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Regulation of Selenium/Sulfur Interactions to Enhance Chemopreventive Effects: Lessons to Learn from Brassicaceae

机译:调节硒/硫相互作用提升化学预防效应:从Brassicaceae学习的课程

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摘要

Selenium (Se) is an essential trace element, which represents an integral part of glutathione peroxidase and other selenoproteins involved in the protection of cells against oxidative damage. Selenomethionine (SeMet), selenocysteine (SeCys), and methylselenocysteine (MeSeCys) are the forms of Se that occur in living systems. Se-containing compounds have been found to reduce carcinogenesis of animal models, and dietary supplemental Se might decrease cancer risk. Se is mainly taken up by plant roots in the form of selenate via high-affinity sulfate transporters. Consequently, owing to the chemical similarity between Se and sulfur (S), the availability of S plays a key role in Se accumulation owing to competition effects in absorption, translocation, and assimilation. Moreover, naturally occurring S-containing compounds have proven to exhibit anticancer potential, in addition to other bioactivities. Therefore, it is important to understand the interaction between Se and S, which depends on Se/S ratio in the plant or/and in the growth medium. Brassicaceae (also known as cabbage or mustard family) is an important family of flowering plants that are grown worldwide and have a vital role in agriculture and populations’ health. In this review we discuss the distribution and further interactions between S and Se in Brassicaceae and provide several examples of Se or Se/S biofortifications’ experiments in brassica vegetables that induced the chemopreventive effects of these crops by enhancing the production of Se- or/and S-containing natural compounds. Extensive further research is required to understand Se/S uptake, translocation, and assimilation and to investigate their potential role in producing anticancer drugs.
机译:硒(Se)是一种必要的痕量元素,其代表谷胱甘肽过氧化物酶的组成部分和其他硒蛋白,参与保护细胞免受氧化损伤。 Selenomethionine(SERENOCYSTEINE(SECES)和甲基硒细胞(MESECYS)是活性系统中发生的形式。已经发现含SE的化合物降低了动物模型的致癌,膳食补充剂SE可能会降低癌症风险。 Se主要由植物根部以硒酸盐的形式通过高亲和力硫酸盐转运蛋白占据。因此,由于SE和硫之间的化学相似性,由于吸收,易位和同化的竞争作用,S的可用性在SE积累中发挥着关键作用。此外,除了其他生物活化之外,还经过天然存在的S含S化合物表现出抗癌潜力。因此,了解SE和S之间的相互作用是重要的,这取决于植物或/和生长培养基中的SE / S比。 Brassicaceae(也称为白菜或芥末家族)是全球成长的重要开花植物的重要家庭,在农业和人口的健康方面具有重要作用。在该综述中,我们讨论了Brassicaceae的S和Se之间的分布和进一步相互作用,并提供了芸苔属蔬菜中SE或SE / S Biofization的几个实验,通过增强SE-或/和/和含S的天然化合物。需要广泛的进一步研究来了解SE / S摄取,易位和同化,并调查其在生产抗癌药物方面的潜在作用。

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