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TypeAuthor(s)TitleOther TitlesCitationCitation(alt)Issue Date
articleFurihata, Takaaki; Kinugawa, Shintaro; Takada, Shingo; Fukushima, Arata; Takahashi, Masashige; Homma, Tsuneaki; Masaki, Yoshihiro; Tsuda, Masaya; Matsumoto, Junichi; Mizushima, Wataru; Matsushima, Shouji; Yokota, Takashi; Tsutsui, HiroyukiThe experimental model of transition from compensated cardiac hypertrophy to failure created by transverse aortic constriction in mice-IJC Heart & Vasculature-Jun-2016
articleKakutani, Naoya; Fukushima, Arata; Yokota, Takashi; Katayama, Takashi; Nambu, Hideo; Shirakawa, Ryosuke; Maekawa, Satoshi; Abe, Takahiro; Takada, Shingo; Furihata, Takaaki; Ono, Kota; Okita, Koichi; Kinugawa, Shintaro; Anzai, ToshihisaImpact of High Respiratory Exchange Ratio During Submaximal Exercise on Adverse Clinical Outcome in Heart Failure-Circulation Journal-2018
articleNakajima, Takayuki; Yokota, Takashi; Shingu, Yasushige; Yamada, Akira; Iba, Yutaka; Ujihira, Kosuke; Wakasa, Satoru; Ooka, Tomonori; Takada, Shingo; Shirakawa, Ryosuke; Katayama, Takashi; Furihata, Takaaki; Fukushima, Arata; Matsuoka, Ryosuke; Nishihara, Hiroshi; Dela, Flemming; Nakanishi, Katsuhiko; Matsui, Yoshiro; Kinugawa, ShintaroImpaired mitochondrial oxidative phosphorylation capacity in epicardial adipose tissue is associated with decreased concentration of adiponectin and severity of coronary atherosclerosis-Scientific reports-5-Mar-2019
articleMatsushima, Shouji; Kinugawa, Shintaro; Yokota, Takashi; Inoue, Naoki; Ohta, Yukihiro; Hamaguchi, Sanae; Tsutsui, HiroyukiIncreased myocardial NAD(P)H oxidase-derived superoxide causes the exacerbation of postinfarct heart failure in type 2 diabetes-American Journal of Physiology-Heart and Circulatory Physiology-2009
articleSuga, Tadashi; Okita, Koichi; Morita, Noriteru; Yokota, Takashi; Hirabayashi, Kagami; Horiuchi, Masahiro; Takada, Shingo; Takahashi, Tomohiro; Omokawa, Masashi; Kinugawa, Shintaro; Tsutsui, HiroyukiIntramuscular metabolism during low-intensity resistance exercise with blood flow restriction-Journal of Applied Physiology-2009
article (author version)Hirabayashi, Kagami; Kinugawa, Shintaro; Yokota, Takashi; Takada, Shingo; Fukushima, Arata; Suga, Tadashi; Takahashi, Masashige; Ono, Taisuke; Morita, Noriteru; Omokawa, Masashi; Harada, Kuniaki; Manabe, Noriko; Shirato, Hiroki; Matsushima, Shouji; Okita, Koichi; Tsutsui, HiroyukiIntramyocellular lipid is increased in the skeletal muscle of patients with dilated cardiomyopathy with lowered exercise capacity-International Journal of Cardiology-20-Oct-2014
articleMaekawa, Satoshi; Takada, Shingo; Nambu, Hideo; Furihata, Takaaki; Kakutani, Naoya; Setoyama, Daiki; Ueyanagi, Yasushi; Kang, Dongchon; Sabe, Hisataka; Kinugawa, ShintaroLinoleic acid improves assembly of the CII subunit and CIII2/CIV complex of the mitochondrial oxidative phosphorylation system in heart failure-Cell communication and signaling-16-Oct-2019
articleTakada, Shingo; Okita, Koichi; Suga, Tadashi; Omokawa, Masashi; Kadoguchi, Tomoyasu; Sato, Takashi; Takahashi, Masashige; Yokota, Takashi; Hirabayashi, Kagami; Morita, Noriteru; Horiuchi, Masahiro; Kinugawa, Shintaro; Tsutsui, HiroyukiLow-intensity exercise can increase muscle mass and strength proportionally to enhanced metabolic stress under ischemic conditions-Journal of Applied Physiology-2012
article (author version)Yokota, Takashi; Kinugawa, Shintaro; Okita, Koichi; Hirabayashi, Kagami; Suga, Tadashi; Hattori, Masaaki; Nakagawa, Yoshinao; Oyama-Manabe, Noriko; Shirato, Hiroki; Tsutsui, HiroyukiLower aerobic capacity was associated with abnormal intramuscular energetics in patients with metabolic syndrome-Hypertension Research-Sep-2011
articleShirakawa, Ryosuke; Yokota, Takashi; Nakajima, Takayuki; Takada, Shingo; Yamane, Miwako; Furihata, Takaaki; Maekawa, Satoshi; Nambu, Hideo; Katayama, Takashi; Fukushima, Arata; Saito, Akimichi; Ishimori, Naoki; Dela, Flemming; Kinugawa, Shintaro; Anzai, ToshihisaMitochondrial reactive oxygen species generation in blood cells is associated with disease severity and exercise intolerance in heart failure patients-Scientific reports-11-Oct-2019
article (author version)Mizushima, Wataru; Takahashi, Hidehisa; Watanabe, Masashi; Kinugawa, Shintaro; Matsushima, Shouji; Takada, Shingo; Yokota, Takashi; Furihata, Takaaki; Matsumoto, Junichi; Tsuda, Masaya; Chiba, Ikuru; Nagashima, Shun; Yanagi, Shigeru; Matsumoto, Masaki; Nakayama, Keiichi I.; Tsutsui, Hiroyuki; Hatakeyama, ShigetsuguThe novel heart-specific RING finger protein 207 is involved in energy metabolism in cardiomyocytes-Journal of molecular and cellular cardiology-Nov-2016
articleMatsushima, Shouji; Kinugawa, Shintaro; Ide, Tomomi; Matsusaka, Hidenori; Inoue, Naoki; Ohta, Yukihiro; Yokota, Takashi; Sunagawa, Kenji; Tsutsui, HiroyukiOverexpression of glutathione peroxidase attenuates myocardial remodeling and preserves diastolic function in diabetic heart-American Journal of Physiology-Heart and Circulatory Physiology-2006
articleOhta, Yukihiro; Kinugawa, Shintaro; Matsushima, Shouji; Ono, Taisuke; Sobirin, Mochamad A.; Inoue, Naoki; Yokota, Takashi; Hirabayashi, Kagami; Tsutsui, HiroyukiOxidative stress impairs insulin signal in skeletal muscle and causes insulin resistance in postinfarct heart failure-American Journal of Physiology-Heart and Circulatory Physiology-2011
articleTsutsui, Hiroyuki; Kinugawa, Shintaro; Matsushima, Shouji; Yokota, TakashiOxidative stress in cardiac and skeletal muscle dysfunction associated with diabetes mellitus-Journal of Clinical Biochemistry and Nutrition-2010
articleYokota, Takashi; Kinugawa, Shintaro; Hirabayashi, Kagami; Matsushima, Shouji; Inoue, Naoki; Ohta, Yukihiro; Hamaguchi, Sanae; Sobirin, Mochamad A.; Ono, Taisuke; Suga, Tadashi; Kuroda, Satoshi; Tanaka, Shinya; Terasaki, Fumio; Okita, Koichi; Tsutsui, HiroyukiOxidative stress in skeletal muscle impairs mitochondrial respiration and limits exercise capacity in type 2 diabetic mice-American Journal of Physiology-Heart and Circulatory Physiology-2009
article (author version)Takada, Shingo; Hirabayashi, Kagami; Kinugawa, Shintaro; Yokota, Takashi; Matsushima, Shouji; Suga, Tadashi; Kadoguchi, Tomoyasu; Fukushima, Arata; Homma, Tsuneaki; Mizushima, Wataru; Masaki, Yoshihiro; Furihata, Takaaki; Katsuyama, Ryoichi; Okita, Koichi; Tsutsui, HiroyukiPioglitazone ameliorates the lowered exercise capacity and impaired mitochondrial function of the skeletal muscle in type 2 diabetic mice-European Journal of Pharmacology-5-Oct-2014
articleYokota, Takashi; Kinugawa, Shintaro; Hirabayashi, Kagami; Suga, Tadashi; Takada, Shingo; Omokawa, Masashi; Kadoguchi, Tomoyasu; Takahashi, Masashige; Fukushima, Arata; Matsushima, Shouji; Yamato, Mayumi; Okita, Koichi; Tsutsui, HiroyukiPioglitazone improves whole-body aerobic capacity and skeletal muscle energy metabolism in patients with metabolic syndrome-Journal of Diabetes Investigation-Jul-2017
articleHamaguchi, Sanae; Kinugawa, Shintaro; Goto, Daisuke; Tsuchihashi-Makaya, Miyuki; Yokota, Takashi; Yamada, Satoshi; Yokoshiki, Hisashi; Takeshita, Akira; Tsutsui, Hiroyuki; JCARE-CARD InvestigatorsPredictors of Long-Term Adverse Outcomes in Elderly Patients Over 80 Years Hospitalized With Heart Failure-Circulation Journal-2011
articleFukushima, Arata; Kinugawa, Shintaro; Takada, Shingo; Matsushima, Shouji; Sobirin, Mochamad Ali; Ono, Taisuke; Takahashi, Masashige; Suga, Tadashi; Homma, Tsuneaki; Masaki, Yoshihiro; Furihata, Takaaki; Kadoguchi, Tomoyasu; Yokota, Takashi; Okita, Koichi; Tsutsui, Hiroyuki(Pro)renin receptor in skeletal muscle is involved in the development of insulin resistance associated with postinfarct heart failure in mice-American Journal of Physiology-Endocrinology and Metabolism-2014
articleTsuda, Masaya; Fukushima, Arata; Matsumoto, Junichi; Takada, Shingo; Kakutani, Naoya; Nambu, Hideo; Yamanashi, Katsuma; Furihata, Takaaki; Yokota, Takashi; Okita, Koichi; Kinugawa, Shintaro; Anzai, ToshihisaProtein acetylation in skeletal muscle mitochondria is involved in impaired fatty acid oxidation and exercise intolerance in heart failure-Journal of cachexia, sarcopenia and muscle-Oct-2018
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