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Effects of Berberine on Cell Cycle DNA Reactive Oxygen Species and Apoptosis in L929 Murine Fibroblast Cells

机译:小ber碱对L929鼠成纤维细胞细胞周期DNA活性氧和凋亡的影响

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摘要

Berberine, an isoquinoline alkaloid isolated from several traditional Chinese herbal medicines (TCM), exhibits a strong antimicrobial activity in the treatment of diarrhea. However, it causes human as well as animal toxicity from heavy dosage. The present study was conducted to investigate the cytotoxicity of berberine and its possible trigger mechanisms resulting in cell cycle arrest, DNA damage, ROS (reactive oxygen species) level, mitochondrial membrane potential change, and cell apoptosis in L929 murine fibroblast (L929) cells. The cells were cultured in vitro and treated with different concentrations of berberine for 24 h. The results showed that cell viability was significantly decreased in a subjected dose-dependent state; berberine concentrations were higher than 0.05 mg/mL. Berberine at a concentration above 0.1 mg/mL altered the morphology of L929 cells. Cells at G2/M phase were clear that the level of ROS and cell apoptosis rates increased in 0.1 mg/mL group. Each DNA damage indicator score (DIS) increased in groups where concentration of berberine was above 0.025 mg/mL. The mitochondrial membrane potential counteractive balance mechanics were significantly altered when concentrations of berberine were above 0.005 mg/mL. In all, the present study suggested that berberine at high dosage exhibited cytotoxicity on L929 which was related to resultant: cell cycle arrest; DNA damage; accumulation of intracellular ROS; reduction of mitochondrial membrane potential; and cell apoptosis.
机译:小ber碱是一种从几种传统中草药(TCM)中分离出来的异喹啉类生物碱,在治疗腹泻方面显示出强大的抗菌活性。但是,高剂量会引起人以及动物的毒性。本研究旨在研究小investigate碱的细胞毒性及其可能的触发机制,导致细胞周期停滞,DNA损伤,ROS(活性氧)水平,线粒体膜电位变化和L929鼠成纤维细胞(L929)细胞凋亡。在体外培养细胞,并用不同浓度的小ber碱处理24 h。结果表明,细胞存活率在剂量依赖性状态下显着降低。小碱浓度高于0.05 mg / mL。小ber碱浓度超过0.1μg/ mL会改变L929细胞的形态。在G2 / M期的细胞清楚的是,在0.1μg/ mL的组中ROS的水平和细胞凋亡率增加。小DNA碱浓度高于0.025μg/ mL的组中每个DNA损伤指标得分(DIS)均升高。当小ber碱的浓度高于0.005 mg / mL时,线粒体膜电位平衡平衡机制发生了显着变化。总之,本研究表明高剂量的小碱对L929表现出细胞毒性,这与结果有关:细胞周期停滞; DNA损伤;细胞内ROS的积累;降低线粒体膜电位;和细胞凋亡。

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