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Naoki Nishida

Showing results (131-140 of 144) with videos related to

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Science Translational Medicine|February 19, 2025
β cell dedifferentiation, the underlying mechanism of diabetes in Wolfram syndromeKikuko Amo-Shiinoki, Katsuya Tanabe, Wataru Nishimura, et al.
Journal of Molecular and Cellular Cardiology|April 10, 2014
A590T mutation in KCNQ1 C-terminal helix D decreases IKs channel trafficking and function but not Yotiao interactionKoshi Kinoshita, Takuto Komatsu, Kohki Nishide, et al.
Gene|December 26, 2012
14-3-3ε gene variants in a Japanese patient with left ventricular noncompaction and hypoplasia of the corpus callosumBo Chang, Carlos Gorbea, George Lezin, et al.
Plos One|April 3, 2020
TBX5 R264K acts as a modifier to develop dilated cardiomyopathy in mice independently of T-box pathwayNariaki Miyao, Yukiko Hata, Hironori Izumi, et al.
Pediatric Research|September 7, 2018
Sarcomere gene variants act as a genetic trigger underlying the development of left ventricular noncompactionAsami Takasaki, Keiichi Hirono, Yukiko Hata, et al.
International Journal of Cardiology|December 14, 2020
A burden of sarcomere gene variants in fetal-onset patients with left ventricular noncompactionKeiichi Hirono, Yukiko Hata, Sayaka Watanabe Ozawa, et al.
Molecular Therapy : the Journal of the American Society of Gene Therapy|October 15, 2019
Rescue from Stx2-Producing E. coli-Associated Encephalopathy by Intravenous Injection of Muse Cells in NOD-SCID MiceRyo Ozuru, Shohei Wakao, Takahiro Tsuji, et al.
Molecular Therapy : the Journal of the American Society of Gene Therapy|January 29, 2025
Rescue from Stx2-Producing E. coli-Associated Encephalopathy by Intravenous Injection of Muse Cells in NOD-SCID MiceRyo Ozuru, Shohei Wakao, Takahiro Tsuji, et al.
Plos One|November 14, 2025
Metabolic remodeling and cardiac dysfunction in left ventricular noncompaction: Insights from the MYH7 Q315R modelShinya Takarada, Yukiko Hata, Keisuke Yaku, et al.
Developmental Cell|January 27, 2015
A role for the ancient SNARE syntaxin 17 in regulating mitochondrial divisionKohei Arasaki, Hiroaki Shimizu, Hirofumi Mogari, et al.
Pageof 15

Showing results (131-140 of 144) with videos related to

Sort By:
Pageof 15
Science Translational Medicine|February 19, 2025
β cell dedifferentiation, the underlying mechanism of diabetes in Wolfram syndromeKikuko Amo-Shiinoki, Katsuya Tanabe, Wataru Nishimura, et al.
Journal of Molecular and Cellular Cardiology|April 10, 2014
A590T mutation in KCNQ1 C-terminal helix D decreases IKs channel trafficking and function but not Yotiao interactionKoshi Kinoshita, Takuto Komatsu, Kohki Nishide, et al.
Gene|December 26, 2012
14-3-3ε gene variants in a Japanese patient with left ventricular noncompaction and hypoplasia of the corpus callosumBo Chang, Carlos Gorbea, George Lezin, et al.
Plos One|April 3, 2020
TBX5 R264K acts as a modifier to develop dilated cardiomyopathy in mice independently of T-box pathwayNariaki Miyao, Yukiko Hata, Hironori Izumi, et al.
Pediatric Research|September 7, 2018
Sarcomere gene variants act as a genetic trigger underlying the development of left ventricular noncompactionAsami Takasaki, Keiichi Hirono, Yukiko Hata, et al.
International Journal of Cardiology|December 14, 2020
A burden of sarcomere gene variants in fetal-onset patients with left ventricular noncompactionKeiichi Hirono, Yukiko Hata, Sayaka Watanabe Ozawa, et al.
Molecular Therapy : the Journal of the American Society of Gene Therapy|October 15, 2019
Rescue from Stx2-Producing E. coli-Associated Encephalopathy by Intravenous Injection of Muse Cells in NOD-SCID MiceRyo Ozuru, Shohei Wakao, Takahiro Tsuji, et al.
Molecular Therapy : the Journal of the American Society of Gene Therapy|January 29, 2025
Rescue from Stx2-Producing E. coli-Associated Encephalopathy by Intravenous Injection of Muse Cells in NOD-SCID MiceRyo Ozuru, Shohei Wakao, Takahiro Tsuji, et al.
Plos One|November 14, 2025
Metabolic remodeling and cardiac dysfunction in left ventricular noncompaction: Insights from the MYH7 Q315R modelShinya Takarada, Yukiko Hata, Keisuke Yaku, et al.
Developmental Cell|January 27, 2015
A role for the ancient SNARE syntaxin 17 in regulating mitochondrial divisionKohei Arasaki, Hiroaki Shimizu, Hirofumi Mogari, et al.
Pageof 15