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The emerging possibility of the use of geniposide in the treatment of cerebral diseases: a review

机译:在脑病治疗中使用栀子苷的可能性:综述

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With the advanced discoveries in the field of pathogenesis, a series of cerebral diseases, such as cerebral ischaemia, Alzheimer's disease, and depression, have been found to have multiple signalling targets in the microenvironment. Only a few existing agents have been shown to have curative effects due to this specific circumstance. In recent decades, active ingredients isolated from natural plants have been shown to be crucial for original drug development. Geniposide, mainly extracted from Gardenia jasminoides Ellis, is representative of these natural products. Geniposide demonstrates various biological activities in the treatment of cerebral, cardiovascular, hepatic, tumorous, and other diseases. The multiple protective effects of geniposide on the brain have especially drawn increasing attention. Thus, this article specifically reviews the characteristics of current models of cerebral ischaemia and illustrates the possible effects of geniposide and its pathogenetic mechanisms on these models. Geniposide has been shown to significantly reduce the area of cerebral infarction and alleviate neuronal damage and necrosis mainly by inhibiting inflammatory signals, including NLRP3, TNF-α, IL-6, and IL-1β. Neuronal protection was also involved in activating the PI3K/Akt and Wnt/catenin pathways. Geniposide was able to increase autophagy and inhibit apoptosis by regulating the function of mTOR in treating Alzheimer's disease. Geniposide has also been shown to act as a glucagon-like peptide-1 receptor (GLP-1R) agonist to reduce amyloid plaques and inhibit oxidative stress to alleviate memory impairment as well as synaptic loss. Moreover, geniposide has been shown to exert antidepressant effects primarily by regulating the hypothalamic–pituitary–adrenal (HPA) axis. Detailed explorations have shown that the biological activities of inhibiting inflammatory cytokine secretion, alleviating oxidative stress, and suppressing mitochondrial damage are also involved in the mechanism of action of geniposide. Therefore, geniposide is a promising agent awaiting further exploration for the treatment of cerebral diseases via various phenotypes or signalling pathways.
机译:随着发病机制领域的先进发现,已经发现一系列脑缺血,阿尔茨海默病和抑郁症,如微观环境中具有多种信号靶标。由于这种特定情况,只显示了一些现有药物具有疗效。近几十年来,从天然植物中分离的活性成分已被证明对原始药物发育至关重要。栀子苷,主要从Gardenia Jasminoides Ellis中提取,代表这些天然产物。 Geniposide证明了治疗脑,心血管,肝,肿瘤和其他疾病的各种生物活性。 Geniposide对大脑的多种保护作用特别吸引了越来越长的关注。因此,本文具体审查了当前脑缺血模型的特征,并说明了栀子苷的可能影响及其在这些模型上的致病机制。已经显示出苯吡啶钠通过抑制炎症信号,包括NLRP3,TNF-α,IL-6和IL-1β,显着降低了脑梗塞和缓解神经元损伤和坏死的面积。神经元保护也参与激活PI3K / AKT和WNT / Catenin途径。通过调节MTOR治疗阿尔茨海默病的功能,Geniposide能够增加自噬和抑制细胞凋亡。还证明了苯吡啶鎓作为胰高血糖素样肽-1受体(GLP-1R)激动剂,以减少淀粉样蛋白斑块并抑制氧化应激以减轻记忆障碍以及突触损失。此外,已经证明了苯吡啶钠主要通过调节下丘脑 - 垂体 - 肾上腺(HPA)轴来施加抗抑郁作用。详细的探索表明,抑制炎症细胞因子分泌,减轻氧化应激和抑制线粒体损伤的生物活性也参与了栀子苷的作用机制。因此,Geniposide是一种有望的代理,等待通过各种表型或信号通路治疗脑病的进一步探索。

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