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Exopolysaccharides Produced by Lactic Acid Bacteria and Bifidobacteria as Fermentable Substrates by the Intestinal Microbiota

机译:乳酸菌和双歧杆菌作为肠道菌群可发酵底物产生的胞外多糖

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摘要

The functional food market, including products formulated to maintain a "healthy" gut microbiota, i.e. probiotics and prebiotics, has increased enormously since the end of the last century. In order to favor the competitiveness of this sector, as well as to increase our knowledge of the mechanisms of action upon human health, new probiotic strains and prebiotic substrates are being studied. This review discusses the use of exopolysaccharides (EPS), both homopolysaccharides (HoPS) and heteropolysaccharides (HePS), synthesized by lactic acid bacteria and bifidobacteria as potential prebiotics. These extracellular carbohydrate polymers synthesized by some gut inhabitants seem to be resistant to gastrointestinal digestion; these are susceptible as well to biodegradability by the intestinal microbiota depending on both the physicochemical characteristics of EPS and the pool of glycolytic enzymes harbored by microbiota. Therefore, although the chemical composition of these HoPS and HePS is different, both can be fermentable substrates by intestinal inhabitants and good candidates as prebiotic substrates. However, there are limitations for their use as additives in the food industry due to, on the one hand, their low production yield and, on the other hand, a lack of clinical studies demonstrating the functionality of these biopolymers.
机译:自上世纪末以来,功能性食品市场,包括为维持“健康”肠道菌群而配制的产品,即益生菌和益生元,已大大增加。为了增强该部门的竞争力,以及增加我们对人类健康的作用机理的认识,正在研究新的益生菌菌株和益生元底物。这篇综述讨论了由乳酸菌和双歧杆菌合成的胞外多糖(EPS),均多糖(HoPS)和杂多糖(HePS)作为潜在的益生元的用途。由某些肠道居民合成的这些细胞外碳水化合物聚合物似乎对胃肠道消化具有抵抗力。根据EPS的物理化学特性和微生物所具有的糖酵解酶库,它们也容易受到肠道微生物的生物降解性的影响。因此,尽管这些HoPS和HePS的化学成分不同,但它们都可以被肠道居民发酵,并且可以作为益生元底物。然而,一方面,由于它们的低产率,另一方面,由于缺乏证明这些生物聚合物的功能性的临床研究,在食品工业中将它们用作添加剂存在局限性。

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