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Prebiotic efficacy of coconut kernel cake’s soluble crude polysaccharides on growth rates and acidifying property of probiotic lactic acid bacteria in vitro

机译:椰子仁蛋糕可溶性粗多糖对体外益生菌乳酸菌生长率和酸化特性的益生元疗效

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This paper reports the prebiotic efficacy of soluble crude polysaccharides (SCP) from palm kernel cake on the growth rates and acidifying property of probiotic lactic acid bacteria (LAB), Lactobacillus plantarum ATCC 8014 and Lactobacillus rhamnosus ATCC 53103, to investigate into the potential SCP of an agriculture by-product as a novel prebiotic. The highest extraction yield of SCP (2.90%) was obtained using NaOH. The extracted polysaccharides were highly soluble (97%). The highest percentage of protein (0.63?±?0.09%) and the total carbohydrate content (55.36?±?0.33%) were observed in NaOH-extracted SCP (SCP N ) and citric acid-extracted SCP (SCP CA ). Water-extracted SCP (SCP W ) contained the highest percentage of glucose, whereas SCP CA demonstrated the presence of two major monosaccharides, galactose and mannose. Structural analysis of SCP showed peaks in the range of 1000–1077?cm ?1 , an indication of the presence of polysaccharides and alpha (α)- or beta (β)-glycosidic linkages. The degree of hydrolysis increased with the increase of pH from 5 to 8 following 4?h incubation. SCP W and SCP CA were more resistant (95%) to α-amylase as compared to fructooligosaccharides (FOS). As in the case of FOS (~98%), SCP W (~99%) and SCP CA (~98%) were resistant to artificial human gastric juice and their degree of hydrolysis had negative correlation with the pH. The product was found to markedly stimulate the proliferation of the tested probiotics and acid production. All the above findings are supportive of the fact that polysaccharides extracted from CKC have a vast potential to be exploited as novel prebiotic.
机译:本文报告了可溶性粗多糖(SCP)从棕榈仁蛋糕对益生菌乳酸菌(实验室),Lactobacillus Plantarum ATCC 8014和Lactobacillus rhAMNOSUS ATCC 53103的生长速率和酸化特性的益生菌疗效和酸化性能,以研究潜在的SCP农业副产物作为一种新的益生元。使用NaOH获得SCP的最高提取产率(2.90%)。提取的多糖高度可溶(> 97%)。在NaoH提取的SCP(SCP N)和柠檬酸提取的SCP(SCP CA)中,观察到最高蛋白质(0.63±±0.09%)和总碳水化合物含量(55.36〜±0.33%)。水提取的SCP(SCP W)含有最高的葡萄糖百分比,而SCP CA证明存在两种主要单糖,半乳糖和甘露糖。 SCP的结构分析显示在1000-1077Ω·cm≤1的峰值范围内,该指示存在多糖和α(α) - 或β(β) - 甘糖苷键。水解程度随着4μl孵育后的5至8的增加而增加。与寡糖(FOS)相比,SCP W和SCP CA与α-淀粉酶更抗性(95%)。如在FOS(〜98%)的情况下,SCP W(〜99%)和SCP CA(〜98%)对人造人胃液耐药性,其水解程度与pH有负相关。发现产物明显刺激测试的益生菌和酸生产的增殖。以上所有调查结果都是支持来自CKC中提取的多糖具有巨大潜力,以被利用为新的益生元。

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