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食用十字花科蔬菜产生的硫代葡萄糖苷水解产物在诱导抗氧化活性和降低癌症发病率中的作用。

The Role of Glucosinolate Hydrolysis Products from Brassica Vegetable Consumption in Inducing Antioxidant Activity and Reducing Cancer Incidence.

作者信息

Becker Talon M, Juvik John A

机构信息

Department of Crop Sciences, University of Illinois at Urbana-Champaign, Urbana, IL 61801-3838, USA.

出版信息

Diseases. 2016 Jun 17;4(2):22. doi: 10.3390/diseases4020022.

Abstract

The bioactivity of glucosinolates (GSs), and more specifically their hydrolysis products (GSHPs), has been well documented. These secondary metabolites evolved in the order Brassicales as plant defense compounds with proven ability to deter or impede the growth of several biotic challenges including insect infestation, fungal and bacterial infection, and competition from other plants. However, the bioactivity of GSHPs is not limited to activity that inhibits these kingdoms of life. Many of these compounds have been shown to have bioactivity in mammalian systems as well, with epidemiological links to cancer chemoprevention in humans supported by , , and small clinical studies. Although other chemopreventive mechanisms have been identified, the primary mechanism believed to be responsible for the observed chemoprevention from GSHPs is the induction of antioxidant enzymes, such as NAD(P)H quinone reductase (NQO1), heme oxygenase 1 (HO-1), glutamate-cysteine ligase catalytic subunit (GCLC), and glutathione S transferases (GSTs), through the Keap1-Nrf2-ARE signaling pathway. Induction of this pathway is generally associated with aliphatic isothiocyanate GSHPs, although some indole-derived GSHPs have also been associated with induction of one or more of these enzymes.

摘要

硫代葡萄糖苷(GSs),更具体地说是其水解产物(GSHPs)的生物活性已有充分记载。这些次生代谢产物在十字花目植物中演化形成,作为植物防御化合物,已证实具有阻止或阻碍多种生物挑战的能力,包括昆虫侵袭、真菌和细菌感染以及来自其他植物的竞争。然而,GSHPs的生物活性并不局限于抑制这些生物界的活性。许多这类化合物在哺乳动物系统中也已显示出生物活性,有、和小型临床研究支持其与人类癌症化学预防的流行病学关联。尽管已确定了其他化学预防机制,但据信GSHPs所观察到的化学预防作用的主要机制是通过Keap1-Nrf2-ARE信号通路诱导抗氧化酶,如NAD(P)H醌还原酶(NQO1)、血红素加氧酶1(HO-1)、谷氨酸-半胱氨酸连接酶催化亚基(GCLC)和谷胱甘肽S-转移酶(GSTs)。该信号通路的诱导通常与脂肪族异硫氰酸酯GSHPs相关,尽管一些吲哚衍生的GSHPs也与这些酶中的一种或多种的诱导有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff52/5456278/70046d08c9d8/diseases-04-00022-g001.jpg

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