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Clinical Calcium|December 28, 2017
[Mechanisms of systemic energy metabolism control through gene regulation in skeletal muscle.]Jun Tanihata, Shin'ichi Takeda
Clinical Calcium|November 26, 2016
[Changes in cytosolic Ca2+dynamics associated with muscular dystrophy.]Jun Tanihata, Shin'ichi Takeda
The Journal of Gene Medicine|March 15, 2008
Downstream utrophin enhancer is required for expression of utrophin in skeletal muscleJun Tanihata, Naoki Suzuki, Yuko Miyagoe-Suzuki, et al.
Free Radical Biology & Medicine|February 10, 2015
Low intensity training of mdx mice reduces carbonylation and increases expression levels of proteins involved in energy metabolism and muscle contractionJanek Hyzewicz, Jun Tanihata, Mutsuki Kuraoka, et al.
Muscle & Nerve|June 5, 2020
Glycerophospholipid profile alterations are associated with murine muscle-wasting phenotypeNanami Senoo, Noriyuki Miyoshi, Eri Kobayashi, et al.
The American Journal of Pathology|March 20, 2017
Low-Intensity Training and the C5a Complement Antagonist NOX-D21 Rescue the mdx Phenotype through Modulation of InflammationJanek Hyzewicz, Jun Tanihata, Mutsuki Kuraoka, et al.
BMC Musculoskeletal Disorders|July 23, 2020
iNOS is not responsible for RyR1 S-nitrosylation in mdx mice with truncated dystrophinKen'ichiro Nogami, Yusuke Maruyama, Ahmed Elhussieny, et al.
Plos One|January 31, 2019
Characterization of a novel microRNA, miR-188, elevated in serum of muscular dystrophy dog modelHiroyuki Shibasaki, Michihiro Imamura, Sayuri Arima, et al.
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