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首页> 外文期刊>Current pharmaceutical design >Lesson Learned from Nature for the Development of Novel Anti-Cancer Agents: Implication of Isoflavone, Curcumin, and their Synthetic Analogs.
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Lesson Learned from Nature for the Development of Novel Anti-Cancer Agents: Implication of Isoflavone, Curcumin, and their Synthetic Analogs.

机译:从自然界学到的有关开发新型抗癌药的经验教训:异黄酮,姜黄素及其合成类似物的含义。

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摘要

In recent years, naturally occurring dietary compounds have received greater attention in the field of cancer prevention and treatment research. Among them, isoflavone genistein and curcumin are very promising anti-cancer agents because of their non-toxic and potent anti-cancer properties. However, it is important to note that the low water solubility, poor in vivo bioavailability and unacceptable pharmacokinetic profile of these natural compounds limit their efficacy as anti-cancer agents for solid tumors. Therefore, the development of synthetic analogs of isoflavone and curcumin based on the structure-activity assay, and the encapsulation of isoflavone and curcumin with liposome or nanoparticle for enhancing the anti-tumor activity of these natural agents, is an exciting area of research. Emerging in vitro and in vivo studies clearly suggest that these analogs and formulations of natural compounds could be much more potent for the prevention and/or treatment of various cancers. In this review article, we will summarize the current knowledge regarding the anti-cancer effect of natural compounds and their analogs, the regulation of cell signaling by these agents, and the structure-activity relationship for better design of novel anti-cancer agents, which could open newer avenues for the prevention of tumor progression and/or treatment of human malignancies.
机译:近年来,天然存在的饮食化合物在癌症预防和治疗研究领域中受到了更大的关注。其中,异黄酮金雀异黄素和姜黄素由于其无毒和有效的抗癌特性而成为非常有前途的抗癌剂。然而,重要的是要注意,这些天然化合物的低水溶性,低体内生物利用度和不可接受的药代动力学特征限制了它们作为实体瘤抗癌药的功效。因此,基于结构活性测定法开发异黄酮和姜黄素的合成类似物,以及用脂质体或纳米颗粒包裹异黄酮和姜黄素以增强这些天然药物的抗肿瘤活性,是令人兴奋的研究领域。新兴的体外和体内研究清楚地表明,这些类似物和天然化合物的制剂在预防和/或治疗各种癌症方面可能更加有效。在这篇综述文章中,我们将总结有关天然化合物及其类似物的抗癌作用,这些药物对细胞信号传导的调控以及与新型抗癌药物更好设计之间的结构-活性关系的最新知识。可以为预防肿瘤进展和/或治疗人类恶性肿瘤开辟新途径。

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