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在奶酪乳清中生长的潜在益生菌副干酪乳杆菌 ItalPN16 的功能特性得到改善。

Improved functional properties of the potential probiotic Lacticaseibacillus paracasei ItalPN16 growing in cheese whey.

机构信息

Dairy Technology Center, Institute of Food Technology (ITAL), Campinas, São Paulo, 13070-178, Brazil.

Laboratory of Applied Microbiology and Biochemistry, Institute of Food Science and Technology (ICTA), Federal University of Rio Grande do Sul (UFRGS), Porto Alegre, RS 90040-060, Brazil.

出版信息

Lett Appl Microbiol. 2023 Jul 3;76(7). doi: 10.1093/lambio/ovad075.

Abstract

The production of probiotic bacteria requires specific and expensive culture media for maintain their viability and metabolic response during gastro-intestinal transit and cell adhesion process. The aim of this study was to compare the ability of the potential probiotic Laticaseibacillus paracasei ItalPN16 to grow in plain sweet whey (SW) and acid whey (AW), evaluating changes in some probiotic properties related to the culture media. Pasteurized SW and AW were suitable media for L. paracasei growth, since counts above 9 Log CFU/ml were achieved using <50% of the total sugars in both whey samples after 48 h at 37°C. The L. paracasei cells obtained from AW or SW cultures showed increased resistance to pH 2.5 and 3.5, higher autoaggregation, and lower cell hydrophobicity, as compared with the control of MRS. SW also improved the biofilm formation ability and cell adhesion capability to Caco-2 cells. Our results indicate that the L. paracasei adaptation to the SW conditions, inducing metabolic changes that improved its stability to acid stress, biofilm formation, autoaggregation, and cell adhesion properties, which are important functional probiotic properties. Overall, the SW could be considered as low-cost culture medium for sustainable biomass production of L. paracasei ItalPN16.

摘要

生产益生菌需要特定的、昂贵的培养基,以维持其在胃肠道转运和细胞黏附过程中的活力和代谢反应。本研究的目的是比较潜在益生菌乳杆菌副干酪亚种 ItalPN16 在普通甜乳清(SW)和酸乳清(AW)中生长的能力,评估与培养基相关的一些益生菌特性的变化。巴氏杀菌的 SW 和 AW 是 L. paracasei 生长的合适培养基,因为在 37°C 下培养 48 小时后,在两种乳清样品中,使用不到总糖的 50%就可达到 9 Log CFU/ml 以上的计数。与 MRS 对照相比,从 AW 或 SW 培养物中获得的 L. paracasei 细胞对 pH 2.5 和 3.5 的抵抗力增强,自聚集能力更高,细胞疏水性更低。SW 还提高了生物膜形成能力和细胞对 Caco-2 细胞的黏附能力。我们的结果表明,L. paracasei 适应 SW 条件,诱导代谢变化,提高了其对酸应激、生物膜形成、自聚集和细胞黏附特性的稳定性,这些都是重要的功能性益生菌特性。总的来说,SW 可以被认为是 L. paracasei ItalPN16 可持续生物量生产的低成本培养基。

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