Perez-Ternero Cristina, Macià Alba, de Sotomayor Maria Alvarez, Parrado Juan, Motilva Maria-Jose, Herrera Maria-Dolores
Department of Pharmacology, School of Pharmacy, University of Seville, C/Profesor Garcia Gonzalez 2, 41012 Seville, Spain.
Food Funct. 2017 Jun 21;8(6):2165-2174. doi: 10.1039/c7fo00243b.
Rice bran is an exceptional source of such antioxidant molecules as γ-oryzanol and ferulic acid, but their bioavailability and metabolism within this matrix remain unknown. The aims of this work were to describe the oral bioavailability and metabolic pathways of the ferulic acid-derived phenolic compounds contained in a rice bran enzymatic extract (RBEE), and to determine its effect on NADPH oxidase activity. Wistar rats were administered with RBEE and sacrificed at different times over a period of 24 h to obtain plasma. An additional group was used for collection of urine and faeces over a period of 48 h. The phenolic metabolites were determined by ultra-performance liquid chromatography coupled to tandem mass spectrometry (UPLC-MS/MS), and plasma pharmacokinetic parameters were calculated. In parallel, aortic rings were incubated in the plasma of rats sacrificed 30 min after RBEE gavage, or in the presence of RBEE, ferulic acid or γ-oryzanol. Endothelin-1-induced superoxide production was recorded by lucigenin-enhanced luminescence. Twenty-five ferulic acid metabolites showing biphasic behaviour were found in the plasma, most of which were found in the urine as well, while in the faeces, colonic metabolism led to simpler phenolic compounds. Superoxide production was abrogated by phenolic compound-enriched plasma and by RBEE and ferulic acid, thus showing the biological potential of RBEE as a nutraceutical ingredient.
米糠是γ-谷维素和阿魏酸等抗氧化分子的优质来源,但其在该基质中的生物利用度和代谢情况仍不清楚。本研究的目的是描述米糠酶提取物(RBEE)中阿魏酸衍生酚类化合物的口服生物利用度和代谢途径,并确定其对NADPH氧化酶活性的影响。给Wistar大鼠灌胃RBEE,并在24小时内的不同时间点处死以获取血浆。另外设置一组在48小时内收集尿液和粪便。通过超高效液相色谱-串联质谱联用(UPLC-MS/MS)测定酚类代谢产物,并计算血浆药代动力学参数。同时,将主动脉环置于灌胃RBEE 30分钟后处死的大鼠血浆中孵育,或在有RBEE、阿魏酸或γ-谷维素存在的情况下孵育。通过光泽精增强发光记录内皮素-1诱导的超氧化物生成。在血浆中发现了25种表现出双相行为的阿魏酸代谢产物,其中大多数也存在于尿液中,而在粪便中,结肠代谢产生了更简单的酚类化合物。富含酚类化合物的血浆、RBEE和阿魏酸均可消除超氧化物的生成,从而显示出RBEE作为营养成分的生物学潜力。