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用于长期可视化活细胞培养生长的单细胞水平微流控技术的开发 。 你提供的原文似乎不完整,句末“. ”后面应该还有具体内容。

Development of single-cell-level microfluidic technology for long-term growth visualization of living cultures of .

作者信息

Wang Han, Conover Gloria M, Han Song-I, Sacchettini James C, Han Arum

机构信息

Department of Biomedical Engineering, School of Medicine, Tsinghua University, 100084 Beijing, China.

Department of Biochemistry and Biophysics, Texas A&M University, College Station, TX 77843 USA.

出版信息

Microsyst Nanoeng. 2021 May 20;7:37. doi: 10.1038/s41378-021-00262-1. eCollection 2021.

Abstract

Analysis of growth and death kinetics at single-cell resolution is a key step in understanding the complexity of the nonreplicating growth phenotype of the bacterial pathogen . Here, we developed a single-cell-resolution microfluidic mycobacterial culture device that allows time-lapse microscopy-based long-term phenotypic visualization of the live replication dynamics of mycobacteria. This technology was successfully applied to monitor the real-time growth dynamics of the fast-growing model strain () while subjected to drug treatment regimens during continuous culture for 48 h inside the microfluidic device. A clear morphological change leading to significant swelling at the poles of the bacterial membrane was observed during drug treatment. In addition, a small subpopulation of cells surviving treatment by frontline antibiotics was observed to recover and achieve robust replicative growth once regular culture media was provided, suggesting the possibility of identifying and isolating nonreplicative mycobacteria. This device is a simple, easy-to-use, and low-cost solution for studying the single-cell phenotype and growth dynamics of mycobacteria, especially during drug treatment.

摘要

在单细胞分辨率下分析生长和死亡动力学是理解细菌病原体非复制生长表型复杂性的关键步骤。在此,我们开发了一种单细胞分辨率的微流控分枝杆菌培养装置,该装置能够基于延时显微镜对分枝杆菌的实时复制动态进行长期表型可视化。这项技术成功应用于监测快速生长的模式菌株()在微流控装置中连续培养48小时并接受药物治疗方案时的实时生长动态。在药物治疗期间,观察到细菌膜两极出现明显的形态变化,导致显著肿胀。此外,观察到一小部分在一线抗生素治疗下存活的细胞,一旦提供常规培养基,就会恢复并实现强劲的复制生长,这表明有可能识别和分离出非复制型分枝杆菌。该装置是一种简单、易用且低成本的解决方案,用于研究分枝杆菌的单细胞表型和生长动态,尤其是在药物治疗期间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8c9/8433163/c7452eb0d309/41378_2021_262_Fig1_HTML.jpg

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