假马齿苋植物化学物质介导的铂纳米颗粒合成及其对1-甲基4-苯基1,2,3,6四氢吡啶诱导的斑马鱼实验性帕金森病的神经修复作用

Journal of Neurodegenerative Diseases Pub Date : 2013-01-01 Epub Date: 2013-03-04 DOI:10.1155/2013/972391
Jayshree Nellore, Cynthia Pauline, Kanchana Amarnath
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引用次数: 72

摘要

目前的发现表明,使用神经有益植物假马齿苋(Bacopa monnieri, BmE)的叶子提取物可以快速形成铂纳米颗粒。纳米颗粒(BmE-PtNPs)被稳定,然后被不同的植物化学物质包裹在叶子提取物中。利用分光光度法,这些纳米颗粒显示了与将NADH氧化为NAD(+)相同的复合物I的活性。这表明BmE-PtNPs是氧化应激介导的线粒体复合体I抑制疾病,即帕金森病(PD)的潜在药物。因此,我们在1-甲基4-苯基1,2,3,6四氢吡啶(MPTP-)诱导的斑马鱼帕金森模型中探讨了植物化学包被纳米颗粒的神经保护作用。BmE-PtNPs预处理通过增加多巴胺及其代谢物、GSH水平以及GPx、过氧化氢酶、SOD和复合物I的活性,降低MDA水平和增强运动活性,显著逆转MPTP的毒性作用。综上所述,这些发现表明BmE-PtNPs通过其线粒体复合物I和抗氧化活性的双重功能对mptp诱导的帕金森病模型的神经毒性具有保护作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Bacopa monnieri Phytochemicals Mediated Synthesis of Platinum Nanoparticles and Its Neurorescue Effect on 1-Methyl 4-Phenyl 1,2,3,6 Tetrahydropyridine-Induced Experimental Parkinsonism in Zebrafish.

Bacopa monnieri Phytochemicals Mediated Synthesis of Platinum Nanoparticles and Its Neurorescue Effect on 1-Methyl 4-Phenyl 1,2,3,6 Tetrahydropyridine-Induced Experimental Parkinsonism in Zebrafish.

Bacopa monnieri Phytochemicals Mediated Synthesis of Platinum Nanoparticles and Its Neurorescue Effect on 1-Methyl 4-Phenyl 1,2,3,6 Tetrahydropyridine-Induced Experimental Parkinsonism in Zebrafish.

Bacopa monnieri Phytochemicals Mediated Synthesis of Platinum Nanoparticles and Its Neurorescue Effect on 1-Methyl 4-Phenyl 1,2,3,6 Tetrahydropyridine-Induced Experimental Parkinsonism in Zebrafish.

Current discovery demonstrates the rapid formation of platinum nanoparticles using leaf extract of a neurobeneficial plant, Bacopa monnieri (BmE). The nanoparticles (BmE-PtNPs) were stabilized and then coated with varied phytochemicals present within the leaf extract. These nanoparticles demonstrated the same activity of Complex I, as that of oxidizing NADH to NAD(+) using a spectrophotometric method. This suggests that BmE-PtNPs are a potential medicinal substance for oxidative stress mediated disease with suppressed mitochondrial complex I, namely, Parkinson's disease (PD). Hence, the neuroprotective potentials of the phytochemical coated nanoparticle were explored in 1-methyl 4-phenyl 1,2,3,6 tetrahydropyridine- (MPTP-)induced experimental Parkinsonism in zebrafish model. BmE-PtNPs pretreatment significantly reversed toxic effects of MPTP by increasing the levels of dopamine, its metabolites, GSH and activities of GPx, catalase, SOD and complex I, and reducing levels of MDA along with enhanced locomotor activity. Taken together, these findings suggest that BmE-PtNPs have protective effect in MPTP-induced neurotoxicity in this model of Parkinson's disease via their dual functions as mitochondrial complex I and antioxidant activity.

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