In vivo electroporation in the embryonic mouse central nervous system (original) (raw)
References
Nagy, A., Gertsenstein, M., Vintersten, K. & Behringer, R. Manipulating the Mouse Embryo: A Laboratory Manual 3rd edn. (Cold Spring Harbor laboratory Press, Cold Spring Harbor, NY, USA, 2003). Google Scholar
Gaensler, K.M.L. et al. Fetal gene transfer by transuterine injection of cationic liposome–DNA complexes. Nature Biotechnol.17, 1188–1192 (1999). ArticleCAS Google Scholar
Yang, N.-S. & Sun, W.H. Gene gun and other non-viral approaches for cancer gene therapy. Nature Med.1, 481–483 (1995). ArticleCAS Google Scholar
Calvin, N.M. & Hanawalt, P.C. High-efficiency transformation of bacterial cells by electroporation. J. Bacteriol.170, 2796–2801 (1988). ArticleCAS Google Scholar
Neumann, E., Schaefer-Ridder, M., Wang, Y. & Hofschneider, P.H. Gene transfer into mouse lyoma cells by electroporation in high electric fields. EMBO J.1, 841–845 (1982). ArticleCAS Google Scholar
Fromm, M., Taylor, L.P. & Walbot, V. Expression of genes transferred into monocot and dicot plant cells by electroporation. Proc. Natl. Acad. Sci. USA82, 5824–5828 (1985). ArticleCAS Google Scholar
Aihara, H. & Miyazaki, J. Gene transfer into muscle by electroporation in vivo . Nature Biotechnol.16, 867–870 (1998). ArticleCAS Google Scholar
Muramatsu, T., Mizutani, Y., Ohmori, Y. & Okumura, J. Comparison of three nonviral transfection methods for foreign gene expression in early chicken embryos in ovo . Biochem. Biophys. Res. Comm.230, 376–380 (1997). ArticleCAS Google Scholar
Itasaki, N., Bel-Vialar, S. & Krumlauf, R. 'Shocking' developments in chick embryology: electroporation and in ovo gene expression. Nature Cell Biol.1, E203–E207 (1999). ArticleCAS Google Scholar
Saito, T. & Nakatsuji, N. Efficient gene transfer into the embryonic mouse brain using in vivo electroporation. Dev. Biol.240, 237–246 (2001). ArticleCAS Google Scholar
Saba, R., Nakatsuji, N. & Saito, T. Mammalian BarH1 confers commissural neuron identity on dorsal cells in the spinal cord. J. Neurosci.23, 1987–1991 (2003). ArticleCAS Google Scholar
Ding et al. Lmx1b controls the differentiation and migration of the superficial dorsal horn neurons of the spinal cord. Development131, 3693–3703 (2004). ArticleCAS Google Scholar
Hasegawa, H. et al. Laminar patterning in the developing neocortex by temporally coordinated fibroblast growth factor signaling. J. Neurosci.24, 8711–8719 (2004). ArticleCAS Google Scholar
Saba, R., Johnson, J.E. & Saito, T. Commissural neuron identity is specified by a homeodomain protein, Mbh1, that is directly downstream of Math1. Development132, 2147–2155 (2005). ArticleCAS Google Scholar
Molyneaux, B.J. et al. Fezl is required for the birth and specification of corticospinal motor neurons. Neuron47, 817–831 (2005). ArticleCAS Google Scholar
Nguyen, L. et al. p27kip1 independently promotes neuronal differentiation and migration in the cerebral cortex. Genes Dev.20, 1511–1524 (2006). ArticleCAS Google Scholar
Miyagi, S. et al. The Sox-2 regulatory regions display their activities in two distinct types of multipotent stem cells. Mol. Cell. Biol.24, 4207–4220 (2004). ArticleCAS Google Scholar
Mizutani, K. & Saito, T. Progenitors resume generating neurons after temporary inhibition of neurogenesis by Notch activation in the mammalian cerebral cortex. Development132, 1295–1304 (2005). ArticleCAS Google Scholar
Borell, V., Yoshimura, Y. & Callaway, E.M. Targeted gene delivery to telencephalic inhibitory neurons by directional in utero electroporation. J. Neurosci. Methods143, 151–158 (2005). Article Google Scholar
Kawauchi, D. et al. Direct visualization of nucleogenesis by precerebellar neurons: involvement of ventricle-directed, radial fibre-associated migration. Development133, 1113–1123 (2006). ArticleCAS Google Scholar
Pekarik, V. et al. Screening for gene function in chicken embryo using RNAi and electroporation. Nature Biotechnol.21, 93–96 (2003). ArticleCAS Google Scholar
Bai, J. et al. RNAi reveals doublecortin is required for radial migration in rat neocortex. Nature Neurosci.6, 1277–1283 (2003). ArticleCAS Google Scholar
Takeuchi, A. & O'Leary, D.M. Radial migration of superficial layer cortical neurons controlled by novel Ig cell adhesion molecule MDGA1. J. Neurosci.26, 4460–4464 (2006). ArticleCAS Google Scholar
Huang, Z. et al. In vivo transfection of testicular germ cells and transgenesis by using the mitochondrially localized jellyfish fluorescent protein gene. FEBS Lett.487, 248–251 (2000). ArticleCAS Google Scholar
Matsuda, T. & Cepko, C.L. Electroporation and RNA interference in the rodent retina in vivo and in vitro . Proc. Natl. Acad. Sci. USA101, 16–22 (2004). ArticleCAS Google Scholar
Muneoka, K., Wanek, N., Trevino, C. & Bryant, S.V. Exo utero surgery. in Postimplantation Mammalian Embryos: A Practical Approach (eds. Copp, A.J. & Cockroft, D.L.) 41–59 (Oxford University Press, Oxford, UK, 1990). Google Scholar