[基于DRP1/LRRK2/MCU轴的柚皮苷减轻脑缺血再灌注损伤的机制研究]。

Q3 Pharmacology, Toxicology and Pharmaceutics
Kai-Mei Tan, Hong-Yu Zeng, Feng Qiu, Yun Xiang, Zi-Yang Zhou, Da-Hua Wu, Chang Lei, Hong-Qing Zhao, Yu-Hong Wang, Xiu-Li Zhang
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引用次数: 0

摘要

本研究旨在探讨柚皮苷通过DRP1/LRRK2/MCU信号轴减轻脑缺血再灌注(CI/R)损伤的分子机制。将60只SD大鼠随机分为假手术组、模型组、丹参素钠组和柚皮苷低、中、高剂量组(50、100、200 mg·kg~(-1)),每组10只。除假手术组外,采用缝合法建立SD大鼠短暂性大脑中动脉闭塞/再灌注(tMCAO/R)模型。采用Longa 5分制评估神经功能缺损。采用2,3,5-三苯基氯化四氮唑(TTC)染色法检测大鼠脑梗死体积百分比。采用苏木精-伊红(HE)染色和尼氏染色分别观察大鼠皮层神经元结构变化和尼氏小体数量。Western blot检测b细胞淋巴瘤-2基因(Bcl-2)、Bcl-2相关X蛋白(Bax)、cleaved半胱氨酸-天冬氨酸蛋白酶-3(cleaved caspase-3)、线粒体单钙转运蛋白(MCU)、微管相关蛋白1轻链3(LC3)、P62蛋白的表达水平。透射电镜观察皮层神经元线粒体结构和自噬现象。免疫荧光法定量测定MCU和线粒体钙离子的荧光强度,以及动力蛋白相关蛋白1(DRP1)与富亮氨酸重复激酶2(LRRK2)和线粒体外膜转位酶20(TOMM20)与皮质线粒体LC3的共定位。结果显示,与模型组比较,柚皮苷显著降低tMCAO/R大鼠脑梗死体积百分比和神经功能缺损评分,减轻tMCAO/R大鼠皮层神经元结构损伤和Nissl体丢失,抑制皮层神经元自噬体,增加皮质线粒体平均直径。Western blot结果显示,与sham组相比,模型组大鼠皮层中cleaved caspase-3、Bax、MCU水平升高,LC3Ⅱ/LC3Ⅰ比值升高,Bcl-2、P62蛋白水平降低。而柚皮素下调cleaved caspase-3、Bax、MCU的蛋白表达以及LC3Ⅱ/LC3Ⅰ的比值,上调皮质区Bcl-2和P62蛋白的表达。免疫荧光分析显示,与模型组相比,柚皮苷和阳性药物治疗显著降低了MCU和线粒体钙离子的荧光强度。同时,DRP1与LRRK2、TOMM20与LC3在皮质线粒体中的共定位也在干预后显著降低。上述结果提示,柚皮苷可通过抑制DRP1/LRRK2/ mcu介导的线粒体断裂及由此导致的线粒体过度自噬,减轻tMCAO/R大鼠皮层神经元损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Study on mechanism of naringin in alleviating cerebral ischemia/reperfusion injury based on DRP1/LRRK2/MCU axis].

This study aims to investigate the molecular mechanism by which naringin alleviates cerebral ischemia/reperfusion(CI/R) injury through DRP1/LRRK2/MCU signaling axis. A total of 60 SD rats were randomly divided into the sham group, the model group, the sodium Danshensu group, and low-, medium-, and high-dose(50, 100, and 200 mg·kg~(-1)) naringin groups, with 10 rats in each group. Except for the sham group, a transient middle cerebral artery occlusion/reperfusion(tMCAO/R) model was established in SD rats using the suture method. Longa 5-point scale was used to assess neurological deficits. 2,3,5-Triphenyl tetrazolium chloride(TTC) staining was used to detect the volume percentage of cerebral infarction in rats. Hematoxylin-eosin(HE) staining and Nissl staining were employed to assess neuronal structural alterations and the number of Nissl bodies in cortex, respectively. Western blot was used to determine the protein expression levels of B-cell lymphoma-2 gene(Bcl-2), Bcl-2-associated X protein(Bax), cleaved cysteine-aspartate protease-3(cleaved caspase-3), mitochondrial calcium uniporter(MCU), microtubule-associated protein 1 light chain 3(LC3), and P62. Mitochondrial structure and autophagy in cortical neurons were observed by transmission electron microscopy. Immunofluorescence assay was used to quantify the fluorescence intensities of MCU and mitochondrial calcium ion, as well as the co-localization of dynamin-related protein 1(DRP1) with leucine-rich repeat kinase 2(LRRK2) and translocase of outer mitochondrial membrane 20(TOMM20) with LC3 in cortical mitochondria. The results showed that compared with the model group, naringin significantly decreased the volume percentage of cerebral infarction and neurological deficit score in tMCAO/R rats, alleviated the structural damage and Nissl body loss of cortical neurons in tMCAO/R rats, inhibited autophagosomes in cortical neurons, and increased the average diameter of cortical mitochondria. The Western blot results showed that compared to the sham group, the model group exhibited increased levels of cleaved caspase-3, Bax, MCU, and the LC3Ⅱ/LC3Ⅰ ratio in the cortex and reduced protein levels of Bcl-2 and P62. However, naringin down-regulated the protein expression of cleaved caspase-3, Bax, MCU and the ratio of LC3Ⅱ/LC3Ⅰ ratio and up-regulated the expression of Bcl-2 and P62 proteins in cortical area. In addition, immunofluorescence analysis showed that compared with the model group, naringin and positive drug treatments significantly decreased the fluorescence intensities of MCU and mitochondrial calcium ion. Meanwhile, the co-localization of DRP1 with LRRK2 and TOMM20 with LC3 in cortical mitochondria was also decreased significantly after the intervention. These findings suggest that naringin can alleviate cortical neuronal damage in tMCAO/R rats by inhibiting DRP1/LRRK2/MCU-mediated mitochondrial fragmentation and the resultant excessive mitophagy.

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来源期刊
Zhongguo Zhongyao Zazhi
Zhongguo Zhongyao Zazhi Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
1.50
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0.00%
发文量
581
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