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Microgripper Using Soft Microactuators for Manipulation of Living Cells
Shunnosuke Kodera1, Tomoki Watanabe1, Yoshiyuki Yokoyama2
1Department of Precision Mechanics, Chuo University, Tokyo 112-8551, Japan.
Micromachines
|May 28, 2022
Summary
Researchers developed a novel microgripper using soft thermoresponsive hydrogels, actuated by infrared laser, to precisely manipulate single living cells. This innovation offers a compliant solution for delicate biological sample handling.
Area of Science:
- Biomedical Engineering
- Materials Science
- Robotics
Background:
- Soft actuators offer compliance for handling delicate targets.
- Thermoresponsive hydrogels exhibit volume changes with temperature.
- Microscale manipulation requires precise and gentle gripping mechanisms.
Purpose of the Study:
- To develop a microgripper actuated by soft thermoresponsive hydrogels.
- To enable precise manipulation of single living cells using localized heating.
- To investigate the actuation characteristics of laser-driven hydrogel microgrippers.
Main Methods:
- Fabrication of a microgripper utilizing thermoresponsive hydrogels.
- Actuation of the hydrogel via localized heating with an infrared (IR) laser.
- Theoretical analysis of gripper actuation characteristics.
- Experimental validation of cell gripping capabilities for approximately 10 µm cells.
Main Results:
- The microgripper was successfully fabricated and actuated using IR laser irradiation.
- Theoretical analysis informed the design for gripping ≈10 µm cells.
- Successful gripping of a single living cell was demonstrated.
- The soft nature of the hydrogel actuator allowed for compliant cell manipulation.
Conclusions:
- A novel microgripper actuated by laser-heated thermoresponsive hydrogels is presented.
- The developed microgripper enables precise manipulation of single living cells.
- This technology holds potential for applications in cell biology and micro-robotics.

