Northern Ireland Centre for Food and Health, University of Ulster (Coleraine), Cromore Road, Coleraine, Co. Derry, N. Ireland BT52 1SA, UK.
Anaerobe. 2013 Aug;22:38-44. doi: 10.1016/j.anaerobe.2013.05.006. Epub 2013 May 25.
Linear inulin-type fructan (ITF) prebiotics have a putative role in the prevention of colorectal cancer, whereas relatively little is known about branched fructans. This study aims to investigate the fermentation properties and potential prebiotic activity of branched fructans derived from Agave angustifolia Haw, using the Simulator of Human Intestinal Microbial Ecosystem (SHIME) model. The proximal, transverse and distal vessels were used to investigate fructan fermentation throughout the colon and to assess the alterations of the microbial composition and fermentation metabolites (short chain fatty acids and ammonia). The influence on bioactivity of the fermentation supernatant was assessed by MTT, Comet and transepithelial electrical resistance (TER), respectively. Addition of Agave fructan to the SHIME model significantly increased (P < 0.05), bifidobacteria populations (proximal and transverse), SCFA concentrations (proximal, transverse and distal) and decreased ammonia concentrations in the distal vessel. Furthermore, the fermentation supernatant significantly (P < 0.05) increased the TER of a Caco-2 cell monolayer (%) and decreased fluorescein-based paracellular flux, suggesting enhanced barrier function and reduced epithelial barrier permeability (proximal and distal vessel). While cytotoxicity and genotoxicity remained unaltered in response to the presence of Agave fructans. To conclude, branched Agave fructans show indications of prebiotic activity, particularly in relation to colon health by exerting a positive influence on gut barrier function, an important aspect of colon carcinogenesis.
线性菊粉型低聚糖(ITF)益生元在预防结直肠癌方面具有潜在作用,而关于支链低聚糖的了解相对较少。本研究旨在使用人类肠道微生物模拟系统(SHIME)模型,研究来自龙舌兰 Agave angustifolia Haw 的支链果糖的发酵特性和潜在的益生元活性。近端、横结肠和远端血管用于研究果糖在整个结肠中的发酵,并评估微生物组成和发酵代谢产物(短链脂肪酸和氨)的变化。通过 MTT、彗星和跨上皮电阻(TER)分别评估发酵上清液对生物活性的影响。向 SHIME 模型中添加龙舌兰果糖可显著增加(P < 0.05)双歧杆菌种群(近端和横结肠)、SCFA 浓度(近端、横结肠和远端),并降低远端血管中的氨浓度。此外,发酵上清液可显著(P < 0.05)增加 Caco-2 细胞单层的 TER(%)并降低基于荧光素的细胞旁通量,表明增强了屏障功能并降低了上皮屏障通透性(近端和远端血管)。虽然细胞毒性和遗传毒性在存在龙舌兰果糖的情况下没有变化。总之,支链龙舌兰果糖表现出益生元活性的迹象,特别是通过对肠道屏障功能产生积极影响,这是结肠癌发生的一个重要方面,与结肠健康有关。