Saikia Dimple, Jadhav Priyanka, Hole Arti R, Krishna Chilakapati Murali, Singh Surya P
Department of Biosciences and Bioengineering, 477529Indian Institute of Technology Dharwad, Dharwad, India.
Tata Memorial Centre, 29435Advanced Centre for Treatment Research and Education in Cancer, Navi Mumbai, India.
Appl Spectrosc. 2022 Oct;76(10):1263-1271. doi: 10.1177/00037028221109624. Epub 2022 Jun 25.
Optical density based measurements are routinely performed to monitor the growth of microbes. These measurements solely depend upon the number of cells and do not provide any information about the changes in the biochemical milieu or biological status. An objective information about these parameters is essential for evaluation of novel therapies and for maximizing the metabolite production. In the present study, we have applied Raman spectroscopy to monitor growth kinetics of three different pathogenic Gram-negative microbes , and . Spectral measurements were performed under 532 nm excitation with 5 seconds of exposure time. Spectral features suggest temporal changes in the "peptide" and "nucleic acid" content of cells under different growth stages. Using principal component analysis (PCA), successful discrimination between growth phases was also achieved. Overall, the findings are supportive of the prospective adoption of Raman based approaches for monitoring microbial growth.
基于光密度的测量通常用于监测微生物的生长。这些测量仅取决于细胞数量,并未提供有关生化环境或生物学状态变化的任何信息。关于这些参数的客观信息对于评估新疗法和最大化代谢产物产量至关重要。在本研究中,我们应用拉曼光谱法监测三种不同的致病性革兰氏阴性微生物、和的生长动力学。光谱测量在532nm激发下进行,曝光时间为5秒。光谱特征表明不同生长阶段细胞中“肽”和“核酸”含量的时间变化。使用主成分分析(PCA),也成功实现了生长阶段之间的区分。总体而言,这些发现支持前瞻性采用基于拉曼的方法来监测微生物生长。