PREDIKSI INTERAKSI MOLEKUER CAPE DENGAN IL-2, CD25, IL-10, CTLA-4, IDO, TGFβ, and CCL2 DENGAN SOFTWARE DOCKING MOLEKULER

Zauhani Kusnul
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Abstract

The use of herbal medicine as a nutritious ingredient to treat various diseases is still mostly done traditionally based on hereditary information. The development of technology supports the exploration of natural materials as a nutritious material with various scientific evidences. The development of computational and bioinfrmatic technology simulates interactions between various active compounds and target molecules virtually commonly known as molecular docking, a virtual screening based on structure used to predict the interaction of three-dimensional structures of small molecules (compounds) with the target molecular structure. Propolis is a substance produced by bees from resins collected from plants and combined with wax and secretions from bee salivary glands which are rich in various enzymes. In the world of medicine, propolis has been used since time immemorial and until now it has been known that propolis can be a natural medicine with anti-bacterial, anti-tumor, antioxidant and immunomodulatory abilities. Molecular docking between one of the active compounds in propolis, namely caffeic acid phenethyl ester (CAPE) with various target molecules such as IL-2, CD25, IL10, TGFβ, CTLA-4, CCL21, and IDO using the DockingServer software provides information that CAPE has inhibitory activity against IL-2, CD25, IL-10, CTLA-4, IDO, TGFβ, and CCL2 so that it has the potential to be further developed as a candidate for immunomodulatory therapy.  
角MOLEKUER与预测IL-2 CD25、IL-10 CTLA-4多,TGFβ,和分子对接软件和CCL2
使用草药作为一种营养成分来治疗各种疾病仍然主要是基于遗传信息的传统做法。科技的发展支持着对天然物质作为营养物质的探索,并有各种科学依据。计算和生物红外技术的发展模拟了各种活性化合物与靶分子之间的相互作用,通常称为分子对接,这是一种基于结构的虚拟筛选,用于预测小分子(化合物)的三维结构与靶分子结构的相互作用。蜂胶是一种物质,由蜜蜂从植物中收集树脂,结合蜂蜡和富含各种酶的蜜蜂唾液腺分泌物制成。在医学界,蜂胶自古以来就被使用,直到现在人们才知道蜂胶是一种具有抗菌、抗肿瘤、抗氧化和免疫调节能力的天然药物。利用DockingServer软件将蜂胶中的一种活性化合物咖啡酸苯乙酯(CAPE)与IL-2、CD25、IL10、TGFβ、CTLA-4、CCL21和IDO等多种靶分子进行分子对接,表明CAPE对IL-2、CD25、IL-10、CTLA-4、IDO、TGFβ和CCL2具有抑制活性,具有进一步开发作为免疫调节治疗候选物的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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