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Brassica-Derived Plant Bioactives as Modulators of Chemopreventive and Inflammatory Signaling Pathways

机译:芸苔属植物生物活性物质作为化学预防和炎症信号通路的调节剂

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摘要

A high consumption of vegetables belonging to the Brassicaceae family has been related to a lower incidence of chronic diseases including different kinds of cancer. These beneficial effects of, e.g., broccoli, cabbage or rocket (arugula) intake have been mainly dedicated to the sulfur-containing glucosinolates (GLSs)—secondary plant compounds nearly exclusively present in Brassicaceae—and in particular to their bioactive breakdown products including isothiocyanates (ITCs). Overall, the current literature indicate that selected Brassica-derived ITCs exhibit health-promoting effects in vitro, as well as in laboratory mice in vivo. Some studies suggest anti-carcinogenic and anti-inflammatory properties for ITCs which may be communicated through an activation of the redox-sensitive transcription factor nuclear factor erythroid 2–related factor 2 (Nrf2) that controls the expression of antioxidant and phase II enzymes. Furthermore, it has been shown that ITCs are able to significantly ameliorate a severe inflammatory phenotype in colitic mice in vivo. As there are studies available suggesting an epigenetic mode of action for Brassica-derived phytochemicals, the conduction of further studies would be recommendable to investigate if the beneficial effects of these compounds also persist during an irregular consumption pattern.
机译:属于十字花科的蔬菜的大量食用与包括各种癌症在内的慢性疾病的发生率较低有关。摄入西兰花,卷心菜或火箭(芝麻菜)的这些有益作用主要针对含硫芥子油苷(GLSs)-十字花科几乎只存在的次生植物化合物,尤其是其生物活性分解产物,包括异硫氰酸盐( ITC)。总体而言,当前文献表明,选定的芸苔属来源的ITC在体外以及在体内的实验小鼠中均表现出促进健康的作用。一些研究表明,ITC的抗癌和抗炎特性可以通过激活氧化还原敏感的转录因子核因子红系2相关因子2(Nrf2)来表达,该因子控制抗氧化剂和II期酶的表达。此外,已经表明,ITC能够在体内显着改善结肠炎小鼠中的严重炎症表型。由于已有研究表明芸苔属植物化学物质的表观遗传作用方式,因此建议进行进一步研究以研究这些化合物的有益作用在不规则食用模式下是否仍然存在。

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