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概念验证:利用等温微量热法对益生菌进行实时活力和代谢谱分析。

Proof of concept: real-time viability and metabolic profiling of probiotics with isothermal microcalorimetry.

作者信息

Morazzoni Carlotta, Sirel Madle, Allesina Serena, Veses Garcia Marta, Kragh Kasper, Pane Marco, Beilharz Katrin

机构信息

Probiotical Research s.r.l., Novara, Italy.

Symcel AB, Stockholm, Sweden.

出版信息

Front Microbiol. 2024 Jun 19;15:1391688. doi: 10.3389/fmicb.2024.1391688. eCollection 2024.

Abstract

Isothermal microcalorimetry (IMC) is a potent analytical method for the real-time assessment of microbial metabolic activity, which serves as an indicator of microbial viability. This approach is highly relevant to the fields of probiotics and Live Biotherapeutic Products (LBPs), offering insights into microbial viability and growth kinetics. One important characteristic of IMC is its ability to measure microbial metabolic activity separately from cellular enumeration. This is particularly useful in situations where continuous tracking of bacterial activity is challenging. The focus on metabolic activity significantly benefits both probiotic research and industrial microbiology applications. IMC's versatility in handling different media matrices allows for the implementation of viability assessments under conditions that mirror those found in various industrial environments or biological models. In our study, we provide a proof of concept for the application of IMC in determining viability and growth dynamics and their correlation with bacterial count in probiotic organisms. Our findings reinforce the potential of IMC as a key method for process enhancement and accurate strain characterization within the probiotic sector. This supports the broader objective of refining the systematic approach and methods used during the development process, thereby providing detailed insights into probiotics and LBPs.

摘要

等温微量热法(IMC)是一种用于实时评估微生物代谢活性的强大分析方法,微生物代谢活性可作为微生物活力的指标。这种方法与益生菌和活体生物治疗产品(LBPs)领域高度相关,能够深入了解微生物活力和生长动力学。IMC的一个重要特性是它能够独立于细胞计数来测量微生物代谢活性。这在持续跟踪细菌活性具有挑战性的情况下尤为有用。关注代谢活性对益生菌研究和工业微生物学应用都有显著益处。IMC在处理不同培养基基质方面的通用性使得在模拟各种工业环境或生物模型中所发现条件的情况下进行活力评估成为可能。在我们的研究中,我们为IMC在确定益生菌生物的活力、生长动态及其与细菌数量的相关性方面的应用提供了概念验证。我们的研究结果强化了IMC作为益生菌领域工艺改进和准确菌株表征关键方法的潜力。这支持了在开发过程中完善系统方法和手段这一更广泛的目标,从而提供对益生菌和LBPs的详细见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bd0/11220157/28ffa0b52f27/fmicb-15-1391688-g001.jpg

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