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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Optimization, pharmacophore modeling and 3D-QSAR studies of sipholanes as breast cancer migration and proliferation inhibitors
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Optimization, pharmacophore modeling and 3D-QSAR studies of sipholanes as breast cancer migration and proliferation inhibitors

机译:西番莲作为乳腺癌迁移和增殖抑制剂的优化,药效基团建模和3D-QSAR研究

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Sipholenol A, a triterpene isolated from the Red Sea sponge Callyspongia siphonella, was previously shown to reverse multidrug resistance in P-glycoprotein-overexpressing cancer cells. Moreover, sipholanes showed promising in vitro inhibitory effects against the invasion and migration of the metastatic human breast cancer cell line MDA-MB-231. The breast tumor kinase (Brk), a mediator of cancer cell phenotypes important for proliferation, survival, and migration, was proposed as a potential target. This study reports additional semisynthetic optimization of sipholenol A esters to improve the breast cancer antimigratory and antiproliferative activities as well as Brk phosphorylation inhibition. Fifteen new sipholenol A analogs (25-39) were semisynthesized. Sipholenol A 4β-4′,5′-dichlorobenzoate ester (29) was the most potent, with an IC50 value of 1.3 μM in the migration assay. The level of Brk phosphorylation inhibition of 29 was assessed using the Z′-LYTE? kinase assay and Western blot analysis. Active analogs showed no toxicity on the non-tumorigenic epithelial breast cell line MCF10A at doses equal to their IC50 values or higher in migration and proliferation assays, suggesting their selectivity towards malignant cells. Pharmacophore modeling and 3D-QSAR studies were conducted to identify important pharmacophoric features and correlate 3D-chemical structure with activity. These studies provided the evidence for future design of novel antimigratory compounds based on a simplified sipholane structure possessing rings A and B (perhydrobenzoxepine) connected to substituted aromatic esters, with the elimination of rings C and D ([5,3,0]bicyclodecane system). This will enable the future synthesis of the new active entities feasibly and cost-effectively. These results demonstrate the potential of marine natural products for the discovery of novel scaffolds for the control and management of metastatic breast cancer.
机译:从红海海绵Callyspongia siphonella中分离出的三萜烯Sipholenol A先前已显示出可以逆转过表达P-糖蛋白的癌细胞的多药耐药性。此外,西番莲显示出对转移的人乳腺癌细胞系MDA-MB-231的侵袭和迁移有希望的体外抑制作用。乳腺癌肿瘤激酶(Brk)是癌细胞表型对增殖,存活和迁移重要的介体,被提议作为潜在靶标。这项研究报告了西佛来酚A酯的其他半合成优化,以改善乳腺癌的抗迁移和抗增殖活性以及Brk磷酸化抑制作用。半合成了十五个新的西酚A类似物(25-39)。西佛烯酚A4β-4',5'-二氯苯甲酸酯(29)最有效,在迁移分析中IC50值为1.3μM。用Z′-LYTE 2评估29的Brk磷酸化抑制水平。激酶测定和蛋白质印迹分析。活性类似物在迁移和增殖试验中,以等于其IC50值或更高的剂量,对非致瘤上皮性乳腺癌细胞MCF10A无毒性,表明它们对恶性细胞的选择性。进行了药理学建模和3D-QSAR研究,以鉴定重要的药效学特征并将3D化学结构与活性相关联。这些研究为进一步设计新型抗迁移化合物提供了依据,该化合物基于具有环A和B(全氢苯并人庚烷)与取代的芳族酯连接的简化的七烷结构,并消除了环C和D([5,3,0]双环癸烷体系)。这将使未来的新活动实体可行且具有成本效益。这些结果证明了海洋天然产物在发现用于控制和管理转移性乳腺癌的新型支架中的潜力。

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