Spatially optimized gene transfection by laser-induced breakdown of optically trapped nanoparticles

in: Applied Physics Letters (2011)
Arita, Yoshihiko ; Torres-Mapa, Maria Leilani; Lee, Woei Ming ; Čižmár, Tomáš; Campbell, Paul ; Gunn-Moore, Frank J.; Dholakia, Kishan
We demonstrate laser-induced breakdown of an optically trapped nanoparticle with a nanosecond laser pulse. Controllable cavitation within a microscope sample was achieved, generating shear stress to monolayers of live cells. This efficiently permeabilize their plasma membranes. We show that this technique is an excellent tool for plasmid-DNA transfection of cells with both reduced energy requirements and reduced cell lysis compared to previously reported approaches. Simultaneous multisite targeted nanosurgery of cells is also demonstrated using a spatial light modulator for parallelizing the technique. (C) 2011 American Institute of Physics. [doi:10.1063/1.3554415]

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