癌症化学预防-选择分子机制。

IF 0.3
Katarzyna Walczak, Sebastian Marciniak, Grażyna Rajtar
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引用次数: 20

摘要

多年来,饮食对癌症形成和预防的影响引起了相当大的关注,是几项研究的主题。日常饮食中的一些成分,如白藜芦醇、姜黄素、染料木素、姜辣素,可以显著降低患癌症的风险或影响肿瘤进展的速度。癌症化学预防是指使用天然或合成的生物活性物质来预防、抑制或逆转癌症的进展。在一些天然产品中有许多生物活性化合物,如大蒜、姜、大豆、姜黄、西红柿、十字花科植物或绿茶。它们的化学预防活性是基于对潜在癌变过程(炎症、转化和增殖)的抑制,但也影响癌变的最后阶段——血管生成和转移。尽管化学预防剂的毒性相对较低,但它们的分子靶点往往与目前使用的癌症治疗的目标一致。化学预防药物的广泛应用可能有助于降低癌症发病率,并提高传统癌症治疗的有效性。在本研究中,对化学预防活性的分子机制进行了讨论,特别是它们参与信号转导,细胞周期调节,细胞凋亡,转移和血管生成的调节。化学预防剂在炎症过程中的作用,外源性药物的代谢和多药耐药也被表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cancer chemoprevention - selected molecular mechanisms.

The effect of diet on cancer formation and prevention of carcinogenesis has attracted considerable attention for years and is the subject of several studies. Some components of the daily diet, such as resveratrol, curcumin, genistein, gingerol, can significantly reduce the risk of cancer or affect the rate of tumor progression. Cancer chemoprevention assumes the use of natural or synthetic biologically active substances in order to prevent, inhibit or reverse the progression of cancer. There are many biologically active compounds in several natural products, i.e. garlic, ginger, soy, curcuma, tomatoes, cruciferous plants or green tea. Their chemopreventive activity is based on the inhibition of processes underlying carcinogenesis (inflammation, transformation and proliferation), but also affects the final phase of carcinogenesis - angiogenesis and metastasis. Despite the relatively low toxicity of chemopreventive agents, their molecular targets often coincide with the objectives of the currently used cancer therapies. The widespread use of chemopreventive agents may contribute to reduction of the rate of cancer incidence, and increase the effectiveness of conventional cancer therapies. In the present study, selected molecular mechanisms of the chemopreventive activity have been discussed, especially their involvement in the regulation of signal transduction, cell cycle regulation, apoptosis, metastasis and angiogenesis. The role of chemopreventive agents in the inflammatory process, the metabolism of xenobiotics and multidrug resistance has been also characterized.

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