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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Faster Fermentation of Cooked Carrot Cell Clusters Compared to Cell Wall Fragments in Vitro by Porcine Feces
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Faster Fermentation of Cooked Carrot Cell Clusters Compared to Cell Wall Fragments in Vitro by Porcine Feces

机译:与猪粪体外细胞壁片段相比,煮熟的胡萝卜细胞簇的发酵速度更快

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摘要

Plant cell walls are the major structural component of fruits and vegetables, which break down to cell wall particles during ingestion (oral mastication) or food processing. The major health-promoting effect of cell walls occurs when they reach the colon and are fermented by the gut microbiota. In this study, the fermentation kinetics of carrot cell wall particle dispersions with different particle size and microstructure were investigated in vitro using porcine feces. The cumulative gas production and short-chain fatty acids (SCFAs) produced were measured at time intervals up to 48 h. The results show that larger cell clusters with an average particle size (d_(0.5)) of 298 and 137 fan were more rapidly fermented and produced more SCFAs and gas than smaller single cells (75 fan) or cell fragments (50 μm), particularly between 8 and 20 h. Confocal microscopy suggests that the junctions between cells provides an environment that promotes bacterial growth, outweighing the greater specific surface area of smaller particles as a driver for more rapid fermentation. The study demonstrates that it may be possible, by controlling the size of cell wall particles, to design plant-based foods for fiber delivery and promotion of colon fermentation to maximize the potential for human health.
机译:植物细胞壁是水果和蔬菜的主要结构成分,在摄入(口腔咀嚼)或食品加工过程中分解成细胞壁颗粒。当细胞壁到达结肠并被肠道微生物群发酵时,细胞壁的主要健康促进作用就会发生。本研究以猪粪为原料,在体外研究了不同粒径和微观结构的胡萝卜细胞壁颗粒分散体的发酵动力学。在长达 48 小时的时间间隔内测量累积产气量和产生的短链脂肪酸 (SCFA)。结果表明,平均粒径(d_(0.5))为298和137扇的较大细胞簇比较小的单细胞(75扇)或细胞碎片(50 μm))发酵更快,产生更多的SCFA和气体,特别是在8至20小时之间。共聚焦显微镜表明,细胞之间的连接提供了一个促进细菌生长的环境,超过了较小颗粒的更大比表面积,作为更快发酵的驱动力。该研究表明,通过控制细胞壁颗粒的大小,有可能设计用于纤维输送和促进结肠发酵的植物性食品,以最大限度地发挥人类健康的潜力。

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