Department of Biochemistry (U38-FCT), Faculty of Medicine, University of Porto, Al. Prof. Hernâni Monteiro, 4200-319 Porto, Portugal.
Food Funct. 2011 Jan;2(1):39-44. doi: 10.1039/c0fo00100g. Epub 2010 Nov 17.
The identification of mechanisms associated with phenolic neuroprotection is delayed due to a lack of information regarding the ability of phenolic compounds to enter the central nervous system (CNS). The aim of this work was to evaluate the transmembrane transport of catechin and epicatechin across blood-brain barrier (BBB). Two BBB cell lines, RBE-4 cells (immortalized cell line of rat capillary cerebral endothelial cells) and hCMEC/D3 (immortalized human cerebral microvessel endothelial cell line), were used. HPLC-DAD/MS was used to detect these compounds and their metabolites in the studied samples. The metabolites of the tested flavan-3-ols were synthesized to be used as standards. Catechin and epicatechin could cross both cells in a time-dependent manner. This transport was stereoselective (epicatechin ≫ catechin), involving one or more stereoselective entities. Additionally, these cells were capable of metabolizing these compounds, particularly by conjugation with glucuronic acid, since this metabolite was detected in the basolateral media. Several studies suggest that blood levels of catechin and epicatechin are far below the levels used in this study and that these compounds appeared mainly as methyl, sulfate and glucuronide metabolites. Nevertheless, the information obtained by this study is valuable for the new insights about flavan-3-ols transport.
(i) catechin and epicatechin are capable of crossing the BBB; (ii) a stereoselective process was involved in the passage of these compounds across BBB cells; (iii) these endothelial cells have enzymes capable of metabolizing these compounds.
评估儿茶素和表儿茶素跨血脑屏障(BBB)的跨膜转运。
使用两种 BBB 细胞系,RBE-4 细胞(大鼠毛细血管脑内皮细胞的永生化细胞系)和 hCMEC/D3(永生化人脑血管内皮细胞系)。使用 HPLC-DAD/MS 检测研究样品中的这些化合物及其代谢物。合成测试黄烷-3-醇的代谢物作为标准品。儿茶素和表儿茶素可以以时间依赖性方式穿过两种细胞。这种转运是立体选择性的(表儿茶素>儿茶素),涉及一个或多个立体选择性实体。此外,这些细胞能够代谢这些化合物,特别是通过与葡萄糖醛酸结合,因为在基底外侧介质中检测到这种代谢物。几项研究表明,血液中的儿茶素和表儿茶素水平远低于本研究中使用的水平,并且这些化合物主要以甲基、硫酸盐和葡萄糖醛酸代谢物的形式出现。尽管如此,本研究获得的信息对于了解黄烷-3-醇的转运具有重要价值。
(i)儿茶素和表儿茶素能够穿过 BBB;(ii)这些化合物穿过 BBB 细胞的过程涉及立体选择性过程;(iii)这些内皮细胞具有能够代谢这些化合物的酶。