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Marine Mollusk‐Derived Agents with Antiproliferative Activity as Promising Anticancer Agents to Overcome Chemotherapy Resistance

机译:具有抗增殖活性的海洋软体动物衍生药物有望克服化学疗法的耐药性

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摘要

The chemical investigation of marine mollusks has led to the isolation of a wide variety of bioactive metabolites, which evolved in marine organisms as favorable adaptations to survive in different environments. Most of them are derived from food sources, but they can be also biosynthesized de novo by the mollusks themselves, or produced by symbionts. Consequently, the isolated compounds cannot be strictly considered as “chemotaxonomic markers” for the different molluscan species. However, the chemical investigation of this phylum has provided many compounds of interest as potential anticancer drugs that assume particular importance in the light of the growing literature on cancer biology and chemotherapy. The current review highlights the diversity of chemical structures, mechanisms of action, and, most importantly, the potential of mollusk‐derived metabolites as anticancer agents, including those biosynthesized by mollusks and those of dietary origin. After the discussion of dolastatins and kahalalides, compounds previously studied in clinical trials, the review covers potentially promising anticancer agents, which are grouped based on their structural type and include terpenes, steroids, peptides, polyketides and nitrogen‐containing compounds. The “promise” of a mollusk‐derived natural product as an anticancer agent is evaluated on the basis of its ability to target biological characteristics of cancer cells responsible for poor treatment outcomes. These characteristics include high antiproliferative potency against cancer cells in vitro, preferential inhibition of the proliferation of cancer cells over normal ones, mechanism of action via nonapoptotic signaling pathways, circumvention of multidrug resistance phenotype, and high activity in vivo, among others. The review also includes sections on the targeted delivery of mollusk‐derived anticancer agents and solutions to their procurement in quantity.
机译:海洋软体动物的化学研究已导致分离出多种生物活性代谢物,这些代谢物是在海洋生物中进化的,是在不同环境中生存的有利适应。它们中的大多数来源于食物,但是它们也可以由软体动物自身重新合成,或者由共生体合成。因此,分离出的化合物不能严格视为不同软体动物物种的“化学分类标记”。然而,对该门的化学研究提供了许多潜在的潜在抗癌药物,根据有关癌症生物学和化学疗法的文献日益增多,这些化合物特别重要。本综述着重介绍了化学结构,作用机理的多样性,最重要的是,软体动物衍生的代谢产物作为抗癌药的潜力,包括由软体动物生物合成的物质和饮食来源的物质。在讨论了以前在临床试验中研究过的化合物dolastatins和kahalalide之后,该综述涵盖了潜在有前途的抗癌药,这些抗癌药根据其结构类型进行了分组,包括萜烯,类固醇,肽,聚酮化合物和含氮化合物。基于软体动物的天然产物作为抗癌剂的“前景”,是基于其靶向导致不良治疗结果的癌细胞生物学特性的能力而进行的。这些特征包括体外对癌细胞的高抗增殖能力,与正常细胞相比优先抑制癌细胞的增殖,通过非凋亡信号通路的作用机制,规避多药耐药表型以及体内高活性等。审查还包括有关以软体动物为基础的抗癌药物的目标交付及其批量采购解决方案的部分。

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