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紫薯抗性淀粉对体外双歧杆菌耐受力和增殖能力的益生元作用。

Prebiotic effects of resistant starch from purple yam (Dioscorea alata L.) on the tolerance and proliferation ability of Bifidobacterium adolescentis in vitro.

机构信息

College of Food Science, Fujian Agriculture and Forestry University, Fuzhou, Fujian, P. R. China.

出版信息

Food Funct. 2018 Apr 25;9(4):2416-2425. doi: 10.1039/c7fo01919j.

Abstract

The in vitro prebiotic effects of resistant starch (RS), prepared by different treatments from purple yam, on Bifidobacterium adolescentis (bifidobacteria for short), were investigated. Tolerance tests indicated that bifidobacteria in PDS (prepared by debranching combined with autoclaving) and PDS.H (PDS further treated by double enzyme hydrolysis) media adapted better to simulated upper gastrointestinal conditions (at pH 1.5-3.0 and 0.3% and 1.0% bile acid) than those in GLU (glucose) and DAS (prepared by autoclaving) media. PDS.H, which had the highest digestion resistibility, exhibited significant effects on the OD600 nm value (1.544) and the pH value (4.21) when the carbohydrate concentration was 20 g L-1. Additionally, the exponential growth phase of bifidobacteria was 2 h in the PDS or PDS.H media, whereas it was 4 h in the GLU or DAS media. A higher content of short-chain fatty acids (SCFAs) was obtained in the PDS.H medium. Analysis of the structural features of RS and fermented RS indicated that PDS, especially PDS.H, had a rougher surface and higher crystallinity than DAS. Fermented RS in a simulated large bowel environment showed an eroded surface and decreased crystallinity. All of these findings suggest that RS with a rough surface and perfect crystalline structure could protect bifidobacteria from gastrointestinal conditions and enhance the proliferation of bifidobacteria.

摘要

研究了不同处理方法制备的紫色山药抗性淀粉(RS)对双歧杆菌(简称双歧杆菌)的体外益生元作用。耐受力试验表明,在 PDS(支链脱支联合高压蒸煮制备)和 PDS.H(PDS 经双酶水解进一步处理)培养基中的双歧杆菌更能适应模拟上消化道条件(pH 值 1.5-3.0 和 0.3%和 1.0%胆盐),而在 GLU(葡萄糖)和 DAS(高压蒸煮制备)培养基中的双歧杆菌则不然。PDS.H 的消化抗性最高,当碳水化合物浓度为 20 g L-1 时,对 OD600nm 值(1.544)和 pH 值(4.21)有显著影响。此外,双歧杆菌在 PDS 或 PDS.H 培养基中的指数生长期为 2 h,而在 GLU 或 DAS 培养基中的指数生长期为 4 h。在 PDS.H 培养基中获得了更高含量的短链脂肪酸(SCFAs)。RS 和发酵 RS 的结构特征分析表明,PDS,尤其是 PDS.H,比 DAS 具有更粗糙的表面和更高的结晶度。在模拟大肠环境中发酵的 RS 表现出侵蚀表面和降低结晶度。所有这些发现表明,具有粗糙表面和完美结晶结构的 RS 可以保护双歧杆菌免受胃肠道条件的影响,并增强双歧杆菌的增殖。

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