网络药理学与分子对接研究揭示海洋细胞毒素D、E、F的潜在抗癌活性

D. Luthfiana, M. Soleha, A. Prasetiyo, W. A. Kusuma, R. Fatriani, L. Nurfadhila, N. Yunitasari, A. H. Ahkam, T. L. Wargasetia, R. Irfandi, A. N. M. Ansori, V. D. Kharisma, S. W. Naw, E. Ullah, V. Jakhmola, R. Zainul
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引用次数: 0

摘要

振荡毒素(OTXs)是由一些海洋蓝藻产生的细胞毒素。它们独特的结构显示出作为抗癌剂的巨大潜力。由于OTX衍生物在自然界的可得性有限,因此关于其生物活性的信息很少。一些OTX的活性已经在体外或体内对癌细胞系进行了测试,但它们对靶点的确切作用机制尚不清楚。本研究采用网络药理学分析方法预测振荡毒素D (OTX-D)、30甲基振荡毒素D (30-methyl-OTX-D)、振荡毒素E (OTX-E)和振荡毒素F (OTX-F)的作用靶点和作用机制。这四种化合物有20种可能的抗癌靶点,其中主要的靶点是PIK3CA、CDK1和MTOR。随后进行了分子对接研究,以了解这四种化合物与它们的靶点之间的相互作用。分子对接表明,这四种化合物与关键靶点相互作用良好。本研究揭示了OTXs的四种衍生物及其抗癌作用的三个关键靶点,提示其具有多种信号通路,包括肿瘤中的PD- l1表达和PD- 1检查点通路、肿瘤中的蛋白聚糖和肿瘤中的通路,为进一步的实验研究奠定了理论框架。
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 molecular docking study to reveal the potential anticancer activity of Oscillatoxin D, E, and F marine cytotoxins
Oscillatoxins (OTXs) are cytotoxins produced by some marine cyanobacteria. Their unique structures show a great potency as an anticancer agent. The limited availability of OTX derivatives in nature provides little information about their biological activity. Some of OTX activities have been tested in the in vitro or in vivo studies toward cancer cell lines, but their exact mechanism of action on the target is unclear. In this study, we used the network pharmacology analysis method to predict the target and mechanism of action of oscillatoxin D (OTX-D), 30 methyl oscillatoxin D (30-methyl-OTX-D), oscillatoxin E (OTX-E), and oscillatoxin F (OTX-F). There are 20 possible targets of the four compounds toward cancer, and the main targets of them are PIK3CA, CDK1, and MTOR. This was also followed by the molecular docking study to understand the interaction between the four compounds and their targets. Molecular docking showed that the four compounds interacted well with the key targets. In this study, four derivatives of OTXs and their three key targets for the anticancer action were revealed suggesting multiple signaling pathways, including PD-L1 expression and PD‑1 checkpoint pathway in cancer, proteoglycans in cancer, and pathways in cancer, establishing a theoretical framework for the further experimental study.
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