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Molecular mechanisms of flavonoids in melanin synthesis and the potential for the prevention and treatment of melanoma

机译:黄酮类化合物在黑色素合成中的分子机制及其在黑色素瘤防治中的潜力

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摘要

Flavonoids are becoming popular nutraceuticals. Different flavonoids show similar or distinct biological effects on different tissues or cell types, which may limit or define their usefulness in cancer prevention and/or treatment application. This review focuses on a few selected flavonoids and discusses their functions in normal and transformed pigment cells, including cyanidin, apigenin, genistein, fisetin, EGCG, luteolin, baicalein, quercetin and kaempferol. Flavonoids exhibit melanogenic or anti-melanogenic effects mainly via transcriptional factor MiTF and/or the melanogenesis enzymes tyrosinase, DCT2 or TYRP-1. To identify a direct target has been a challenge as most studies were not able to discriminate whether the effect(s) of the flavonoid were from direct targeting or represented indirect effects. Flavonoids exhibit an anti-melanoma effect via inhibiting cell proliferation and invasion and inducing apoptosis. The mechanisms are also multi-fold, via ROS-scavenging, immune-modulation, cell cycle regulation and epigenetic modification including DNA methylation and histone deacetylation. In summary, although many flavonoid compounds are extremely promising nutraceuticals, their detailed molecular mechanism and their multi-target (simultaneously targeting multiple molecules) nature warrant further investigation before advancement to translation studies or clinical trials.
机译:黄酮类化合物正成为流行的保健食品。不同的类黄酮对不同的组织或细胞类型表现出相似或不同的生物学作用,这可能会限制或限定其在癌症预防和/或治疗应用中的用途。这篇综述着重于一些选定的类黄酮,并讨论了它们在正常和转化的色素细胞中的功能,包括花色素,芹菜素,染料木黄酮,非瑟酮,EGCG,木犀草素,黄ical素,槲皮素和山ka酚。类黄酮主要通过转录因子MiTF和/或黑色素生成酶酪氨酸酶,DCT2或TYRP-1表现出黑色素生成或抗黑色素生成作用。鉴定直接靶标一直是一个挑战,因为大多数研究都无法区分类黄酮的作用是直接靶向还是间接作用。类黄酮通过抑制细胞增殖和侵袭并诱导细胞凋亡而表现出抗黑素瘤作用。通过ROS清除,免疫调节,细胞周期调节和表观遗传修饰(包括DNA甲基化和组蛋白脱乙酰基化),该机制也是多种多样的。总之,尽管许多类黄酮化合物是极有前途的保健食品,但它们的详细分子机制及其多靶点(同时靶向多个分子)的性质仍需进一步研究,然后才能进行翻译研究或临床试验。

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