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南非茶中二氢查尔酮类化合物(Aspalathus linearis)的 aspalathin 和 nothofagin 的体外肝生物转化及代谢产物抗氧化活性评价。

In vitro hepatic biotransformation of aspalathin and nothofagin, dihydrochalcones of rooibos (Aspalathus linearis), and assessment of metabolite antioxidant activity.

机构信息

Department of Food Science, Stellenbosch University, Private Bag X1, Matieland (Stellenbosch) 7602, South Africa.

出版信息

J Agric Food Chem. 2010 Feb 24;58(4):2214-20. doi: 10.1021/jf903917a.

Abstract

Aspalathin (2',3,4,4',6'-pentahydroxy-3'-C-beta-d-glucopyranosyldihydrochalcone) is the major flavonoid present in the South African herbal tea rooibos. In vitro metabolism of aspalathin and a structural analogue nothofagin, lacking the A ring catechol group, was investigated by monitoring the formation of glucuronyl and sulfate conjugates using Aroclor 1254 induced and uninduced rat liver microsomal and cytosolic subcellular fractions. Following glucuronidation of both aspalathin and nothofagin, HPLC-DAD, LC-MS, and LC-MS/MS analyses indicated the presence of two metabolites: one major and one minor. Only one aspalathin metabolite was obtained after sulfation, while no metabolites were observed for nothofagin. Two likely sites of conjugation for aspalathin are 4-OH or 3-OH on the A-ring. For nothofagin, the 4-OH (A-ring) and 6'-OH (B-ring) seem to be involved. The glucuronyl conjugates of aspalathin lack any radical scavenging properties in online postcolumn DPPH radical and ABTS radical cation assays. Deconjugation assays utilizing glucuronidase and sulfatase resulted in the disappearance of the metabolites, with the concomitant formation of the unconjugated form in the case of the glucuronidated product. The balance between conjugated and unconjugated forms of aspalathin could have important implications regarding its role in affecting oxidative status in intra- and extracellular environments in vivo.

摘要

Aspalathin(2',3,4,4',6'-五羟基-3'-C-β-D-吡喃葡萄糖基二氢查尔酮)是南非草药茶罗布斯塔中存在的主要类黄酮。通过监测 Aroclor 1254 诱导和未诱导的大鼠肝微粒体和胞质亚细胞部分形成的葡萄糖醛酸和硫酸盐缀合物,研究了 aspalathin 和结构类似物 nothofagin(缺乏 A 环儿茶酚基团)的体外代谢。aspalathin 和 nothofagin 进行葡萄糖醛酸化后,通过 HPLC-DAD、LC-MS 和 LC-MS/MS 分析表明存在两种代谢物:一种主要代谢物和一种次要代谢物。硫酸化后仅获得一种 aspalathin 代谢物,而 nothofagin 则没有观察到代谢物。aspalathin 的两个可能的缀合部位是 A 环上的 4-OH 或 3-OH。对于 nothofagin,似乎涉及 4-OH(A 环)和 6'-OH(B 环)。aspalathin 的葡萄糖醛酸缀合物在在线柱后 DPPH 自由基和 ABTS 自由基阳离子测定中缺乏任何清除自由基的特性。利用葡萄糖醛酸酶和硫酸酯酶进行去缀合试验导致代谢物消失,而在葡萄糖醛酸化产物的情况下,同时形成未缀合的形式。aspalathin 共轭和非共轭形式之间的平衡可能对其在体内影响细胞内外环境氧化状态的作用具有重要意义。

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