Di Pede Giuseppe, Bresciani Letizia, Calani Luca, Petrangolini Giovanna, Riva Antonella, Allegrini Pietro, Del Rio Daniele, Mena Pedro
Department of Food and Drugs, University of Parma, 43124 Parma, Italy.
Department of Veterinary Science, University of Parma, 43126 Parma, Italy.
Foods. 2020 Aug 14;9(8):1121. doi: 10.3390/foods9081121.
Quercetin is one of the main dietary flavonols, but its beneficial properties in disease prevention may be limited due to its scarce bioavailability. For this purpose, delivery systems have been designed to enhance both stability and bioavailability of bioactive compounds. This study aimed at investigating the human microbial metabolism of quercetin derived from unformulated and phytosome-formulated quercetin through an in vitro model. Both ingredients were firstly characterized for their profile in native (poly)phenols, and then fermented with human fecal microbiota for 24 h. Quantification of microbial metabolites was performed by ultra-high performance liquid chromatography coupled to mass spectrometry (uHPLC-MS) analyses. Native quercetin, the main compound in both products, appeared less prone to microbial degradation in the phytosome-formulated version compared to the unformulated one during fecal incubation. Quercetin of both products was bioaccessible to colonic microbiota, resulting in the production of phenylpropanoic acid, phenylacetic acid and benzoic acid derivatives. The extent of the microbial metabolism of quercetin was higher in the unformulated ingredient, in a time-dependent manner. This study opened new perspectives to investigate the role of delivery systems on influencing the microbial metabolism of flavonols in the colonic environment, a pivotal step in the presumed bioactivity associated to their intake.
槲皮素是主要的膳食黄酮醇之一,但其在疾病预防方面的有益特性可能因其生物利用度低而受到限制。为此,人们设计了递送系统来提高生物活性化合物的稳定性和生物利用度。本研究旨在通过体外模型研究未配制的槲皮素和槲皮素磷脂复合物中槲皮素的人体微生物代谢情况。首先对两种成分的天然(多)酚类成分进行了表征,然后与人粪便微生物群一起发酵24小时。通过超高效液相色谱-质谱联用(uHPLC-MS)分析对微生物代谢产物进行定量。在粪便培养过程中,两种产品中的主要化合物天然槲皮素在槲皮素磷脂复合物剂型中比未配制剂型更不易被微生物降解。两种产品中的槲皮素对结肠微生物群具有生物可及性,可产生苯丙酸、苯乙酸和苯甲酸衍生物。未配制成分中槲皮素的微生物代谢程度更高,且呈时间依赖性。本研究为研究递送系统在结肠环境中对黄酮醇微生物代谢的影响作用开辟了新的视角,这是与其摄入相关的假定生物活性中的关键一步。