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Joint subarray acoustic tweezers enable controllable cell translation, rotation, and deformation.

Publication ,  Journal Article
Shen, L; Tian, Z; Yang, K; Rich, J; Xia, J; Upreti, N; Zhang, J; Chen, C; Hao, N; Pei, Z; Huang, TJ
Published in: Nature communications
October 2024

Contactless microscale tweezers are highly effective tools for manipulating, patterning, and assembling bioparticles. However, current tweezers are limited in their ability to comprehensively manipulate bioparticles, providing only partial control over the six fundamental motions (three translational and three rotational motions). This study presents a joint subarray acoustic tweezers platform that leverages acoustic radiation force and viscous torque to control the six fundamental motions of single bioparticles. This breakthrough is significant as our manipulation mechanism allows for controlling the three translational and three rotational motions of single cells, as well as enabling complex manipulation that combines controlled translational and rotational motions. Moreover, our tweezers can gradually increase the load on an acoustically trapped cell to achieve controllable cell deformation critical for characterizing cell mechanical properties. Furthermore, our platform allows for three-dimensional (3D) imaging of bioparticles without using complex confocal microscopy by rotating bioparticles with acoustic tweezers and taking images of each orientation using a standard microscope. With these capabilities, we anticipate the JSAT platform to play a pivotal role in various applications, including 3D imaging, tissue engineering, disease diagnostics, and drug testing.

Duke Scholars

Published In

Nature communications

DOI

EISSN

2041-1723

ISSN

2041-1723

Publication Date

October 2024

Volume

15

Issue

1

Start / End Page

9059

Related Subject Headings

  • Rotation
  • Optical Tweezers
  • Imaging, Three-Dimensional
  • Humans
  • Animals
  • Acoustics
 

Citation

APA
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Shen, L., Tian, Z., Yang, K., Rich, J., Xia, J., Upreti, N., … Huang, T. J. (2024). Joint subarray acoustic tweezers enable controllable cell translation, rotation, and deformation. Nature Communications, 15(1), 9059. https://doi.org/10.1038/s41467-024-52686-8
Shen, Liang, Zhenhua Tian, Kaichun Yang, Joseph Rich, Jianping Xia, Neil Upreti, Jinxin Zhang, et al. “Joint subarray acoustic tweezers enable controllable cell translation, rotation, and deformation.Nature Communications 15, no. 1 (October 2024): 9059. https://doi.org/10.1038/s41467-024-52686-8.
Shen L, Tian Z, Yang K, Rich J, Xia J, Upreti N, et al. Joint subarray acoustic tweezers enable controllable cell translation, rotation, and deformation. Nature communications. 2024 Oct;15(1):9059.
Shen, Liang, et al. “Joint subarray acoustic tweezers enable controllable cell translation, rotation, and deformation.Nature Communications, vol. 15, no. 1, Oct. 2024, p. 9059. Epmc, doi:10.1038/s41467-024-52686-8.
Shen L, Tian Z, Yang K, Rich J, Xia J, Upreti N, Zhang J, Chen C, Hao N, Pei Z, Huang TJ. Joint subarray acoustic tweezers enable controllable cell translation, rotation, and deformation. Nature communications. 2024 Oct;15(1):9059.

Published In

Nature communications

DOI

EISSN

2041-1723

ISSN

2041-1723

Publication Date

October 2024

Volume

15

Issue

1

Start / End Page

9059

Related Subject Headings

  • Rotation
  • Optical Tweezers
  • Imaging, Three-Dimensional
  • Humans
  • Animals
  • Acoustics