Magnetic nanoparticles are widely used in bioapplications such as imaging (MRI), targeted delivery (drugs/genes) and cell transfection (magnetofection). Historically, the impermeable nature of both the plasma and nuclear membranes hinder potential. Researchers combat this by developing techniques to enhance cellular and nuclear uptake. Two current popular methods are using external magnetic fields to remotely control particle direction or functionalising the nanoparticles with a cell penetrating peptide (e.g. tat); both of which facilitate cell entry. This paper compares the success of both methods in terms of nanoparticle uptake, analysing the type of magnetic forces the particles experience, and determines gross cell response in terms of ...
in theranostics [4]. This was a term coined to express simultaneous execution of therapy and diagnos...
Nanoparticles (NPs) are currently being developed as vehicles for in vivo drug delivery. Two of the ...
BACKGROUND: The ability to direct and manipulate neuronal cells has important potential in therapeut...
Nanotechnology plays an increasingly important role in the biomedical arena. In particular, magnetic...
Aim: With regards to nanoparticles, all biomedical applications require cellular uptake, which to da...
Several physical methods have been developed to introduce nucleic acid expression vectors into mamma...
Nanotechnology plays an increasingly important role in the biomedical arena. In particular, magnetic...
Magnetococcus marinus magnetosome-associated protein MamC, expressed as recombinant, has been proven...
Abstract: The discovery in the early 2000’s that magnetic nanoparticles (MNPs) complexed to nonviral...
Nanoparticles (NPs) are currently being developed as vehicles for in vivo drug delivery. Two of the ...
Magnetococcus marinus magnetosome-associated protein MamC, expressed as recombinant, has been proven...
The manipulation of magnetic nanoparticles (MNPs) using an external magnetic field, has been success...
The aim of this project was to develop a platform technology for the delivery of Magnetic Nanopartic...
Attempts have been made to use various forms of cellular vectors to deliver therapeutic genes to dis...
Efficient non-viral plasmid DNA transfection of most stem cells, progenitor cells and primary cell l...
in theranostics [4]. This was a term coined to express simultaneous execution of therapy and diagnos...
Nanoparticles (NPs) are currently being developed as vehicles for in vivo drug delivery. Two of the ...
BACKGROUND: The ability to direct and manipulate neuronal cells has important potential in therapeut...
Nanotechnology plays an increasingly important role in the biomedical arena. In particular, magnetic...
Aim: With regards to nanoparticles, all biomedical applications require cellular uptake, which to da...
Several physical methods have been developed to introduce nucleic acid expression vectors into mamma...
Nanotechnology plays an increasingly important role in the biomedical arena. In particular, magnetic...
Magnetococcus marinus magnetosome-associated protein MamC, expressed as recombinant, has been proven...
Abstract: The discovery in the early 2000’s that magnetic nanoparticles (MNPs) complexed to nonviral...
Nanoparticles (NPs) are currently being developed as vehicles for in vivo drug delivery. Two of the ...
Magnetococcus marinus magnetosome-associated protein MamC, expressed as recombinant, has been proven...
The manipulation of magnetic nanoparticles (MNPs) using an external magnetic field, has been success...
The aim of this project was to develop a platform technology for the delivery of Magnetic Nanopartic...
Attempts have been made to use various forms of cellular vectors to deliver therapeutic genes to dis...
Efficient non-viral plasmid DNA transfection of most stem cells, progenitor cells and primary cell l...
in theranostics [4]. This was a term coined to express simultaneous execution of therapy and diagnos...
Nanoparticles (NPs) are currently being developed as vehicles for in vivo drug delivery. Two of the ...
BACKGROUND: The ability to direct and manipulate neuronal cells has important potential in therapeut...