Zhu Xialin, Hou Qingqing, Zhang Ling, Wang Danyang, Tian Zhenhua, Liu Yuecheng, Wang Yu, Li Yunlun, Jiang Haiqiang
Innovative Institute of Chinese Medicine and Pharmacy, Shandong University of Traditional Chinese Medicine, Jinan, China.
Research Center of Basic Medicine, Jinan Central Hospital, Shandong First Medical University, Jinan, China.
Phytother Res. 2023 Dec;37(12):5991-6005. doi: 10.1002/ptr.8015. Epub 2023 Sep 26.
Hypertension is a progressive metabolic disease characterized by circadian regulation of lipid metabolism disorder. Identifying specific lipid components and maintaining circadian homeostasis of lipid metabolism might be a promising therapeutic strategy for hypertension. Isorhynchophylline (IRP) can regulate lipid metabolism; however, the underlying mechanism of IRP in improving lipid metabolism rhythm disorder is still unclear. The lipid circadian biomarkers and abnormal metabolic pathways intervened by IRP were investigated using diurnal lipidomic research methods. The 24-h circadian changes in mRNA and protein expression levels of circadian genes, including Bmal1, Clock, Cry1, Cry2, Per1, and Per2, and lipid metabolism-related factors (PPARα and LPL) were determined using RT-PCR and western blot analyses, respectively. The underlying mechanisms were intensively investigated by inhibiting Bmal1. Molecular docking and drug affinity responsive target stability analyses were performed to assess the binding affinity of IRP and Bmal1. IRP treatment could effectively improve 24-h blood pressure, ameliorate the lipid metabolic rhythm disorder, reverse the expression levels of circadian rhythm genes, and regulate lipid metabolism-related genes (PPARα and LPL) by mediating Bmal1. This study highlighted the potential effects of IRP in maintaining the circadian homeostasis of lipid metabolism and the treatment of hypertension.
高血压是一种进行性代谢疾病,其特征在于脂质代谢紊乱的昼夜节律调节。识别特定的脂质成分并维持脂质代谢的昼夜稳态可能是治疗高血压的一种有前景的策略。异钩藤碱(IRP)可以调节脂质代谢;然而,IRP改善脂质代谢节律紊乱的潜在机制仍不清楚。使用昼夜脂质组学研究方法研究了IRP干预的脂质昼夜生物标志物和异常代谢途径。分别使用RT-PCR和蛋白质印迹分析确定了昼夜节律基因(包括Bmal1、Clock、Cry1、Cry2、Per1和Per2)以及脂质代谢相关因子(PPARα和LPL)的mRNA和蛋白质表达水平的24小时昼夜变化。通过抑制Bmal1深入研究了潜在机制。进行了分子对接和药物亲和力响应靶点稳定性分析,以评估IRP与Bmal1的结合亲和力。IRP治疗可有效改善24小时血压,改善脂质代谢节律紊乱,逆转昼夜节律基因的表达水平,并通过介导Bmal1调节脂质代谢相关基因(PPARα和LPL)。本研究突出了IRP在维持脂质代谢昼夜稳态和治疗高血压方面的潜在作用。