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The Probiotic BIOHM Improves Nutrient Absorption by Disrupting Gastrointestinal Biofilms

机译:通过破坏胃肠生物膜来提高营养素的BioHM改善营养吸收

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Aim: To demonstrate the ability of a probiotic supplement (BIOHM) to disrupt pathogenic gastrointestinal biofilms, thus enhancing nutrient absorption.Methods: A filter insert model using Caco-2 cells to mimic an intestinal monolayer was employed to determine the ability of BIOHM to disrupt a mixed species (Candida tropicalis, Escherichia coli and Serratia marcescens) biofilm known to occur in patients with Crohn’s disease. Penetration of vitamin C and casein as representative of vitamins and proteins, respectively, was then measured.Results: Application of BIOHM led to a significant increase in casein penetration through the Caco-2 cell epithelial monolayer in the absence of biofilms (p value<0.0001). Additionally, the combination of mixed species biofilms grown on a Caco-2 cell monolayer with BIOHM filtrate resulted in higher penetration of vitamin C and casein through the monolayer compared to untreated controls.Conclusion: Our in vitro data indicates that the combination of ingredients in the BIOHM probiotic may enhance nutrient permeability, thus leading to increased overall absorption of proteins and vitamins.
机译:目的:证明益生菌补充剂(BioHM)破坏致病性胃肠生物膜的能力,从而增强营养吸收。方法:使用使用Caco-2细胞模拟肠道单层的过滤器插入模型来确定Biohm破坏的能力混合物种(Candida Tropicalis,Escherichia Coli和Serratia marcescens)生物膜已知在克罗恩病的患者中发生。然后分别测定维生素C和酪蛋白作为代表性的维生素和蛋白质的渗透性。结果:BioHm的应用在没有生物膜的情况下通过Caco-2细胞上皮单层进行酪蛋白渗透的显着增加(P值<0.0001 )。另外,与未处理的对照相比,在CaCh-2细胞单层上生长在CaCO-2细胞单层上的混合物种生物膜的组合导致维生素C和酪蛋白通过单层渗透到单层。结论:我们的体外数据表明成分的组合BioHM益生菌可能增强营养渗透性,从而导致蛋白质和维生素的总体吸收增加。

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