Publication | Closed Access
Phototransistor-Based Optoelectronic Tweezers for Cell Manipulation in Highly Conductive Solution
18
Citations
3
References
2007
Year
Photonic SensorEngineeringCell Culture MediaBiofabricationOptoelectronic DevicesBiomedical EngineeringPhysiological BuffersBiosensing SystemsBiomedical OpticBiomedical DevicesBioimagingPhotopolymer NetworkBiophysicsOptoelectronic MaterialsBiophotonicsCell ManipulationCell EngineeringCellular BioengineeringBiomedical DiagnosticsApplied PhysicsBiomedical PhotonicsOptical TrappingHigh-conductivity SolutionsMedicineOptoelectronics
We report on a novel phototransistor-based optoelectronic tweezers (OET) that, for the first time, enables operation in high-conductivity solutions, such as physiological buffers and cell culture media. This new capability allows the manipulation of cells in biocompatible environments. The controlled transport of HeLa and Jurkat cells at velocities of up to 35 μm/s in phosphate-buffered saline (PBS) solution has been demonstrated.
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