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首页> 外文期刊>Nutrients >The Role of MicroRNAs in the Chemopreventive Activity of Sulforaphane from Cruciferous Vegetables
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The Role of MicroRNAs in the Chemopreventive Activity of Sulforaphane from Cruciferous Vegetables

机译:MicroRNA在十字花科蔬菜中萝卜硫素的化学预防活性中的作用。

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Colorectal cancer is an increasingly significant cause of mortality whose risk is linked to diet and inversely correlated with cruciferous vegetable consumption. This is likely to be partly attributable to the isothiocyanates derived from eating these vegetables, such as sulforaphane, which is extensively characterised for cytoprotective and tumour-suppressing activities. However, its bioactivities are likely to extend in complexity beyond those currently known; further insight into these bioactivities could aid the development of sulforaphane-based chemopreventive or chemotherapeutic strategies. Evidence suggests that sulforaphane modulates the expression of microRNAs, many of which are known to regulate genes involved at various stages of colorectal carcinogenesis. Based upon existing knowledge, there exist many plausible mechanisms by which sulforaphane may regulate microRNAs. Thus, there is a strong case for the further investigation of the roles of microRNAs in the anti-cancer effects of sulforaphane. There are several different types of approach to the wide-scale profiling of microRNA differential expression. Array-based methods may involve the use of RT-qPCR or complementary hybridisation probe chips, and tend to be relatively fast and economical. Cloning and deep sequencing approaches are more expensive and labour-intensive, but are worth considering where viable, for their greater sensitivity and ability to detect novel microRNAs.
机译:大肠癌是日益重要的死亡原因,其风险与饮食有关,与十字花科蔬菜的消费量成反比。这很可能部分归因于食用这些蔬菜所产生的异硫氰酸盐,例如萝卜硫烷,其特征在于具有细胞保护和抑癌活性。但是,它的生物活性可能会扩展到目前已知的范围之外。对这些生物活性的进一步了解可能有助于开发基于萝卜硫烷的化学预防或化学治疗策略。有证据表明,萝卜硫烷可调节microRNA的表达,已知其中许多可调节与大肠癌发生不同阶段有关的基因。基于现有的知识,存在许多可能的机制,萝卜硫烷可以通过这些机制调节微小RNA。因此,有必要进一步研究microRNA在萝卜硫烷的抗癌作用中的作用。有多种不同类型的方法可对microRNA差异表达进行大规模分析。基于阵列的方法可能涉及RT-qPCR或互补杂交探针芯片的使用,并且往往相对较快且经济。克隆和深度测序方法较为昂贵且劳动强度大,但值得一提的是可行的方法,因为它们具有更高的灵敏度和检测新型microRNA的能力。

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