International audienceIn vivo brain electroporation of DNA expression vectors is a widely used method for lineage and gene function studies in the developing and postnatal brain. However, transfection efficiency of DNA is limited and adult brain tissue is refractory to electroporation. Here, we present a systematic study of mRNA as a vector for acute genetic manipulation in the developing and adult brain. We demonstrate that mRNA electroporation is far more efficient than DNA electroporation, and leads to faster and more homogeneous protein expression in vivo Importantly, mRNA electroporation allows the manipulation of neural stem cells and postmitotic neurons in the adult brain using minimally invasive procedures. Finally, we show that thi...
Telencephalic inhibitory neurons originate in the ganglionic eminences and migrate to the cerebral c...
Abstract Background Manipulation of gene expression v...
Viral gene transfer or transgenic animals are commonly used technologies to alter gene expression in...
International audienceIn vivo brain electroporation of DNA expression vectors is a widely used metho...
The use of synthetic mRNA as an alternative gene delivery vector to traditional DNA-based constructs...
Electroporation is a widely used technique for enhancing the efficiency of DNA delivery into cells. ...
The use of synthetic mRNA as an alternative gene delivery vector to traditional DNA-based constructs...
The use of synthetic mRNA as an alternative gene delivery vector to traditional DNA-based constructs...
AbstractMouse genetic manipulation has provided an excellent system to characterize gene function in...
Functional gene analysis in vivo represents still a major challenge in biomedical research. Here we ...
International audienceFunctional gene analysis in vivo represents still a major challenge in biomedi...
Electroporation of non-viral plasmid DNA is a valuable tool to alter gene expression in the adult ce...
Electroporation has established itself as a critical method for transferring specific genes into cel...
Neurogenesis persists in the olfactory system throughout life. The mechanisms of how new neurons are...
AbstractWe report an electroporation technique for targeting gene transfer to individual cells in in...
Telencephalic inhibitory neurons originate in the ganglionic eminences and migrate to the cerebral c...
Abstract Background Manipulation of gene expression v...
Viral gene transfer or transgenic animals are commonly used technologies to alter gene expression in...
International audienceIn vivo brain electroporation of DNA expression vectors is a widely used metho...
The use of synthetic mRNA as an alternative gene delivery vector to traditional DNA-based constructs...
Electroporation is a widely used technique for enhancing the efficiency of DNA delivery into cells. ...
The use of synthetic mRNA as an alternative gene delivery vector to traditional DNA-based constructs...
The use of synthetic mRNA as an alternative gene delivery vector to traditional DNA-based constructs...
AbstractMouse genetic manipulation has provided an excellent system to characterize gene function in...
Functional gene analysis in vivo represents still a major challenge in biomedical research. Here we ...
International audienceFunctional gene analysis in vivo represents still a major challenge in biomedi...
Electroporation of non-viral plasmid DNA is a valuable tool to alter gene expression in the adult ce...
Electroporation has established itself as a critical method for transferring specific genes into cel...
Neurogenesis persists in the olfactory system throughout life. The mechanisms of how new neurons are...
AbstractWe report an electroporation technique for targeting gene transfer to individual cells in in...
Telencephalic inhibitory neurons originate in the ganglionic eminences and migrate to the cerebral c...
Abstract Background Manipulation of gene expression v...
Viral gene transfer or transgenic animals are commonly used technologies to alter gene expression in...