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Sho Yoshimatsu

Showing results (11-20 of 27) with videos related to

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Stem Cell Research|April 2, 2021
Generation of a common marmoset embryonic stem cell line CMES40-OC harboring a POU5F1 (OCT4)-2A-mCerulean3 knock-in reporter alleleSho Yoshimatsu, Rei Murakami, Tsukika Sato, et al.
Biochemical and Biophysical Research Communications|June 11, 2019
Establishment of induced pluripotent stem cells from common marmoset fibroblasts by RNA-based reprogrammingMayutaka Nakajima, Sho Yoshimatsu, Tsukika Sato, et al.
Cells|December 30, 2020
Direct Neuronal Reprogramming of Common Marmoset Fibroblasts by ASCL1, microRNA-9/9*, and microRNA-124 OverexpressionAkisa Nemoto, Reona Kobayashi, Sho Yoshimatsu, et al.
Stem Cell Reports|November 14, 2017
Naive-like ESRRB<sup>+</sup> iPSCs with the Capacity for Rapid Neural DifferentiationFumihiko Kisa, Seiji Shiozawa, Keisuke Oda, et al.
Stem Cell Research|June 5, 2021
Non-viral derivation of a transgene-free induced pluripotent stem cell line from a male beagle dogSho Yoshimatsu, Kazuya Edamura, Yumi Yoshii, et al.
Stem Cell Research|March 11, 2020
Generation of a male common marmoset embryonic stem cell line DSY127-BV8VT1 carrying double reporters specific for the germ cell linage using the CRISPR-Cas9 and PiggyBac transposase systemsSho Yoshimatsu, Tsukika Sato, Masafumi Yamamoto, et al.
Scientific Reports|February 8, 2019
Robust and efficient knock-in in embryonic stem cells and early-stage embryos of the common marmoset using the CRISPR-Cas9 systemSho Yoshimatsu, Junko Okahara, Takefumi Sone, et al.
Inflammation and Regeneration|April 3, 2023
A human induced pluripotent stem cell model from a patient with hereditary cerebral small vessel disease carrying a heterozygous R302Q mutation in HTRA1Emi Qian, Masahiro Uemura, Hiroya Kobayashi, et al.
Plos One|August 28, 2019
A versatile toolbox for knock-in gene targeting based on the Multisite Gateway technologySho Yoshimatsu, Takefumi Sone, Mayutaka Nakajima, et al.
Development, Growth & Differentiation|July 16, 2022
Step-by-step protocols for non-viral derivation of transgene-free induced pluripotent stem cells from somatic fibroblasts of multiple mammalian speciesSho Yoshimatsu, Atsushi Yamazaki, Kazuya Edamura, et al.
Pageof 3

Showing results (11-20 of 27) with videos related to

Sort By:
Pageof 3
Stem Cell Research|April 2, 2021
Generation of a common marmoset embryonic stem cell line CMES40-OC harboring a POU5F1 (OCT4)-2A-mCerulean3 knock-in reporter alleleSho Yoshimatsu, Rei Murakami, Tsukika Sato, et al.
Biochemical and Biophysical Research Communications|June 11, 2019
Establishment of induced pluripotent stem cells from common marmoset fibroblasts by RNA-based reprogrammingMayutaka Nakajima, Sho Yoshimatsu, Tsukika Sato, et al.
Cells|December 30, 2020
Direct Neuronal Reprogramming of Common Marmoset Fibroblasts by ASCL1, microRNA-9/9*, and microRNA-124 OverexpressionAkisa Nemoto, Reona Kobayashi, Sho Yoshimatsu, et al.
Stem Cell Reports|November 14, 2017
Naive-like ESRRB<sup>+</sup> iPSCs with the Capacity for Rapid Neural DifferentiationFumihiko Kisa, Seiji Shiozawa, Keisuke Oda, et al.
Stem Cell Research|June 5, 2021
Non-viral derivation of a transgene-free induced pluripotent stem cell line from a male beagle dogSho Yoshimatsu, Kazuya Edamura, Yumi Yoshii, et al.
Stem Cell Research|March 11, 2020
Generation of a male common marmoset embryonic stem cell line DSY127-BV8VT1 carrying double reporters specific for the germ cell linage using the CRISPR-Cas9 and PiggyBac transposase systemsSho Yoshimatsu, Tsukika Sato, Masafumi Yamamoto, et al.
Scientific Reports|February 8, 2019
Robust and efficient knock-in in embryonic stem cells and early-stage embryos of the common marmoset using the CRISPR-Cas9 systemSho Yoshimatsu, Junko Okahara, Takefumi Sone, et al.
Inflammation and Regeneration|April 3, 2023
A human induced pluripotent stem cell model from a patient with hereditary cerebral small vessel disease carrying a heterozygous R302Q mutation in HTRA1Emi Qian, Masahiro Uemura, Hiroya Kobayashi, et al.
Plos One|August 28, 2019
A versatile toolbox for knock-in gene targeting based on the Multisite Gateway technologySho Yoshimatsu, Takefumi Sone, Mayutaka Nakajima, et al.
Development, Growth & Differentiation|July 16, 2022
Step-by-step protocols for non-viral derivation of transgene-free induced pluripotent stem cells from somatic fibroblasts of multiple mammalian speciesSho Yoshimatsu, Atsushi Yamazaki, Kazuya Edamura, et al.
Pageof 3