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Prostaglandins Isolated from the Octocoral Plexaura homomalla: In Silico and In Vitro Studies Against Different Enzymes of Cancer

机译:从八角形丛丛中分离出的前列腺素:对癌症的不同酶的计算机和体外研究。

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摘要

Prostaglandin A -AcMe ( ) and Prostaglandin A ( ) were isolated from the octocoral and three semisynthetic derivatives ( – ) were then obtained using a reduction protocol. All compounds were identified through one- and two-dimensional (1D and 2D) nuclear magnetic resonance (NMR) experiments. Additionally, evaluation of in vitro cytotoxic activity against the breast (MDA-MB-213) and lung (A549) cancer cell lines, in combination with enzymatic activity and molecular docking studies with the enzymes p38α-kinase, Src-kinase, and topoisomerase IIα, were carried out for compounds – in order to explore their potential as inhibitors of cancer-related molecular targets. Results showed that prostaglandin A ( ) was the most potent compound with an IC of 16.46 and 25.20 μg/mL against MDA-MB-213 and A549 cell lines, respectively. In addition, this compound also inhibited p38α-kinase in 49% and Src-kinase in 59% at 2.5 μM, whereas topoisomerase IIα was inhibited in 64% at 10 μM. Enzymatic activity was found to be consistent with molecular docking simulations, since compound also showed the lowest docking scores against the topoisomerase IIα and Src-kinase (−8.7 and −8.9 kcal/mol, respectively). Thus, molecular docking led to establish some insights into the predicted binding modes. Results suggest that prostaglandin 2 can be considered as a potential lead for development inhibitors against some enzymes present in cancer processes.
机译:前列腺素A -AcMe()和前列腺素A()从八齿口中分离得到。 然后使用还原规程获得了三个半合成衍生物(-)。通过一维和二维(1D和2D)核磁共振(NMR)实验鉴定了所有化合物。此外,结合酶促活性和酶p38α-激酶,Src激酶和拓扑异构酶IIα的分子对接研究,评估了对乳腺癌(MDA-MB-213)和肺癌(A549)癌细胞系的体外细胞毒性活性对化合物进行了研究,以探索其作为癌症相关分子靶标抑制剂的潜力。结果显示,前列腺素A()是最有效的化合物,对MDA-MB-213和A549细胞系的IC分别为16.46和25.20μg/ mL。另外,在2.5μM时,该化合物还抑制了49%的p38α激酶和在59%时抑制了Src激酶,而在10μM时,拓扑异构酶IIα抑制了64%。发现酶活性与分子对接模拟一致,因为该化合物对拓扑异构酶IIα和Src激酶的对接分数最低(分别为-8.7和-8.9 kcal / mol)。因此,分子对接导致建立了对预测的结合模式的一些见解。结果表明,前列腺素2可以被认为是抗癌过程中某些酶的发展抑制剂的潜在先导。

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