Angewandte Chemie · 2014 · 84 citations · 26 references
Biomedical AcousticsEngineeringBiological Effects Of Acoustic WavesBiomedical EngineeringMicromachinesSoft RoboticsMolecular MotorsBiomedical DevicesBiophysicsMechanobiologyNanoroboticsCell BiomechanicsUltrasoundNanorod MotorsCellular BioengineeringMicrofabricationAcoustic PropulsionAcoustic TweezerInternal Mechanical ExcitationNanofabricationMedicineUltrasonic PropulsionMicromachined Ultrasonic Transducer
Abstract The ultrasonic propulsion of rod‐shaped nanomotors inside living HeLa cells is demonstrated. These nanomotors (gold rods about 300 nm in diameter and about 3 μm long) attach strongly to the external surface of the cells, and are readily internalized by incubation with the cells for periods longer than 24 h. Once inside the cells, the nanorod motors can be activated by resonant ultrasound operating at 4 MHz, and show axial propulsion as well as spinning. The intracellular propulsion does not involve chemical fuels or high‐power ultrasound and the HeLa cells remain viable. Ultrasonic propulsion of nanomotors may thus provide a new tool for probing the response of living cells to internal mechanical excitation, for controllably manipulating intracellular organelles, and for biomedical applications.
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Autonomous Motion of Metallic Microrods Propelled by Ultrasound
Wei Wang, Luz Angelica Castro, Mauricio Hoyos et al. · ACS Nano · 2012 · 722 citations