黄芩素治疗骨质疏松的网络药理学及实验研究。

IF 1.9 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Huang Xudong, Li Qi, Ma Wenlong, Li Jinkun, Xu Xiaodong, Zhang Chengyin, Zhang Jiahe, Yuan Yifeng, Shi Xiaolin, Zeng Lingfeng, Wang Weiguo
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引用次数: 0

摘要

背景:黄芩素(Baicalein, BN)是一种从黄芩中提取的强效黄酮类化合物,具有抗炎、抗菌和解热等一系列值得注意的特性。此外,其治疗骨质疏松症的潜力已被强调。尽管如此,导致其治疗效果的确切作用方式仍不清楚。因此,本研究旨在通过网络药理学与严谨动物实验相结合的综合策略,阐明BN对OVX大鼠的改善作用,并探讨其治疗骨质疏松症的潜在作用机制。方法:利用蛋白数据库对BN的潜在蛋白靶点和OP疾病靶点进行分析。利用Cytoscape3.7.2软件构建蛋白相互作用图,利用结合能评价BN与核心靶点的结合活性,并通过蛋白实验对部分关键基因进行验证。结果:拓扑分析和预测表明,骨质疏松症(OP)与10多个核心靶蛋白相关。值得注意的是,nad依赖性去乙酰化酶sirtuin 1 (SIRT1)、雄激素受体(AR)、雌激素受体β (ESR1)和环氧化酶-2 (PTGS2)成为BN治疗骨质疏松症的关键蛋白。BN治疗骨质疏松的生物学过程主要涉及调节性激素水平、自噬、炎症反应和活性氧代谢。参与的信号通路主要是PI3K-Akt通路、AMPK通路和雌激素信号通路。随后的动物实验证实了这些发现,表明BN显著提高了组织中SIRT1、AR和ESR1的表达水平,同时降低了PTGS2的蛋白表达。这种多方面的方法最终达到了骨质疏松症治疗的预期治疗结果。结论:综上所述,本研究验证了BN对OP的治疗效果,分析了BN对骨质疏松症的多个潜在治疗靶点,为BN的进一步临床治疗和实验研究提供了新的思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Network Pharmacology and Experiments to Verify the Effect and Potential Mechanism of Baicalein on Osteoporosis.

Background: Baicalein (BN), a potent flavonoid derived from scutellaria scutellaria, exhibits an array of noteworthy attributes, such as anti-inflammatory, antibacterial, and antipyretic properties. Furthermore, its potential in treating osteoporosis has been highlighted. Nonetheless, the exact modes of action responsible for its therapeutic effects remain obscure. Hence, this study aims to elucidate the improvement effect of BN on OVX rats and explore its potential mechanism of action in treating osteoporosis through a comprehensive strategy that integrates network pharmacology and rigorous animal experiments.

Methods: The potential protein targets and OP disease targets in BN are analyzed using the protein database. The protein interaction diagram is constructed by Cytoscape3.7.2 software, and binding energy is used to evaluate the binding activity between BN and core targets, and some key genes are verified by protein experiments.

Results: Topology analysis and prediction reveal that osteoporosis (OP) is associated with more than ten core target proteins. Notably, NAD-dependent deacetylase sirtuin 1 (SIRT1), Androgen Receptor (AR), Estrogen Receptor beta (ESR1), and Cyclooxygenase-2 (PTGS2) emerge as pivotal proteins in the treatment of osteoporosis with BN. The biological process underlying BN treatment of osteoporosis primarily involves the regulation of sex hormone levels, autophagy, inflammatory response, and reactive oxygen metabolism. Moreover, the signaling pathways involved are predominantly the PI3K-Akt pathway, AMPK pathway, and estrogen signaling pathway. Subsequent animal experiments corroborate these findings by demonstrating that BN significantly enhances the expression levels of SIRT1, AR, and ESR1 in tissues, while concurrently reducing the protein expression of PTGS2. This multifaceted approach ultimately achieves the desired therapeutic outcome of osteoporosis treatment.

Conclusion: In summary, this study has validated the therapeutic effect of BN on OP and analyzed multiple potential therapeutic targets of BN for osteoporosis, which provides new ideas for further clinical treatment and experimental research of BN.

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来源期刊
Current protein & peptide science
Current protein & peptide science 生物-生化与分子生物学
CiteScore
5.20
自引率
0.00%
发文量
73
审稿时长
6 months
期刊介绍: Current Protein & Peptide Science publishes full-length/mini review articles on specific aspects involving proteins, peptides, and interactions between the enzymes, the binding interactions of hormones and their receptors; the properties of transcription factors and other molecules that regulate gene expression; the reactions leading to the immune response; the process of signal transduction; the structure and function of proteins involved in the cytoskeleton and molecular motors; the properties of membrane channels and transporters; and the generation and storage of metabolic energy. In addition, reviews of experimental studies of protein folding and design are given special emphasis. Manuscripts submitted to Current Protein and Peptide Science should cover a field by discussing research from the leading laboratories in a field and should pose questions for future studies. Original papers, research articles and letter articles/short communications are not considered for publication in Current Protein & Peptide Science.
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