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原花青素对Caco-2细胞中MPP+摄取的调节作用:氧化/还原反应的参与

Modulation of MPP+ uptake by procyanidins in Caco-2 cells: involvement of oxidation/reduction reactions.

作者信息

Faria Ana, Mateus Nuno, de Freitas Vítor, Calhau Conceição

机构信息

Department of Biochemistry (U38-FCT), Faculty of Medicine of the University of Porto, Al. Prof. Hernani Monteiro, 4200-319 Porto, Portugal.

出版信息

FEBS Lett. 2006 Jan 9;580(1):155-60. doi: 10.1016/j.febslet.2005.11.068. Epub 2005 Dec 6.

Abstract

It is becoming increasingly evident that the absorption of certain nutrients and drugs and their effects are largely influenced by the concomitant ingestion of other substances. As various xeno- and endobiotics belong to the class of organic cations, the aim of this work was to study the modulation of the intestinal apical uptake of organic cations by diet procyanidins. Five procyanidin fractions with different structural complexity were obtained after fractionation of a grape seed extract. The effect of these compounds on 1-methyl-4-phenylpyridinium (MPP+) uptake was evaluated in Caco-2 cells. Apical uptake of 3H-MPP+ by Caco-2 cells was increased by a 60 min exposure to 600 microg ml(-1) of procyanidin fractions, that increase being positively related with procyanidins structural complexity. It was verified that 3H-MPP+ uptake increased with preincubation time. It was speculated that procyanidins were oxidized during preincubation, this change could interfered with transport activity. Tested oxidizing agents showed that the redox state of the transporter could affect its activity. Additionally, trans-stimulation experiments showed that catechin and fraction I (the simpler fraction) can use the same transporter as MPP+. The results are compatible with the hypothesis of these compounds being competitive inhibitors of MPP+ transport. In conclusion, procyanidins are capable to modulate MPP+ apical uptake in Caco-2 cells, this transport being most probably modulated through oxidation-reduction phenomena. Interactions between these compounds and drugs present in the diet may affect their absorption and bioavailability. Both the concentration and complexity of the procyanidin compounds should be taken into account in medical practice.

摘要

越来越明显的是,某些营养素和药物的吸收及其效果在很大程度上受到其他物质同时摄入的影响。由于各种外源性和内源性生物活性物质属于有机阳离子类别,这项工作的目的是研究饮食中的原花青素对肠道顶端有机阳离子摄取的调节作用。葡萄籽提取物分级分离后获得了五个结构复杂性不同的原花青素级分。在Caco-2细胞中评估了这些化合物对1-甲基-4-苯基吡啶鎓(MPP+)摄取的影响。Caco-2细胞对3H-MPP+的顶端摄取在暴露于600μg ml(-1)的原花青素级分60分钟后增加,这种增加与原花青素的结构复杂性呈正相关。证实3H-MPP+摄取随预孵育时间增加。推测原花青素在预孵育过程中被氧化,这种变化可能会干扰转运活性。测试的氧化剂表明转运体的氧化还原状态可能影响其活性。此外,反式刺激实验表明儿茶素和级分I(较简单的级分)可以与MPP+使用相同的转运体。结果与这些化合物是MPP+转运的竞争性抑制剂的假设相符。总之,原花青素能够调节Caco-2细胞中MPP+的顶端摄取,这种转运很可能是通过氧化还原现象调节的。这些化合物与饮食中存在的药物之间的相互作用可能会影响它们的吸收和生物利用度。在医学实践中应考虑原花青素化合物的浓度和复杂性。

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