Developing Robust Probiotic Consortia: A Methodological Optimization Approach.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Hina Maniya, Ishita Modasiya, Mehul Chauhan, Priya Mori, Vijay Kumar
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Abstract

Developing effective probiotic consortia requires a comprehensive understanding of strain interactions. While traditional methods focus on direct interactions of the participating microbes, the role of microbial metabolites remains largely unexplored. Present study introduces a novel approach of evaluating the impact of strains as well as their secondary metabolites on compatibility during co-culture by assessing the antagonistic and synergistic attributes for multi-strain probiotic formulation. Assessment of antagonistic activity by spot method indicated suppressive nature of PIG1FD and PIG1IR on other strain's growth, hence not appropriate for consortia formulation. Findings of synergistic attribute demonstrated growth promoting role of cell supernatants from isolates PIG6IR and PIG5CI significantly, as it accelerated the entry of all other isolates into the log phase by 5-6 h and 0-2 h, respectively. By employing this methodology, we identified PIG5CI and PIG6IR (isolates identified as Bacillus spizizenii BAB 7915 and Bacillus subtilis BAB 7918 by 16S RNA sequencing method) as promising candidates for consortium formation due to their ability to enhance the growth of other strains through metabolite production. By attempting to elucidate the microbial interactions and metabolite-mediated effects, this research contributes to a more comprehensive understanding of probiotic consortia dynamics and offers valuable insights for future translational studies.

开发稳健的益生菌联合体:一种方法优化方法。
开发有效的益生菌联合体需要全面了解菌株之间的相互作用。传统的方法侧重于参与微生物的直接相互作用,而微生物代谢物的作用在很大程度上仍未得到探讨。本研究引入了一种新方法,通过评估多菌株益生菌配方的拮抗和协同属性,来评估菌株及其次生代谢物在共培养过程中对相容性的影响。通过斑点法评估拮抗活性表明,PIG1FD 和 PIG1IR 对其他菌株的生长具有抑制作用,因此不适合用于联合菌株配方。协同作用的结果表明,PIG6IR 和 PIG5CI 分离物的细胞上清液对生长有明显的促进作用,因为它能使所有其他分离物进入对数期的时间分别加快 5-6 小时和 0-2 小时。通过这种方法,我们确定了 PIG5CI 和 PIG6IR(通过 16S RNA 测序方法确定为枯草芽孢杆菌 BAB 7915 和枯草芽孢杆菌 BAB 7918),由于它们能够通过产生代谢物来促进其他菌株的生长,因此很有希望成为形成联合体的候选菌株。通过尝试阐明微生物相互作用和代谢产物介导的效应,这项研究有助于更全面地了解益生菌联合体的动态,并为未来的转化研究提供有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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