Genetically engineered neural stem cell (NSC) transplants offer a key strategy to augment neural repair by releasing therapeutic biomolecules into injury sites. Genetic modification of NSCs is heavily reliant on viral vectors but cytotoxic effects have prompted development of non-viral alternatives, such as magnetic nanoparticle (MNPs). NSCs are propagated in laboratories as either 3-D suspension “neurospheres” or 2-D adherent “monolayers”. MNPs deployed with oscillating magnetic fields (“magnetofection technology”) mediate effective gene transfer to neurospheres but the efficacy of this approach for monolayers is unknown. It is important to address this issue as oscillating magnetic fields dramatically enhance MNP-based transfection in tra...
Genetically engineered neural stem cell (NSC) transplant populations offer key benefits in regenerat...
Successful gene therapy depends upon specific gene delivery into the cells and tissues of interest. ...
Electronic version of an article published as Nano LIFE, Volume 5, Issue 1, 2014, Article DOI:10.114...
Genetically engineered neural stem cell (NSC) transplants offer a key strategy to augment neural rep...
Genetically engineered neural stem cell (NSC) transplants offer a key strategy to augment neural rep...
Neural stem cells (NSCs) have high translational potential in transplantation therapies for neural r...
This is the peer reviewed version of the following article: Pickard, M. R., Adams, C. F., & Chari, D...
Abstract: Genetically engineered neural stem cell (NSC) transplants offer a key strategy to augment ...
Transplantation of genetically engineered neural stem cells (NSCs) into sites of central nervous sys...
Genetic engineering of cell transplant populations offers potential for delivery of neurotherapeutic...
Neural stem cells (NSCs) have a high therapeutic potential for patients with neurological disease/in...
Oligodendrocyte precursor cells (OPCs) have shown high promise as a transplant population to promote...
Oligodendrocyte precursor cells (OPCs) have shown high promise as a transplant population to promote...
Tissue engineering studies are witnessing a major paradigm shift to cell culture on biomimetic mater...
Both neurotrophin-based therapy and neural stem cell (NSC)-based strategies have progressed to clini...
Genetically engineered neural stem cell (NSC) transplant populations offer key benefits in regenerat...
Successful gene therapy depends upon specific gene delivery into the cells and tissues of interest. ...
Electronic version of an article published as Nano LIFE, Volume 5, Issue 1, 2014, Article DOI:10.114...
Genetically engineered neural stem cell (NSC) transplants offer a key strategy to augment neural rep...
Genetically engineered neural stem cell (NSC) transplants offer a key strategy to augment neural rep...
Neural stem cells (NSCs) have high translational potential in transplantation therapies for neural r...
This is the peer reviewed version of the following article: Pickard, M. R., Adams, C. F., & Chari, D...
Abstract: Genetically engineered neural stem cell (NSC) transplants offer a key strategy to augment ...
Transplantation of genetically engineered neural stem cells (NSCs) into sites of central nervous sys...
Genetic engineering of cell transplant populations offers potential for delivery of neurotherapeutic...
Neural stem cells (NSCs) have a high therapeutic potential for patients with neurological disease/in...
Oligodendrocyte precursor cells (OPCs) have shown high promise as a transplant population to promote...
Oligodendrocyte precursor cells (OPCs) have shown high promise as a transplant population to promote...
Tissue engineering studies are witnessing a major paradigm shift to cell culture on biomimetic mater...
Both neurotrophin-based therapy and neural stem cell (NSC)-based strategies have progressed to clini...
Genetically engineered neural stem cell (NSC) transplant populations offer key benefits in regenerat...
Successful gene therapy depends upon specific gene delivery into the cells and tissues of interest. ...
Electronic version of an article published as Nano LIFE, Volume 5, Issue 1, 2014, Article DOI:10.114...