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Single-cell patterning: a new frontier in bioengineering

delete2022-12-01
delete12
PRE
AI
R
R. Gayathri
S
Srabani Kar
M
Moeto Nagai
F
Fan‐Gang Tseng
P
Pallab Sinha Mahapatra *
T
Tuhin Subhra Santra *
DOI:10.1016/j.mtchem.2022.101021delete
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摘要

摘要

En 中文
Single-cell patterning technologies are rapidly evolving, where single cells are positioned in spatially distinct areas, thus providing a platform for several biological and biomedical, therapeutics, and diagnostics applications. By considering the cellular heterogeneity and providing more statistical power, single-cell patterning outperforms precise cellular analysis than conventional bulk patterning, where average data can be acquired with millions of cells together. A crucial step in cell patterning is to regulate cell adhesion on a substrate by adapting several physical and biochemical strategies for substrate modification and patterning. In this article, we briefly discuss different biochemical as well as physical approaches for the surface modification and cellular adhesion. Moreover, we also emphasize in-depth single-cell patterning by using different physiochemical and physical approaches and their biological and biomedical applications. Finally, single-cell printing, its advantages, limitations, and future challenges are also elaborated.
Keyword:
Micro
nano fluidics
Surface modi fication
Cell adhesion
nano patterning
Cell manipulation

期刊

Materials Today Chemistry 封面图
Materials Today Chemistry
IF:
6.7
论文数:
4.0K
被引数:
1.4W

机构

U
University of Cambridge
学者数:
7.7W
论文数: 7.1W
被引数: 13.7W
I
indian institute of technology (iit) - madras
学者数:
5.1K
论文数: 5.2K
被引数: 1
I
indian institute of technology system (iit system)
学者数:
9.5W
论文数: 9.9W
被引数: 93
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