Crosstalk among Oxidative Stress, Autophagy, and Apoptosis in the Protective Effects of Ginsenoside Rb1 on Brain Microvascular Endothelial Cells: A Mixed Computational and Experimental Study.

IF 2 4区 医学 Q3 MEDICINE, RESEARCH & EXPERIMENTAL Current Medical Science Pub Date : 2024-06-01 Epub Date: 2024-06-10 DOI:10.1007/s11596-024-2858-2
Yi-Miao Luo, Shu-Sen Liu, Ming Zhao, Wei Wei, Jiu-Xiu Yao, Jia-Hui Sun, Yu Cao, Hao Li
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Abstract

Objective: Brain microvascular endothelial cells (BMECs) were found to shift from their usually inactive state to an active state in ischemic stroke (IS) and cause neuronal damage. Ginsenoside Rb1 (GRb1), a component derived from medicinal plants, is known for its pharmacological benefits in IS, but its protective effects on BMECs have yet to be explored. This study aimed to investigate the potential protective effects of GRb1 on BMECs.

Methods: An in vitro oxygen-glucose deprivation/reperfusion (OGD/R) model was established to mimic ischemia-reperfusion (I/R) injury. Bulk RNA-sequencing data were analyzed by using the Human Autophagy Database and various bioinformatic tools, including gene set enrichment analysis (GSEA), Gene Ontology (GO) classification and enrichment analysis, Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis, protein-protein interaction network analysis, and molecular docking. Experimental validation was also performed to ensure the reliability of our findings.

Results: Rb1 had a protective effect on BMECs subjected to OGD/R injury. Specifically, GRb1 was found to modulate the interplay between oxidative stress, apoptosis, and autophagy in BMECs. Key targets such as sequestosome 1 (SQSTM1/p62), autophagy related 5 (ATG5), and hypoxia-inducible factor 1-alpha (HIF-1α) were identified, highlighting their potential roles in mediating the protective effects of GRb1 against IS-induced damage.

Conclusion: GRbl protects BMECs against OGD/R injury by influencing oxidative stress, apoptosis, and autophagy. The identification of SQSTM1/p62, ATG5, and HIF-1α as promising targets further supports the potential of GRb1 as a therapeutic agent for IS, providing a foundation for future research into its mechanisms and applications in IS treatment.

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人参皂苷 Rb1 对脑部微血管内皮细胞的保护作用中氧化应激、自噬和细胞凋亡之间的相互影响:计算与实验的混合研究。
目的:研究发现,脑微血管内皮细胞(BMECs)在缺血性脑卒中(IS)中会从通常的非活性状态转变为活性状态,并导致神经元损伤。人参皂苷 Rb1(GRb1)是一种从药用植物中提取的成分,因其对缺血性中风的药理作用而闻名,但其对 BMECs 的保护作用还有待探索。本研究旨在探讨 GRb1 对 BMECs 的潜在保护作用:方法:建立体外氧-葡萄糖剥夺/再灌注(OGD/R)模型来模拟缺血再灌注(I/R)损伤。利用人类自噬数据库和多种生物信息学工具分析了大量 RNA 序列数据,包括基因组富集分析(GSEA)、基因本体(GO)分类和富集分析、京都基因组百科全书(KEGG)通路分析、蛋白质相互作用网络分析和分子对接。为确保研究结果的可靠性,还进行了实验验证:结果:Rb1对遭受OGD/R损伤的BMEC具有保护作用。结果:Rb1 对遭受 OGD/R 损伤的 BMEC 有保护作用,特别是,研究发现 GRb1 可调节 BMEC 中氧化应激、细胞凋亡和自噬之间的相互作用。研究发现了一些关键靶点,如序列组1(SQSTM1/p62)、自噬相关5(ATG5)和低氧诱导因子1-α(HIF-1α),这些靶点在介导GRb1对IS诱导的损伤的保护作用中发挥了潜在作用:结论:GRbl通过影响氧化应激、细胞凋亡和自噬,保护BMECs免受OGD/R损伤。SQSTM1/p62、ATG5和HIF-1α被确定为有希望的靶点,这进一步支持了GRb1作为IS治疗剂的潜力,为今后研究其在IS治疗中的机制和应用奠定了基础。
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来源期刊
Current Medical Science
Current Medical Science Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
4.70
自引率
0.00%
发文量
126
期刊介绍: Current Medical Science provides a forum for peer-reviewed papers in the medical sciences, to promote academic exchange between Chinese researchers and doctors and their foreign counterparts. The journal covers the subjects of biomedicine such as physiology, biochemistry, molecular biology, pharmacology, pathology and pathophysiology, etc., and clinical research, such as surgery, internal medicine, obstetrics and gynecology, pediatrics and otorhinolaryngology etc. The articles appearing in Current Medical Science are mainly in English, with a very small number of its papers in German, to pay tribute to its German founder. This journal is the only medical periodical in Western languages sponsored by an educational institution located in the central part of China.
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