The cell selective introduction of therapeutic agents remains a challenging problem. Here we demonstrate spatially controlled cavitation instigated by laser-induced breakdown of an optically trapped single gold nanoparticle of diameter 100 nm. The energy breakdown threshold of the gold nanoparticle with a single nanosecond laser pulse at 532 nm is three orders of magnitude lower than water, which leads to nanocavitation allowing single cell transfection. We quantify the shear stress to cells from the expanding bubble and optimize the pressure to be in the range of 1–10 kPa for transfection. The method shows transfection of plasmid DNA into individual mammalian cells with an efficiency of 75%.4 page(s
Laser-assisted killing of gold nanoparticle targeted macrophages was investigated. Using pressure tr...
The introduction of naked DNA or other membrane impermeable substances into a cell (transfection) is...
There is a great interest in delivering macromolecular agents into living cells for therapeutic purp...
The cell selective introduction of therapeutic agents remains a challenging problem. Here we demonst...
Cell selective introduction of therapeutic agents remains a challenging problem. Cavitation-based th...
We demonstrate laser-induced breakdown of an optically trapped nanoparticle with a nanosecond laser ...
Laser based transfection methods have proven to be an efficient and gentle alternative to establishe...
Laser based transfection methods have proven to be an efficient and gentle alternative to establishe...
Shear stress has been recognized as one of the biophysical methods by which to permeabilize plasma m...
Laser based cell manipulation has proven to be a versatile tool in biomedical applications. In this ...
The controlled injection of nanoscopic objects into living cells with light offers promising prospec...
Laser based cell manipulation has proven to be a versatile tool in biomedical applications. In this ...
We report on transient membrane perforation of living cancer cells using plasmonic gold nanoparticle...
Metallic nanoparticles are routinely used as nanoscale antenna capable of absorbing and converting p...
Novel RNA-based technologies provide an avenue of possibilities to control the regulation of gene ex...
Laser-assisted killing of gold nanoparticle targeted macrophages was investigated. Using pressure tr...
The introduction of naked DNA or other membrane impermeable substances into a cell (transfection) is...
There is a great interest in delivering macromolecular agents into living cells for therapeutic purp...
The cell selective introduction of therapeutic agents remains a challenging problem. Here we demonst...
Cell selective introduction of therapeutic agents remains a challenging problem. Cavitation-based th...
We demonstrate laser-induced breakdown of an optically trapped nanoparticle with a nanosecond laser ...
Laser based transfection methods have proven to be an efficient and gentle alternative to establishe...
Laser based transfection methods have proven to be an efficient and gentle alternative to establishe...
Shear stress has been recognized as one of the biophysical methods by which to permeabilize plasma m...
Laser based cell manipulation has proven to be a versatile tool in biomedical applications. In this ...
The controlled injection of nanoscopic objects into living cells with light offers promising prospec...
Laser based cell manipulation has proven to be a versatile tool in biomedical applications. In this ...
We report on transient membrane perforation of living cancer cells using plasmonic gold nanoparticle...
Metallic nanoparticles are routinely used as nanoscale antenna capable of absorbing and converting p...
Novel RNA-based technologies provide an avenue of possibilities to control the regulation of gene ex...
Laser-assisted killing of gold nanoparticle targeted macrophages was investigated. Using pressure tr...
The introduction of naked DNA or other membrane impermeable substances into a cell (transfection) is...
There is a great interest in delivering macromolecular agents into living cells for therapeutic purp...