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PUBMED FOR HANDHELDS

Journal Abstract Search


156 related items for PubMed ID: 38981606

  • 1. Lactate promotes fatty acid oxidation by the tricarboxylic acid cycle and mitochondrial respiration in muscles of obese mice.
    Park SY, Jung SR, Kim JY, Kim YW, Sung HK, Park SY, Doh KO, Koh JH.
    Am J Physiol Cell Physiol; 2024 Sep 01; 327(3):C619-C633. PubMed ID: 38981606
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  • 2. High fat diet-induced changes in mouse muscle mitochondrial phospholipids do not impair mitochondrial respiration despite insulin resistance.
    Hoeks J, Wilde Jd, Hulshof MF, Berg SA, Schaart G, Dijk KW, Smit E, Mariman EC.
    PLoS One; 2011 Sep 01; 6(11):e27274. PubMed ID: 22140436
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  • 3. Aerobic capacity and hepatic mitochondrial lipid oxidation alters susceptibility for chronic high-fat diet-induced hepatic steatosis.
    Morris EM, Meers GM, Koch LG, Britton SL, Fletcher JA, Fu X, Shankar K, Burgess SC, Ibdah JA, Rector RS, Thyfault JP.
    Am J Physiol Endocrinol Metab; 2016 Oct 01; 311(4):E749-E760. PubMed ID: 27600823
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  • 4. Skeletal muscle type-specific mitochondrial adaptation to high-fat diet relies on differential autophagy modulation.
    Morales PE, Monsalves-Álvarez M, Tadinada SM, Harris MP, Ramírez-Sagredo A, Ortiz-Quintero J, Troncoso MF, De Gregorio N, Calle X, Pereira RO, Lira VA, Espinosa A, Abel ED, Lavandero S.
    FASEB J; 2021 Oct 01; 35(10):e21933. PubMed ID: 34555201
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  • 5. Narciclasine attenuates diet-induced obesity by promoting oxidative metabolism in skeletal muscle.
    Julien SG, Kim SY, Brunmeir R, Sinnakannu JR, Ge X, Li H, Ma W, Yaligar J, Kn BP, Velan SS, Röder PV, Zhang Q, Sim CK, Wu J, Garcia-Miralles M, Pouladi MA, Xie W, McFarlane C, Han W, Xu F.
    PLoS Biol; 2017 Feb 01; 15(2):e1002597. PubMed ID: 28207742
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  • 6. Effect of exercise training on metabolic flexibility in response to a high-fat diet in obese individuals.
    Battaglia GM, Zheng D, Hickner RC, Houmard JA.
    Am J Physiol Endocrinol Metab; 2012 Dec 15; 303(12):E1440-5. PubMed ID: 23047988
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  • 7. Protein acetylation in skeletal muscle mitochondria is involved in impaired fatty acid oxidation and exercise intolerance in heart failure.
    Tsuda M, Fukushima A, Matsumoto J, Takada S, Kakutani N, Nambu H, Yamanashi K, Furihata T, Yokota T, Okita K, Kinugawa S, Anzai T.
    J Cachexia Sarcopenia Muscle; 2018 Oct 15; 9(5):844-859. PubMed ID: 30168279
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  • 8. Apelin treatment increases complete Fatty Acid oxidation, mitochondrial oxidative capacity, and biogenesis in muscle of insulin-resistant mice.
    Attané C, Foussal C, Le Gonidec S, Benani A, Daviaud D, Wanecq E, Guzmán-Ruiz R, Dray C, Bezaire V, Rancoule C, Kuba K, Ruiz-Gayo M, Levade T, Penninger J, Burcelin R, Pénicaud L, Valet P, Castan-Laurell I.
    Diabetes; 2012 Feb 15; 61(2):310-20. PubMed ID: 22210322
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  • 14. Diet-induced obese mouse hearts tolerate an acute high-fatty acid exposure that also increases ischemic tolerance.
    Boardman NT, Pedersen TM, Rossvoll L, Hafstad AD, Aasum E.
    Am J Physiol Heart Circ Physiol; 2020 Sep 01; 319(3):H682-H693. PubMed ID: 32795177
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  • 16. Impact of 4 weeks of western diet and aerobic exercise training on whole-body phenotype and skeletal muscle mitochondrial respiration in male and female mice.
    McGowan EM, Ehrlicher SE, Stierwalt HD, Robinson MM, Newsom SA.
    Physiol Rep; 2022 Dec 01; 10(24):e15543. PubMed ID: 36541261
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  • 17. In vivo, fatty acid translocase (CD36) critically regulates skeletal muscle fuel selection, exercise performance, and training-induced adaptation of fatty acid oxidation.
    McFarlan JT, Yoshida Y, Jain SS, Han XX, Snook LA, Lally J, Smith BK, Glatz JF, Luiken JJ, Sayer RA, Tupling AR, Chabowski A, Holloway GP, Bonen A.
    J Biol Chem; 2012 Jul 06; 287(28):23502-16. PubMed ID: 22584574
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