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关于藏红花主要类胡萝卜素藏红花素的抗癌机制的综合综述。

A comprehensive review on anticancer mechanisms of the main carotenoid of saffron, crocin.

机构信息

Cellular and Molecular Research Center, Birjand University of Medical Sciences, Birjand, Iran.

Department of Biochemistry, Birjand University of Medical Sciences, Birjand, Iran.

出版信息

J Pharm Pharmacol. 2017 Nov;69(11):1419-1427. doi: 10.1111/jphp.12776. Epub 2017 Jul 3.

Abstract

OBJECTIVES

Crocin is derived from dried stigmas of Crocus sativus L. (saffron). It has long been used to prevent and treat various diseases. Although crocin is suggested as one of the most effective cancer therapeutic constituents of saffron stigma, its exact molecular mechanisms are not fully understood. In this study, we reviewed anticancer effects of crocin and its underlying molecular mechanisms.

KEY FINDINGS

While several mechanisms may account for the antitumour activity of crocin, alteration of expression/activity of the genes and also epigenetic changes may be considered as necessary phenomena. These alternations may lead to inhibition of cancer cells' proliferation or/and induction of apoptosis through various mechanism including inhibition of synthesis of DNA and RNA, interaction with cellular topoisomerase, suppression of the telomerase activity and active STAT3, and targeting of microtubules. Moreover, this carotenoid could reverse the epithelial-mesenchymal transition and inhibit metastasis.

CONCLUSIONS

Knowing molecular mechanisms of antitumoral agents could guide us to choose the best chemotherapeutic compound especially for targeted therapy and also provide insights about possible side effects.

摘要

目的

藏红花苷来源于藏红花(番红花)的干燥柱头。它长期以来一直被用于预防和治疗各种疾病。虽然藏红花被认为是藏红花柱头最有效的癌症治疗成分之一,但它的确切分子机制尚不完全清楚。在本研究中,我们综述了藏红花苷的抗癌作用及其潜在的分子机制。

主要发现

虽然有几种机制可以解释藏红花苷的抗肿瘤活性,但基因表达/活性的改变以及表观遗传变化也可能被认为是必要的现象。这些改变可能通过多种机制抑制癌细胞的增殖或诱导细胞凋亡,包括抑制 DNA 和 RNA 的合成、与细胞拓扑异构酶相互作用、抑制端粒酶活性和激活 STAT3 以及靶向微管。此外,这种类胡萝卜素可以逆转上皮-间充质转化并抑制转移。

结论

了解抗肿瘤药物的分子机制可以指导我们选择最佳的化疗药物,特别是靶向治疗,并提供有关可能的副作用的见解。

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