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转录组分析揭示芒果苷在斑马鱼中抗帕金森病的活性。

Transcriptome analysis reveals the anti-Parkinson's activity of Mangiferin in zebrafish.

机构信息

Guangxi College and University Key Laboratory of High-Value Utilization of Seafood and Prepared Food in Beibu Gulf, Qinzhou Key Laboratory of Food Flavor Analysis and Control, Beibu Gulf University, Qinzhou 535011, China; College of Light Industry and Food Engineering, Guangxi University, Nanning 530004, China.

Guangxi College and University Key Laboratory of High-Value Utilization of Seafood and Prepared Food in Beibu Gulf, Qinzhou Key Laboratory of Food Flavor Analysis and Control, Beibu Gulf University, Qinzhou 535011, China.

出版信息

Biomed Pharmacother. 2024 Oct;179:117387. doi: 10.1016/j.biopha.2024.117387. Epub 2024 Sep 8.

Abstract

As the global population ages, the incidence of Parkinson's Disease (PD) continues to rise, imposing significant social and economic burdens. Mangiferin (MGF), a polyphenolic, bioactive compound has been shown to play a role in the prevention and treatment of PD. This study investigates the neuroprotective effects of MGF in an MPTP-induced zebrafish model of PD through transcriptome analysis. Initially, optimal concentrations for modeling were determined using various MPTP and MGF combinations. The zebrafish were then divided into control, MPTP-treated, and MGF co-treated groups. Subsequent evaluations included hatching rates, mortality rates, growth and development conditions, spontaneous motor abilities, as well as measurements of enzymatic activities of SOD, CAT, and levels of GSH. Ultimately, the therapeutic efficacy of MGF on the PD model in zebrafish was assessed through transcriptome sequencing. The results demonstrated that MPTP treatment induced PD-associated symptoms in zebrafish, while MGF treatment significantly improved the motor abilities and survival rates of the PD model zebrafish, effectively reducing oxidative stress and ameliorating PD symptoms. Transcriptome sequencing further revealed that MGF may mitigate mitochondrial-related oxidative stress in PD zebrafish by modulating the expression of critical genes including lrrk2, vps35, atp13a, dnajc6, and uchl1. Differential gene expression analysis indicated that these genes are primarily involved in vital signaling pathways, such as neuroactive ligand-receptor interaction, and the calcium signaling pathway. In summary, our study provides robust scientific evidence supporting MGF as a potential therapeutic candidate for PD by preserving mitochondrial homeostasis and elucidating its mechanisms of action.

摘要

随着全球人口老龄化,帕金森病(PD)的发病率持续上升,给社会和经济带来了巨大的负担。芒果苷(MGF)是一种多酚类生物活性化合物,已被证明在 PD 的预防和治疗中发挥作用。本研究通过转录组分析探讨了 MGF 在 MPTP 诱导的 PD 斑马鱼模型中的神经保护作用。首先,使用不同的 MPTP 和 MGF 组合确定了建模的最佳浓度。然后将斑马鱼分为对照组、MPTP 处理组和 MGF 共处理组。随后的评估包括孵化率、死亡率、生长发育状况、自发运动能力以及 SOD、CAT 酶活性和 GSH 水平的测量。最终,通过转录组测序评估了 MGF 对斑马鱼 PD 模型的治疗效果。结果表明,MPTP 处理诱导了斑马鱼 PD 相关症状,而 MGF 处理显著改善了 PD 模型斑马鱼的运动能力和存活率,有效降低了氧化应激,改善了 PD 症状。转录组测序进一步表明,MGF 可能通过调节 lrrk2、vps35、atp13a、dnajc6 和 uchl1 等关键基因的表达来减轻 PD 斑马鱼中线粒体相关的氧化应激。差异基因表达分析表明,这些基因主要参与神经活性配体-受体相互作用和钙信号通路等重要信号通路。总之,我们的研究为 MGF 作为 PD 的潜在治疗候选物提供了有力的科学证据,通过维持线粒体稳态并阐明其作用机制。

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