College of Life Sciences and Food Engineering, Hebei University of Engineering, 19 Taiji Road, Handan, Hebei 056000, China.
Handan Key Laboratory of Natural Products and Functional Foods, 19 Taiji Road, Handan, Hebei 056000, China.
Food Funct. 2023 Jul 3;14(13):6128-6141. doi: 10.1039/d3fo01308a.
Black rice was fermented with , after which the dietary fiber (DF) extracted from it was characterized and evaluated for its cholesterol-lowering effect in mice. The findings demonstrated that fermentation increased the level of soluble DF from 17.27% ± 0.12 to 29.69% ± 0.26 and increased the adsorption capacity of DF for water, oil, cholesterol, glucose and sodium cholate. The fermented DF had a more loose and porous structure than that extracted from unfermented rice. Additionally, feeding with DF from the fermented black rice significantly reduced body weight, lowered total cholesterol levels and improved the lipid profile in mice gavaged with a high dose (5 g per kg bw) or a low dose (2.5 g per kg·bw). ELISA showed that the hepatic expression of typical proteins and enzymes that are involved in cholesterol metabolism was regulated by the fermented rice DF, leading to reduced cholesterol production and increased cholesterol clearance. The fermented DF also modified the gut microbiota composition ( Firmicutes reduced and increased), which promoted the production of short-chain fatty acids. In conclusion, fermentation can modify the structure and function of DF in black rice and the fermented dietary fiber has excellent cholesterol lowering effects possibly by cholesterol adsorption, cholesterol metabolism modulation, and intestinal microflora regulation.
黑米经发酵后,提取其中的膳食纤维(DF),并对其降胆固醇作用进行了评价。研究结果表明,发酵使可溶性 DF 含量从 17.27%±0.12 增加到 29.69%±0.26,DF 的持水、持油、持胆固醇、持葡萄糖和持胆酸钠能力也得到提高。发酵 DF 的结构比未发酵大米提取的 DF 更疏松多孔。此外,用发酵黑米 DF 喂养可显著降低高剂量(5 g/kg bw)或低剂量(2.5 g/kg·bw)灌胃小鼠的体重,降低总胆固醇水平,改善血脂谱。ELISA 显示,发酵米 DF 调节了参与胆固醇代谢的典型蛋白和酶的肝表达,从而减少胆固醇生成,增加胆固醇清除。发酵 DF 还改变了肠道微生物群组成(厚壁菌门减少,拟杆菌门增加),促进了短链脂肪酸的产生。总之,发酵可以改变黑米中 DF 的结构和功能,发酵膳食纤维具有优异的降胆固醇作用,可能通过胆固醇吸附、胆固醇代谢调节和肠道微生物群调节来实现。