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锌矿物与对香豆酸的生物协同作用:一种多模式血糖控制和抗氧化研究。

Bioactive synergism between zinc mineral and p-coumaric acid: A multi-mode glycemic control and antioxidative study.

机构信息

Department of Health Sciences, Faculty of Health and Environmental Sciences, Central University of Technology, Bloemfontein, South Africa.

Centre for Quality of Health and Living (CQHL), Faculty of Health and Environmental Sciences, Central University of Technology, Bloemfontein, South Africa.

出版信息

J Food Biochem. 2022 Oct;46(10):e14360. doi: 10.1111/jfbc.14360. Epub 2022 Aug 5.

Abstract

Natural supplements are important in diabetes and oxidative stress management. A complexation-mediated antihyperglycemic and antioxidant synergism between zinc(II) and p-coumaric acid was investigated. p-Coumaric acid was complexed with ZnSO and characterized by FT-IR, H NMR, and mass spectroscopy. The antioxidant and antihyperglycemic potential of the complex and precursors were evaluated with different experimental models. Molecular docking with target proteins linked to diabetes was performed. A Zn(II)-bicoumarate.2H O complex was formed. The in vitro radical scavenging, α-glucosidase inhibitory, antiglycation, and anti-lipid peroxidative activities of the complex were several folds stronger than p-coumaric acid. In Chang liver cells and rat liver tissues, the complex inhibited lipid peroxidation (IC  = 56.2 and 398 μM) and GSH depletion (IC  = 33.9 and 38.7 μM), which was significantly stronger (2.3-5.4-folds) than p-coumaric acid and comparable to ascorbic acid. Zn(II) and p-coumaric synergistically modulated (1.7- and 2.8-folds than p-coumaric acid) glucose uptake in L-6 myotubes (EC  = 10.7 μM) and rat muscle tissue (EC  = 428 μM), which may be linked to the observed complexation-mediated increase in tissue zinc uptake. Glucose uptake activity was accompanied by increased hexokinase activity, suggesting increased glucose utilization. Docking scores α-glucosidase, GLUT-4, and PKB/Akt showed stronger interaction with the complex (-6.31 to -6.41 kcal/mol) compared to p-coumaric acid (-7.18 to -7.74 kcal/mol), which was influenced by the Zn(II) and bicoumarate moieties of the complex. In vitro, the complex was not hepatotoxic or myotoxic. Zn(II) complexation may be a therapeutic approach for improving the antioxidative and glycemic control potentials of p-coumaric acid. PRACTICAL APPLICATIONS: In functional medicine, natural supplements, plant-derived phenolics, and nutraceuticals are becoming popular in the management of diseases, including diabetes and oxidative stress. This has been largely attributed to their perceived holistic medicinal profile and the absence of notable toxicity concerns. In the past two decades, considerable attention has been drawn toward zinc mineral as a possible therapeutic supplement for diabetes due to its role in insulin secretion and reported insulin mimetic potentials. p-Coumaric acid is a known natural antioxidant with reported diabetes-related pharmacological effects. In this study, we took advantage of these properties and complexed both natural supplements, which resulted in a more potent nutraceutical with improved glycemic control and antioxidant potential. The complexation-mediated synergistic interaction between zinc and p-coumaric acid could be an important therapeutic approach in improving the use of these natural supplements or nutraceuticals in managing diabetes and associated oxidative complications.

摘要

天然补充剂在糖尿病和氧化应激管理中很重要。本研究调查了锌(II)和对香豆酸之间通过配合物介导的抗高血糖和抗氧化协同作用。对香豆酸与 ZnSO 配位,并通过傅里叶变换红外光谱(FT-IR)、 1 H NMR 和质谱进行了表征。使用不同的实验模型评估了配合物和前体的抗氧化和抗高血糖潜力。与糖尿病相关的靶蛋白进行了分子对接。形成了 Zn(II)-双香豆素.2H 2 O 配合物。该配合物的体外自由基清除、α-葡萄糖苷酶抑制、糖化抑制和抗脂质过氧化活性比对香豆酸强几倍。在 Chang 肝细胞和大鼠肝组织中,该配合物抑制脂质过氧化(IC 50 = 56.2 和 398 μM)和 GSH 耗竭(IC 50 = 33.9 和 38.7 μM),其作用明显强于(2.3-5.4 倍)对香豆酸,与抗坏血酸相当。Zn(II)和对香豆酸协同调节(比对香豆酸高 1.7-2.8 倍)L-6 肌管(EC 50 = 10.7 μM)和大鼠肌肉组织(EC 50 = 428 μM)中的葡萄糖摄取,这可能与观察到的配合物介导的组织锌摄取增加有关。葡萄糖摄取活性伴随着己糖激酶活性的增加,表明葡萄糖的利用增加。对接得分 α-葡萄糖苷酶、GLUT-4 和 PKB/Akt 与配合物(-6.31 至-6.41 kcal/mol)的相互作用强于对香豆酸(-7.18 至-7.74 kcal/mol),这受到配合物中 Zn(II)和双香豆素部分的影响。在体外,该配合物没有肝毒性或肌毒性。Zn(II)配位可能是一种改善对香豆酸抗氧化和血糖控制潜力的治疗方法。

实际应用

在功能医学中,天然补充剂、植物来源的酚类和营养保健品在包括糖尿病和氧化应激在内的疾病管理中变得越来越受欢迎。这在很大程度上归因于它们被认为是整体医学特征,并且没有明显的毒性问题。在过去的二十年中,由于锌在胰岛素分泌中的作用以及报道的胰岛素模拟潜力,锌矿物质作为一种可能的治疗性补充剂引起了人们的极大关注。对香豆酸是一种已知的天然抗氧化剂,具有报道的与糖尿病相关的药理作用。在这项研究中,我们利用了这些特性,并将这两种天然补充剂进行配位,从而得到了一种更有效的营养保健品,具有改善的血糖控制和抗氧化潜力。锌与对香豆酸之间的配合物介导的协同相互作用可能是改善这些天然补充剂或营养保健品在管理糖尿病及其相关氧化并发症中的使用的重要治疗方法。

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