Issue 11, 2021

Visually precise, low-damage, single-cell spatial manipulation with single-pixel resolution

Abstract

The analysis of single living cells, including intracellular delivery and extraction, is essential for monitoring their dynamic biochemical processes and exploring intracellular heterogeneity. However, owing to the 2D view in bright-field microscopy and optical distortions caused by the cell shape and the variation in the refractive index both inside and around the cells, achieving spatially undistorted imaging for high-precision manipulation within a cell is challenging. Here, an accurate and visual system is developed for single-cell spatial manipulation by correcting the aberration for simultaneous bright-field triple-view imaging. Stereo information from the triple view enables higher spatial resolution that facilitates the precise manipulation of single cells. In the bright field, we resolved the spatial locations of subcellular structures of a single cell suspended in a medium and measured the random spatial rotation angle of the cell with a precision of ±5°. Furthermore, we demonstrated the visual manipulation of a probe to an arbitrary spatial point of a cell with an accuracy of <1 pixel. This novel system is more accurate and less destructive for subcellular content extraction and drug delivery.

Graphical abstract: Visually precise, low-damage, single-cell spatial manipulation with single-pixel resolution

Supplementary files

Article information

Article type
Edge Article
Submitted
06 Oct 2020
Accepted
29 Jan 2021
First published
02 Feb 2021
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2021,12, 4111-4118

Visually precise, low-damage, single-cell spatial manipulation with single-pixel resolution

Q. Zhang, Y. Shao, B. Li, Y. Wu, J. Dong, D. Zhang, Y. Wang, Y. Yan, X. Wang, Q. Pu and G. Guo, Chem. Sci., 2021, 12, 4111 DOI: 10.1039/D0SC05534D

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