Transcriptomics-based Exploration of the Mechanism of Kaempferol in the Treatment of Osteoporosis in Ovariectomized Rats

Zhang-lin Pu, Chi Zhang, Qian Yan, Zhou Liang, Zhi-Wei Xu, Ji-hu Wei, Hua Liu, Feng Chen
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Abstract

Objective: We explore the pharmacodynamic targets of kaempferol in treating osteoporosis using transcriptomics and animal experiment. Methods: Firstly, we constructed an ovariectomized rat model (OVX). The anti-osteoporosis effect of kaempferol was evaluated by bone mineral density (BMD) and hematoxylin-eosin staining comprehensively. Moreover, differential genes between groups were screened by RNA sequencing technology (RNA-seq) for transcriptomics and Gene Ontology and Kyoto Encyclopedia of Genes and Genomes pathways enrichment analysis were performed. Finally, partial results of transcriptomics were verified to detect the expression of the relevant gene expression by immunohistochemistry. Results: The pharmacodynamic findings indicated that the administration of kaempferol resulted in an elevation in BMD ( P < .01) and a notable enhancement in tibia microstructural indices in the experimental rats ( P < .01). The transcriptomic analysis revealed that NTN1, LTBP4, GSN, and EBF1 were identified as the principal targets for therapeutic intervention in osteoporosis. The results of animal experiments showed that kaempferol promoted osteogenesis and inhibited bone resorption by downregulating the protein expression of NTN1, LTBP4, GSN, and EBF1 ( P < .01). Conclusion: Kaempferol enhances BMD levels, retards tibial bone loss with structural deterioration in OVX model rats, and promotes bone formation while curbing bone resorption through NTN1, LTBP4, GSN, and EBF1 protein down-regulation.
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基于转录组学的山奈酚治疗卵巢切除大鼠骨质疏松症的机制探索
研究目的利用转录组学和动物实验探索山奈酚治疗骨质疏松症的药效学靶点。方法:首先,我们构建了卵巢切除大鼠模型(OVX):首先,我们构建了卵巢切除大鼠模型(OVX)。通过骨矿物质密度(BMD)和苏木精-伊红染色综合评价山奈酚的抗骨质疏松症作用。此外,还利用 RNA 测序技术(RNA-seq)进行了转录组学筛选,并进行了基因本体和京都基因组百科全书通路富集分析。最后,对部分转录组学结果进行验证,通过免疫组化检测相关基因的表达。结果药效学研究结果表明,服用山奈酚后,实验鼠的 BMD 上升(P < .01),胫骨微观结构指数显著增强(P < .01)。转录组分析显示,NTN1、LTBP4、GSN 和 EBF1 被确定为骨质疏松症治疗干预的主要靶点。动物实验结果表明,山奈酚通过下调 NTN1、LTBP4、GSN 和 EBF1 的蛋白表达,促进骨生成,抑制骨吸收(P < .01)。结论山奈酚能提高 OVX 模型大鼠的 BMD 水平,延缓胫骨骨质流失和结构退化,并通过下调 NTN1、LTBP4、GSN 和 EBF1 蛋白表达促进骨形成,抑制骨吸收。
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