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Updated: Jan 28, 2026

Photoacoustic Cystography
Published on: June 11, 2013
Photoacoustic transfection of DNA encoding GFP
Alexandre D Silva1, Carlos Serpa2, Luis G Arnaut3
1CQC, Department of Chemistry, University of Coimbra, Rua Larga, 3004-535, Coimbra, Portugal.
Abstract:
Photoacoustic transfection consists in the use of photoacoustic waves, generated in the thermoelastic expansion of a confined material absorbing a short pulse of a laser, to produce temporary mechanical deformations of the cell membrane and facilitate the delivery of plasmid DNA into cells. We show that high stress gradients, produced when picosecond laser pulses with a fluence of 100 mJ/cm2 are absorbed by piezophotonic materials, enable transfection of a plasmid DNA encoding Green Fluorescent Protein (gWizGFP, 3.74 MDa) in COS-7 monkey fibroblast cells with an efficiency of 5% at 20 °C, in 10 minutes. We did not observe significant cytotoxicity under these conditions. Photoacoustic transfection is scalable, affordable, enables nuclear localization and the dosage is easily controlled by the laser parameters.
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