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新型抗血管生成海洋天然产物骨架的发现

Discovery of Novel Antiangiogenic Marine Natural Product Scaffolds.

作者信息

Ebrahim Hassan Y, El Sayed Khalid A

机构信息

Department of Basic Pharmaceutical Sciences, School of Pharmacy, University of Louisiana at Monroe, 1800 Bienville Drive, Monroe, LA 71201, USA.

出版信息

Mar Drugs. 2016 Mar 11;14(3):57. doi: 10.3390/md14030057.

Abstract

Marine natural products (MNPs) are recognized for their structural complexity, diversity, and novelty. The vast majority of MNPs are pharmacologically relevant through their ability to modulate macromolecular targets underlying human diseases. Angiogenesis is a fundamental process in cancer progression and metastasis. Targeting angiogenesis through selective modulation of linked protein kinases is a valid strategy to discover novel effective tumor growth and metastasis inhibitors. An in-house marine natural products mini-library, which comprises diverse MNP entities, was submitted to the Lilly's Open Innovation Drug Discovery platform. Accepted structures were subjected to in vitro screening to discover mechanistically novel angiogenesis inhibitors. Active hits were subjected to additional angiogenesis-targeted kinase profiling. Some natural and semisynthetic MNPs, including multiple members of the macrolide latrunculins, the macrocyclic oxaquinolizidine alkaloid araguspongine C, and the sesquiterpene quinone puupehenone, showed promising results in primary and secondary angiogenesis screening modules. These hits inhibited vascular endothelial growth factor (VEGF)-mediated endothelial tube-like formation, with minimal cytotoxicity at relevant doses. Secondary kinase profiling identified six target protein kinases, all involved in angiogenesis signaling pathways. Molecular modeling and docking experiments aided the understanding of molecular binding interactions, identification of pharmacophoric epitopes, and deriving structure-activity relationships of active hits. Marine natural products are prolific resources for the discovery of chemically and mechanistically unique selective antiangiogenic scaffolds.

摘要

海洋天然产物(MNPs)因其结构复杂性、多样性和新颖性而受到认可。绝大多数MNPs通过调节人类疾病潜在的大分子靶点而具有药理学相关性。血管生成是癌症进展和转移中的一个基本过程。通过选择性调节相关蛋白激酶来靶向血管生成是发现新型有效肿瘤生长和转移抑制剂的有效策略。一个包含多种MNP实体的内部海洋天然产物小型文库被提交到礼来公司的开放创新药物发现平台。对被接受的结构进行体外筛选,以发现具有新机制的血管生成抑制剂。对活性命中物进行额外的血管生成靶向激酶分析。一些天然和半合成的MNPs,包括大环内酯类拉春库林的多个成员、大环氧化喹嗪生物碱阿拉古海绵碱C和倍半萜醌普乌佩烯酮,在一级和二级血管生成筛选模块中显示出有前景的结果。这些命中物抑制血管内皮生长因子(VEGF)介导的内皮管样形成,在相关剂量下细胞毒性最小。二级激酶分析确定了六种靶蛋白激酶,均参与血管生成信号通路。分子建模和对接实验有助于理解分子结合相互作用、识别药效团表位以及推导活性命中物的构效关系。海洋天然产物是发现化学和机制独特的选择性抗血管生成支架的丰富资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f91/4820311/6675d02dcdcd/marinedrugs-14-00057-g001.jpg

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