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Identification of drug candidate for osteoporosis by computational bioinformatics analysis of gene expression profile

机译:基因表达谱的计算生物信息学分析鉴定骨质疏松症的药物候选

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Background Osteoporosis is a condition of bones that leads to an increased susceptibility to fracture and consequent painful morbidity. It has become a major issue of life quality worldwide. However, until now, the molecular mechanism of this disease is far from being clear. Methods In this study, we obtained the gene expression profile of osteoporosis and controls from Gene Expression Omnibus and identified differentially expressed genes (DEGs) using classical t-test method. Then, functional enrichment analyses were performed to identify the dysregulated Gene Ontology categories and dysfunctional pathways in osteoporosis patients compared to controls. Besides, the connectivity map was used to identify compounds that induced inverse gene changes to osteoporosis. Results A total of 5581 DEGs were identified. We found these DEGs were enriched in 9 pathways by pathway enrichment analysis, including focal adhesion and MAPK signaling pathway. Besides, sanguinarine was identified as a potential therapeutic drug candidate capable of targeting osteoporosis. Conclusion Although candidate agents identified by our approach may be premature for clinical trials, it is clearly a direction that warrants additional consideration.
机译:背景技术骨质疏松症是骨骼的状况,导致对骨折和随之而来的痛苦发病率增加。它已成为全球生活质量的主要问题。然而,到目前为止,这种疾病的分子机制远未清楚。方法在本研究中,我们获得了骨质疏松症的基因表达谱和从基因表达综合征的对照,并使用经典T-试验方法鉴定差异表达基因(DEGS)。然后,与对照相比,进行功能性富集分析以鉴定骨质疏松症患者中的失调基因本体类别和功能障碍途径。此外,连接图用于鉴定诱导逆基因变化对骨质疏松症的化合物。结果共鉴定了总共5581次。我们发现这些DEG通过途径富集分析富集了9个途径,包括局灶性粘附和MAPK信号通路。此外,Sanguinarine被鉴定为能够靶向骨质疏松症的潜在治疗药物候选物。结论虽然我们的方法鉴定的候选药物可能会过早进行临床试验,但显然是保证额外考虑的方向。

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