Showing results (1-10 of 498) with videos related to
Sort By:
Pageof 50
Biotech (Basel (Switzerland))|May 23, 2023
Recent Genome-Editing Approaches toward Post-Implanted Fetuses in MiceShingo Nakamura, Emi Inada, Issei Saitoh, et al.Pharmaceutics|March 25, 2020
<i>piggy</i>Bac-Based Non-Viral In Vivo Gene Delivery Useful for Production of Genetically Modified Animals and OrgansMasahiro Sato, Emi Inada, Issei Saitoh, et al.Biotech (Basel (Switzerland))|November 25, 2024
Artificial Insemination as a Possible Convenient Tool to Acquire Genome-Edited Mice via In Vivo Fertilization with Engineered SpermMasahiro Sato, Emi Inada, Issei Saitoh, et al.International Journal of Molecular Sciences|June 29, 2019
In Vivo <i>Piggy</i>bac-Based Gene Delivery towards Murine Pancreatic Parenchyma Confers Sustained Expression of Gene of InterestMasahiro Sato, Emi Inada, Issei Saitoh, et al.Stem Cells International|July 9, 2019
Potential for Isolation of Immortalized Hepatocyte Cell Lines by Liver-Directed <i>In Vivo</i> Gene Delivery of Transposons in MiceMasahiro Sato, Issei Saitoh, Emi Inada, et al.International Journal of Molecular Sciences|August 3, 2017
Intrapancreatic Parenchymal Injection of Cells as a Useful Tool for Allowing a Small Number of Proliferative Cells to Grow In VivoMasahiro Sato, Issei Saitoh, Tomoya Murakami, et al.International Journal of Molecular Sciences|October 28, 2023
Recent Advances in In Vivo Somatic Cell Gene Modification in Newborn PupsShingo Nakamura, Kazunori Morohoshi, Emi Inada, et al.Biotechnology Journal|August 16, 2013
Site-targeted non-viral gene delivery by direct DNA injection into the pancreatic parenchyma and subsequent in vivo electroporation in miceMasahiro Sato, Emi Inada, Issei Saitoh, et al.Biotechnology Journal|October 28, 2014
A combination of targeted toxin technology and the piggyBac-mediated gene transfer system enables efficient isolation of stable transfectants in nonhuman mammalian cellsMasahiro Sato, Emi Inada, Issei Saitoh, et al.International Journal of Molecular Sciences|August 7, 2015
Direct Injection of CRISPR/Cas9-Related mRNA into Cytoplasm of Parthenogenetically Activated Porcine Oocytes Causes Frequent Mosaicism for Indel MutationsMasahiro Sato, Miyu Koriyama, Satoshi Watanabe, et al.Pageof 50