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A Combined Proteomics Metabolomics and In Vivo Analysis Approach for the Characterization of Probiotics in Large-Scale Production

机译:蛋白质组学代谢组学和体内分析相结合的方法用于大规模生产中的益生菌表征

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摘要

The manufacturing processes of commercial probiotic strains may be affected in different ways in the attempt to optimize yield, costs, functionality, or stability, influencing gene expression, protein patterns, or metabolic output. Aim of this work is to compare different samples of a high concentration (450 billion bacteria) multispecies (8 strains) formulation produced at two different manufacturing sites, United States of America (US) and Italy (IT), by applying a combination of functional proteomics, metabolomics, and in vivo analyses. Several protein-profile differences were detected between IT- and US-made products, with , , and Bifidobacteria being the main affected probiotics/microorganisms. Performing proton nuclear magnetic spectroscopy ( H-NMR), some discrepancies in amino acid, lactate, betaine and sucrose concentrations were also reported between the two products. Finally, we investigated the health-promoting and antiaging effects of both products in the model organism . The integration of omics platforms with in vivo analysis has emerged as a powerful tool to assess manufacturing procedures.
机译:为了优化产量,成本,功能或稳定性,影响基因表达,蛋白质模式或代谢输出,可能会以不同方式影响商品益生菌菌株的生产过程。这项工作的目的是通过应用功能组合来比较在两个不同的生产地点(美国(US)和意大利(IT))生产的高浓度(4,500亿细菌)多物种(8个菌株)制剂的不同样品蛋白质组学,代谢组学和体内分析。在IT制造的产品和美国制造的产品之间检测到几种蛋白质谱差异,其中,和双歧杆菌是受影响的主要益生菌/微生物。使用质子核磁共振波谱(H-NMR),两种产品之间还报告了氨基酸,乳酸,甜菜碱和蔗糖浓度的一些差异。最后,我们在模型生物中研究了这两种产品的健康促进和抗衰老​​作用。 omics平台与体内分析的集成已成为评估制造程序的强大工具。

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