首页> 美国卫生研究院文献>Oxidative Medicine and Cellular Longevity >The Synergistic Effects of Heat Shock Protein 70 and Ginsenoside Rg1 against Tert-Butyl Hydroperoxide Damage Model In Vitro
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The Synergistic Effects of Heat Shock Protein 70 and Ginsenoside Rg1 against Tert-Butyl Hydroperoxide Damage Model In Vitro

机译:热激蛋白70和人参皂苷Rg1对叔丁基过氧化氢损伤模型的协同作用。

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摘要

Neural stem cells (NSCs) transplanted is one of the hottest research to treat Alzheimer's disease (AD), but cholinergic neurons from stem cells were also susceptible to cell death which Heat shock protein 70 (HSP70) was affirmed to reverse. Related to cognitive impairment, cholinergic nervous cells should be investigated and ginsenoside Rg1 (G-Rg1) was considered to increase them. We chose tert-butyl hydroperoxide (t-BHP) damage model to study in vitro. Functional properties of our recombination plasmid pEGFP-C2-HSP70 were affirmed by SH-SY5Y cells. To opposite the transitory appearance of HSP70, NSCs used as the vectors of HSP70 gene overexpressed HSP70 for at least 7 days in vitro. After transfection for 3 days, G-Rg1 pretreatment for 4 hours, and coculture for 3 days, the expression of acetylcholinesterase (ChAT), synaptophysin, and the ratio of NeuN and GFAP were assessed by western blot; Morphological properties were detected by 3D reconstruction and immunofluorescence. ChAT was markedly improved in the groups contained G-Rg1. In coculture system, the ratio of neurons/astrocytes and the filaments of neurons were increased; apoptosis cells were decreased, compared to monotherapy (P < 0.05). In conclusion, we demonstrated that, as a safe cotreatment affirmed in vitro, overexpression of HSP70 in NSCs plus G-Rg1 promoted nervous cells regeneration from chronic oxidative damage.
机译:移植神经干细胞(NSCs)是治疗阿尔茨海默氏病(AD)的最热门研究之一,但是来自干细胞的胆碱能神经元也容易发生细胞死亡,热休克蛋白70(HSP70)可以逆转。与认知障碍相关的胆碱能神经细胞应进行调查,人参皂苷Rg1(G-Rg1)被认为可以增加它们。我们选择氢过氧化叔丁基(t-BHP)损伤模型进行体外研究。 SH-SY5Y细胞证实了我们重组质粒pEGFP-C2-HSP70的功能特性。与HSP70的短暂出现相反,用作HSP70基因载体的NSC在体外至少表达7天。转染3天,G-Rg1预处理4小时,共培养3天,采用western blot检测乙酰胆碱酯酶(ChAT),突触素,NeuN和GFAP的表达。通过3D重建和免疫荧光检测形态学特性。在包含G-Rg1的组中,ChAT明显改善。在共培养系统中,神经元/星形细胞的比例和神经元细丝增加;与单一疗法相比,凋亡细胞减少(P <0.05)。总之,我们证明,作为一种安全的体外联合治疗,在NSC和G-Rg1中过表达HSP70可促进神经细胞从慢性氧化损伤中再生。

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