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Yin and Yang of Polyphenols in Cancer Prevention: A Short Review

机译:多酚的阴阳预防癌症简述

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The ability to accumulate polyphenols with light absorbance allowed early land plants to resist UV irradiation and made survival on land possible. Largely consumed, polyphenols are not synthesized by human being. Present only in plants and some microorganisms, the number of described phenolic compounds (over 8000), is increasing due to the continual evolution of new genes and mutations in response to the adaptation to environmental changes. A wide range of biological studies revealed the antioxidant properties of polyphenols towards human pathologies such as cancer. The health benefits of polyphenols, however, depend on their amount ingested and on their bioavailability. Many factors have great influence on bioavailability of polyphenols such as the climate, agricultural practices, industrial processes and the host microbiota considered to act as a metabolic organ with an important role in human metabolism. The polyphenols anticancer effect relies on their chemical structure, concentration and on the type of cancer. The biological activity of polyphenols has been extensively studied in preclinical assays. Some polyphenols can overcome cancer chemotherapeutic resistance by modulating cancer cells with multiple drug resistance (MDR) overexpression phenotype. In solid tumours and hematological malignances, polyphenols, exert an important role in apoptosis induction, cell growth inhibition, cell cycle arrest, oxidative stress, and in cell migration and differentiation. The combination of flavonoids and chemotherapy seems to be an interesting approach for cancer treatment. In addition, some points related to the polyphenols bioavailability and delivery needs to be elucidated in order to improve their biological effects in vivo.
机译:能够吸收光吸收的多酚,使早期的陆地植物能够抵抗紫外线辐射,并有可能在陆地上生存。大量消耗的多酚不是人类合成的。由于适应环境变化的新基因和突变的不断进化,仅存在于植物和某些微生物中的酚类化合物(超过8000种)的数量正在增加。广泛的生物学研究揭示了多酚对人类疾病(例如癌症)的抗氧化特性。但是,多酚对健康的益处取决于其摄入的量和生物利用度。许多因素对多酚的生物利用度有很大影响,例如气候,农业实践,工业过程以及被认为是在人类代谢中起重要作用的代谢器官的宿主菌群。多酚的抗癌作用取决于其化学结构,浓度和癌症类型。在临床前测定中已经对多酚的生物活性进行了广泛的研究。一些多酚可以通过调节具有多重耐药性(MDR)过表达表型的癌细胞来克服癌症的化疗耐药性。在实体瘤和血液系统恶性肿瘤中,多酚在细胞凋亡诱导,细胞生长抑制,细胞周期停滞,氧化应激以及细胞迁移和分化中起重要作用。类黄酮和化学疗法的结合似乎是一种有趣的癌症治疗方法。另外,与多酚生物利用度和递送有关的一些点需要阐明,以改善其在体内的生物学作用。

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