High-Throughput Identification and Screening of Single Microbial Cells by Nanobowl Array

High-throughput screening and fast identification of single bacterial cells are crucial for clinical diagnosis, bioengineering, and fermentation engineering. Although single-cell technologies have been developed extensively in recent years, the single-cell technologies for bacteria still need furthe...

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Veröffentlicht in:ACS applied materials & interfaces 2019-12, Vol.11 (48), p.44933-44940
Hauptverfasser: Li, Xiuyan, Feng, Hongqing, Li, Zhe, Shi, Yue, Tian, Jingjing, Zhao, Chaochao, Yu, Min, Liu, Zhuo, Li, Hu, Shi, Bojing, Wang, Qian, Li, Luhai, Wang, Dongshu, Zhu, Li, Liu, Ruping, Li, Zhou
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Sprache:eng
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Zusammenfassung:High-throughput screening and fast identification of single bacterial cells are crucial for clinical diagnosis, bioengineering, and fermentation engineering. Although single-cell technologies have been developed extensively in recent years, the single-cell technologies for bacteria still need further exploration. In this study, we demonstrate an identification and screening technology for single bacterial cells based on a large-scale nanobowl array, which is well-ordered and size-adjustable for use with different kinds of bacteria. When the culture medium with monodispersed bacteria was placed on the nanobowl array, it successfully enabled loading of single bacterium into a single nanobowl. Because of the limitative size and depth of the nanobowls, mixture of different bacteria species could be screened according to their sizes. In addition, with the help of a low electrical current, the bacteria can be further screened according to their intrinsic surface charges. If combined with micromanipulation technology, high-throughput single bacterial selection can be achieved in future.
ISSN:1944-8244
1944-8252
DOI:10.1021/acsami.9b08662