Cookies help us deliver our services. By using our services, you agree to our use of cookies. More information

Difference between revisions of "Matsumoto J"

From Bioblast
Line 1: Line 1:
{{Person
{{Person
|lastname=Matsumoto  
|lastname=Matsumoto
|firstname=Junichi
|firstname=Junichi
|institution=Hokkaido University  
|institution=Hokkaido University  


Department of Cardiovascular Medicine, Hokkaido University Graduate School of Medicine
Department of Cardiovascular Medicine, Hokkaido University Graduate School of Medicine
 
|address=Kita 15 Nishi 7, Kita-ku
|address=5 Chome Kita 8 Jōnishi
|area code=060-8638
|area code=060-0808
|city=Sapporo
|city=Sapporo
|country=Japan
|country=Japan

Revision as of 10:20, 4 November 2016

Name Matsumoto Junichi,
Institution Hokkaido University

Department of Cardiovascular Medicine, Hokkaido University Graduate School of Medicine

Address Kita 15 Nishi 7, Kita-ku, 060-8638
City Sapporo
State/Province
Country Japan
Email [email protected]
Weblink
O2k-Network Lab JP Sapporo Yokota T


Labels:



Publications

 PublishedReference
Furihata 2021 Commun Biol2021Furihata T, Takada S, Kakutani N, Maekawa S, Tsuda M, Matsumoto J, Mizushima W, Fukushima A, Yokota T, Enzan N, Matsushima S, Handa H, Fumoto Y, Nio-Kobayashi J, Iwanaga T, Tanaka S, Tsutsui H, Sabe H, Kinugawa S (2021) Cardiac-specific loss of mitoNEET expression is linked with age-related heart failure. Commun Biol 4:138.
Nambu 2019 Eur J Pharmacol2019Nambu H, Takada S, Fukushima A, Matsumoto J, Kakutani N, Maekawa S, Shirakawa R, Nakano I, Furihata T, Katayama T, Yamanashi K, Obata Y, Saito A, Yokota T, Kinugawa S (2019) Empagliflozin restores lowered exercise endurance capacity via the activation of skeletal muscle fatty acid oxidation in a murine model of heart failure. Eur J Pharmacol 866:172810.
Tsuda 2018 J Cachexia Sarcopenia Muscle2018Tsuda M, Fukushima A, Matsumoto J, Takada S, Kakutani N, Nambu H, Yamanashi K, Furihata T, Yokota T, Okita K, Kinugawa S, Anzai T (2018) Protein acetylation in skeletal muscle mitochondria is involved in impaired fatty acid oxidation and exercise intolerance in heart failure. J Cachexia Sarcopenia Muscle 9:844-59.
Matsumoto 2018 Circulation2018Matsumoto J, Takada S, Kinugawa S, Furihata T, Nambu H, Kakutani N, Tsuda M, Fukushima A, Yokota T, Tanaka S, Takahashi H, Watanabe M, Hatakeyama S, Matsumoto M, Nakayama KI, Otsuka Y, Sabe H, Tsutsui H, Anzai T (2018) Brain-derived neurotrophic factor improves limited exercise capacity in mice with heart failure. Circulation 138:2064-66.
Mizushima 2016 J Mol Cell Cardiol2016Mizushima W, Takahashi H, Watanabe M, Kinugawa S, Matsushima S, Takada S, Yokota T, Furihata T, Matsumoto J, Tsuda M, Chiba I, Nagashima S, Yanagi S, Matsumoto M, Nakayama KI, Tsutsui H, Hatakeyama S (2016) The novel heart-specific RING finger protein 207 is involved in energy metabolism in cardiomyocytes. J Mol Cell Cardiol 100:43-53.

Abstracts

 PublishedReference
Nakajima 2017 Europ Heart J2017Mitochondrial dysfunction in epicardial adipose tissue; possible role in progression of coronary artery disease.

Participated at