New approaches to increase the efficiency of non-viral gene delivery are still required. Here we report a simple approach that enhances gene delivery using permanent and pulsating magnetic fields. DNA plasmids and novel DNA fragments (PCR products) containing sequence encoding for green fluorescent protein were coupled to polyethylenimine coated superparamagnetic nanoparticles (SPIONs). The complexes were added to cells that were subsequently exposed to permanent and pulsating magnetic fields. Presence of these magnetic fields significantly increased the transfection efficiency 40 times more than in cells not exposed to the magnetic field. The transfection efficiency was highest when the nanoparticles were sedimented on the permanent magnet...
Abstract: The discovery in the early 2000’s that magnetic nanoparticles (MNPs) complexed to nonviral...
Gene delivery is the process of delivering foreign DNA into host cells. Viruses are commonly used b...
Superparamagnetic nanoparticles are promising candidates for gene delivery into mammalian somatic ce...
New approaches to increase the efficiency of non-viral gene delivery are still required. Here we rep...
Newapproaches to increase theefficiencyofnon-viral gene delivery are still required. Here we report ...
Gene delivery technologies to introduce foreign genes into highly differentiated mammalian cells hav...
The discovery in the early 2000’s that magnetic nanoparticles (MNPs) complexed to nonviral or viral ...
Development of a simple method for converting the lipid envelope of an inactivated virus to a gene t...
Several physical methods have been developed to introduce nucleic acid expression vectors into mamma...
In order to enhance and target gene delivery we have previously established a novel method, termed m...
In order to enhance and target gene delivery we have previously established a novel method, termed m...
Successful gene therapy depends upon specific gene delivery into the cells and tissues of interest. ...
Objective: To evaluate the feasibility of using magnetic nanoparticles (MNPs) as gene vector and the...
n recent years, nanotechnology has deployed a new set of theragnostic tools, including magnetic reso...
Gene therapy is a developing method for the treatment of various diseases. For this purpose, the sea...
Abstract: The discovery in the early 2000’s that magnetic nanoparticles (MNPs) complexed to nonviral...
Gene delivery is the process of delivering foreign DNA into host cells. Viruses are commonly used b...
Superparamagnetic nanoparticles are promising candidates for gene delivery into mammalian somatic ce...
New approaches to increase the efficiency of non-viral gene delivery are still required. Here we rep...
Newapproaches to increase theefficiencyofnon-viral gene delivery are still required. Here we report ...
Gene delivery technologies to introduce foreign genes into highly differentiated mammalian cells hav...
The discovery in the early 2000’s that magnetic nanoparticles (MNPs) complexed to nonviral or viral ...
Development of a simple method for converting the lipid envelope of an inactivated virus to a gene t...
Several physical methods have been developed to introduce nucleic acid expression vectors into mamma...
In order to enhance and target gene delivery we have previously established a novel method, termed m...
In order to enhance and target gene delivery we have previously established a novel method, termed m...
Successful gene therapy depends upon specific gene delivery into the cells and tissues of interest. ...
Objective: To evaluate the feasibility of using magnetic nanoparticles (MNPs) as gene vector and the...
n recent years, nanotechnology has deployed a new set of theragnostic tools, including magnetic reso...
Gene therapy is a developing method for the treatment of various diseases. For this purpose, the sea...
Abstract: The discovery in the early 2000’s that magnetic nanoparticles (MNPs) complexed to nonviral...
Gene delivery is the process of delivering foreign DNA into host cells. Viruses are commonly used b...
Superparamagnetic nanoparticles are promising candidates for gene delivery into mammalian somatic ce...