竹沥煎剂和N-丁基苯酞联合应用可通过PI3K/AKT/GSK-3β信号通路抑制一氧化碳中毒诱导的细胞凋亡

IF 3.7 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Neurochemical Research Pub Date : 2024-08-01 Epub Date: 2024-06-01 DOI:10.1007/s11064-024-04179-9
Huiping Song, Aochun Yue, Xudong Zhou, Weiwei Zhao, Wei Han, Qin Li
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引用次数: 0

摘要

一氧化碳中毒(COP)是全球重大的健康负担,其特点是发病率和死亡率高。一氧化碳中毒诱发脑损伤的发病机制十分复杂,目前尚缺乏有效的治疗方法。在本研究中,我们采用网络药理学方法确定了竹沥煎剂(Zhuli Decoction,ZLD)对 COP 的治疗靶点和相关信号通路。随后,我们进行了体外和体内实验,验证了ZLD与N-丁基苯酞(NBP)联合治疗急性COP诱导损伤的疗效。我们的网络药理学分析表明,ZLD 的主要成分通过调节多个靶点和途径发挥治疗作用。体外和体内实验表明,NBP和ZLD联合使用可有效抑制细胞凋亡,并上调P-PI3K(Tyr458)、P-AKT(Ser473)、P-GSK-3β(Ser9)和Bcl-2的活性,从而保护COP后大鼠的神经细胞并改善其认知功能,效果优于单独使用NBP或ZLD。抢救实验进一步表明,PI3K 抑制剂 LY294002 明显减弱了 NBP + ZLD 的疗效。NBP和ZLD对COP诱导的脑损伤的神经保护作用与PI3K/AKT/GSK-3β信号通路的激活密切相关。
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The Combination of Zhuli Decoction and N-butylphthalide Inhibits Cell Apoptosis Induced by CO Poisoning through the PI3K/AKT/GSK-3β Signaling Pathway.

Carbon monoxide poisoning (COP) represents a significant global health burden, characterized by its morbidity and high mortality rates. The pathogenesis of COP-induced brain injury is complex, and effective treatment modalities are currently lacking. In this study, we employed network pharmacology to identify therapeutic targets and associated signaling pathways of Zhuli Decoction (ZLD) for COP. Subsequently, we conducted both in vitro and in vivo experiments to validate the therapeutic efficacy of ZLD in combination with N-butylphthalide (NBP) for acute COP-induced injury. Our network pharmacology analysis revealed that the primary components of ZLD exerted therapeutic effects through the modulation of multiple targets and pathways. The in vitro and in vivo experiments demonstrated that the combination of NBP and ZLD effectively inhibited apoptosis and up-regulated the activities of P-PI3K (Tyr458), P-AKT (Ser473), P-GSK-3β (Ser9), and Bcl-2, thus leading to the protection of neuronal cells and improvement in cognitive function in rats following COP, which was better than the effects observed with NBP or ZLD alone. The rescue experiment further showed that LY294002, a PI3K inhibitor, significantly attenuated the therapeutic efficacy of NBP + ZLD. The neuroprotection effects of NBP and ZLD against COP-induced brain injury are closely linked to the activation of the PI3K/AKT/GSK-3β signaling pathway.

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来源期刊
Neurochemical Research
Neurochemical Research 医学-神经科学
CiteScore
7.70
自引率
2.30%
发文量
320
审稿时长
6 months
期刊介绍: Neurochemical Research is devoted to the rapid publication of studies that use neurochemical methodology in research on nervous system structure and function. The journal publishes original reports of experimental and clinical research results, perceptive reviews of significant problem areas in the neurosciences, brief comments of a methodological or interpretive nature, and research summaries conducted by leading scientists whose works are not readily available in English.
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