Precision Drug Repurposing

药物重新定位 色素沉着 医学 重新调整用途 皮肤色素沉着 药品 计算生物学 药物发现 基因 药物开发 生物信息学 药理学 皮肤病科 遗传学 生物 生态学
作者
Shuwei Chen,Junhao Zeng,Mariam Saad,William C. Lineaweaver,Zhiwei Chen,Yuyan Pan
出处
期刊:Annals of Plastic Surgery [Ovid Technologies (Wolters Kluwer)]
标识
DOI:10.1097/sap.0000000000004007
摘要

Background Hyperpigmentation is a skin disorder characterized by a localized darkening of the skin due to increased melanin production. When patients fail first line topical treatments, secondary treatments such as chemical peels and lasers are offered. However, these interventions are not devoid of risks and are associated with postinflammatory hyperpigmentation. In the quest for novel therapeutic potentials, this study aims to investigate computational methods in the identification of new targeted therapies in the treatment of hyperpigmentation. Methods We used a comprehensive approach, which integrated text mining, interpreting gene lists through enrichment analysis and integration of diverse biological information (GeneCodis), protein-protein association networks and functional enrichment analyses (STRING), and plug-in network centrality parameters (Cytoscape) to pinpoint genes closely associated with hyperpigmentation. Subsequently, analysis of drug-gene interactions to identify potential drugs (Cortellis) was utilized to select drugs targeting these identified genes. Lastly, we used Deep Learning Based Drug Repurposing Toolkit (DeepPurpose) to conduct drug-target interaction predictions to ultimately identify candidate drugs with the most promising binding affinities. Results Thirty-four hyperpigmentation-related genes were identified by text mining. Eight key genes were highlighted by utilizing GeneCodis, STRING, Cytoscape, gene enrichment, and protein-protein interaction analysis. Thirty-five drugs targeting hyperpigmentation-associated genes were identified by Cortellis, and 29 drugs, including 16 M2PK1 inhibitors, 11 KRAS inhibitors, and 2 BRAF inhibitors were recommended by DeepPurpose. Conclusions The study highlights the promise of advanced computational methodology for identifying potential treatments for hyperpigmentation.
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