Borrás-Linares Isabel, Herranz-López María, Barrajón-Catalán Enrique, Arráez-Román David, González-Álvarez Isabel, Bermejo Marival, Fernández Gutiérrez Alberto, Micol Vicente, Segura-Carretero Antonio
Department of Analytical Chemistry, Faculty of Sciences, University of Granada, Avda Fuentenueva s/n, 18071 Granada, Spain.
Research and Development Functional Food Centre, Health Science Technological Park, Avda Conocimiento s/n, 18016 Granada, Spain.
Int J Mol Sci. 2015 Aug 7;16(8):18396-411. doi: 10.3390/ijms160818396.
Previous findings on the capacity of Hibiscus sabdariffa (HS) polyphenols to ameliorate metabolic disturbances justify the necessity of studies oriented to find the potential metabolites responsible for such an effect. The present study examined the intestinal epithelial membrane permeability of polyphenols present in a phenolic-enriched Hibiscus sabdariffa extract (PEHS), free and encapsulated, using the Caco-2 cell line. Additionally, selected polyphenols (quercetin, quercetin-3-glucoside, quercetin-3-glucuronide, and N-feruloyltyramine) were also studied in the same absorption model. The powerful analytical platform used ultra-high-performance liquid chromatography coupled with ultra-high-resolution quadrupole time-of-flight mass spectrometry (UHPLC-ESI-UHR-Qq-TOF-MS), and enabled the characterization of seven new compounds in PEHS. In the permeation study, only a few compounds were able to cross the cell monolayer and the permeability was lower when the extract was in an encapsulated form. Pure compounds showed a moderate absorption in all cases. Nevertheless, these preliminary results may need further research to understand the complete absorption mechanism of Hibiscus polyphenols.
先前关于玫瑰茄(HS)多酚改善代谢紊乱能力的研究结果,证明有必要开展相关研究,以寻找造成这种效果的潜在代谢物。本研究使用Caco-2细胞系,检测了富含酚类的玫瑰茄提取物(PEHS)中游离和包封形式的多酚对肠上皮细胞膜的通透性。此外,还在相同的吸收模型中研究了选定的多酚(槲皮素、槲皮素-3-葡萄糖苷、槲皮素-3-葡萄糖醛酸苷和N-阿魏酰酪胺)。所使用的强大分析平台为超高效液相色谱与超高分辩率四极杆飞行时间质谱联用(UHPLC-ESI-UHR-Qq-TOF-MS),该平台鉴定出了PEHS中的7种新化合物。在渗透研究中,只有少数化合物能够穿过细胞单层,并且提取物呈包封形式时通透性较低。在所有情况下,纯化合物均表现出适度的吸收。然而,这些初步结果可能需要进一步研究,以了解玫瑰茄多酚的完整吸收机制。