levels, fasting glucose, and insulin concentrations in subjects, thereby improving insulin homeostasis to some extent. We theoretically identify 14 core MetS-associated targets. Notably, VD exhibits substantial interactions with three targets (PPARγ, FABP4, and HMGCR) in the PPAR signaling pathway, indicating that VD can modulate this pathway. Van der Waals forces predominantly stabilize the complexes formed between VD and the three targets. Nonetheless, to provide valuable insights for personalized MetS management, further research is necessary to confirm our findings, emphasizing the importance of exploring genetic variability in VD response. In conclusion, our study contributes insights into the mechanisms of VD in preventing and treating MetS through dietary supplementation, promoting the development of VD-based functional foods or nutritious diets.
作为膳食补充剂或功能性食品添加剂,维生素D(VD)缺乏可能会影响与代谢综合征(MetS)风险因素相关的骨骼外功能。然而,补充VD对MetS患者血脂异常和胰岛素抵抗的确切影响及机制仍存在争议。在此,我们通过包括荟萃分析、网络药理学分析、分子对接、动力学模拟和量子化学计算在内的综合策略,研究VD对抗MetS的潜在治疗靶点、途径和机制。我们的结果显示,补充VD可显著降低受试者的甘油三酯水平、空腹血糖和胰岛素浓度,从而在一定程度上改善胰岛素稳态。我们从理论上确定了14个与MetS相关的核心靶点。值得注意的是,VD在PPAR信号通路中与三个靶点(PPARγ、FABP4和HMGCR)表现出显著相互作用,表明VD可调节该通路。范德华力主要稳定VD与这三个靶点形成的复合物。尽管如此,为了给个性化的MetS管理提供有价值的见解,有必要进一步研究以证实我们的发现,强调探索VD反应中基因变异性的重要性。总之,我们的研究为通过膳食补充VD预防和治疗MetS的机制提供了见解,促进了基于VD的功能性食品或营养饮食的发展。