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This page provides a simple browsing interface for finding entities described by a property and a named value. Other available search interfaces include the page property search, and the ask query builder.

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A list of all pages that have property "Has title" with value "MSc". Since there have been only a few results, also nearby values are displayed.

Showing below up to 141 results starting with #1.

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List of results

  • Lucchinetti 2012 Anesthesiology  + (Lucchinetti E, Awad AE, Rahman M, Feng J, 
 Lucchinetti E, Awad AE, Rahman M, Feng J, Lou PH, Zhang L, Ionescu L, Lemieux H, ThĂ©baud B, Zaugg M (2012) Antiproliferative effects of local anesthetics on mesenchymal stem cells: potential implications for tumor spreading and wound healing. Anesthesiology 116:841-56. wound healing. Anesthesiology 116:841-56.)
  • Ludzki 2015 Diabetes  + (Ludzki A, Paglialunga S, Smith BK, Herbst 
 Ludzki A, Paglialunga S, Smith BK, Herbst EA, Allison MK, Heigenhauser GJ, Neufer PD, Holloway GP (2015) Rapid repression of ADP transport by palmitoyl-CoA is attenuated by exercise training in humans; a potential mechanism to decrease oxidative stress and improve skeletal muscle insulin signaling. Diabetes 64:2769-79.le insulin signaling. Diabetes 64:2769-79.)
  • Ludzki 2014 Thesis  + (Ludzki AC (2014) Palmitoyl-CoA inhibition of mitochondrial ADP sensitivity is attenuated by exercise training in human skeletal muscle. Master's Thesis 1-86.)
  • Luef 2015 Nat Commun  + (Luef B, Frischkorn KR, Wrighton KC, Holman HY, Birarda G, Thomas BC, Singh A, Williams KH, Siegerist CE, Tringe SG, Downing KH, Comolli LR, Banfield JF (2015) Diverse uncultivated ultra-small bacterial cells in groundwater. Nat Commun 6:6372.)
  • Luethi 2017 Toxicology  + (Luethi D, Liechti ME, KrĂ€henbĂŒhl S (2017) Mechanisms of hepatocellular toxicity associated with new psychoactive synthetic cathinones. Toxicology 387:57-66.)
  • Luft 1962 J Clin Invest  + (Luft R, Ikkos D, Palmieri G, Ernster L, Af 
 Luft R, Ikkos D, Palmieri G, Ernster L, Afzelius B (1962) A case of severe hypermetabolism of nonthyroid origin with a defect in the maintenance of mitochondrial respiratory control: a correlated clinical, biochemical, and morphological study. https://doi.org/10.1172/jci104637l study. https://doi.org/10.1172/jci104637)
  • Lund 2015 Fatty Acid Oxidation O2k-Network Discussion Forum  + (Lund 2015 Fatty Acid Oxidation O2k-Network Discussion Forum)
  • Lund 2012 Abstract IOC68  + (Lund J, Hafstad AD, Hagve M, Larsen TS, Aasum E (2012) High intensity exercise prevents impairment of respiratory capacity in cardiac mitochondria from obese mice. MiPNet17.08.)
  • Lund 2016 J Physiol  + (Lund MT, Kristensen M, Hansen M, Tveskov L, Floyd AK, StĂžckel M, Vainer B, Poulsen SS, Helge JW, Prats C, Dela F (2016) Hepatic mitochondrial oxidative phosphorylation is normal in obese patients with and without type 2 diabetes. J Physiol 594:4351-8.)
  • Lund 2018 Acta Physiol (Oxf)  + (Lund MT, Larsen S, Hansen M, Courraud J, F 
 Lund MT, Larsen S, Hansen M, Courraud J, Floyd AK, StĂžckel M, Helge JW, Dela F (2018) Mitochondrial respiratory capacity remains stable despite a comprehensive and sustained increase in insulin sensitivity in obese patients undergoing gastric bypass surgery. Acta Physiol (Oxf) 223:e13032.ss surgery. Acta Physiol (Oxf) 223:e13032.)
  • Lundby 2013 Abstract MiP2013  + (Lundby C, Bonne T, FlĂŒck D, Jacobs R, Meinild AK, Lundby S, Robach P (2013) The effects of hypoxic training on aerobic performance in normoxia and moderate hypoxia: a randomized, double blind, placebo controlled study. Mitochondr Physiol Network 18.08.)
  • Lundby 2004 Am J Physiol Regul Integr Comp Physiol  + (Lundby C, Calbet JA, van Hall G, Saltin B, Sander M (2004) Pulmonary gas exchange at maximal exercise in Danish lowlanders during 8 wk of acclimatization to 4,100 m and in high-altitude Aymara natives. Am J Physiol Regul Integr Comp Physiol 287:R1202-08.)
  • Luo 2018 Proc Natl Acad Sci U S A  + (Luo S, Valencia CA, Zhang J, Lee NC, Slone J, Gui B, Wang X, Li Z, Dell S, Brown J, Chen SM, Chien YH, Hwu WL, Fan PC, Wong LJ, Atwal PS, Huang T (2018) Biparental inheritance of mitochondrial DNA in humans. Proc Natl Acad Sci U S A 115:13039-44.)
  • Luo 2015 J Diabetes Res  + (Luo X, Li R, Yan LJ (2015) Roles of pyruvate, NADH, and mitochondrial Complex I in redox balance and imbalance in ÎČ cell function and dysfunction. J Diabetes Res 2015:512618. doi: 10.1155/2015/512618)
  • Luo 2020 Int J Mol Sci  + (Luo Y, Ma J, Lu W (2020) The significance of mitochondrial dysfunction in cancer. Int J Mol Sci 21:5598. https://doi.org/10.3390/ijms21165598)
  • Luo 2012 Cell Res  + (Luo Z, Ma L, Zhao Z, He H, Yang D, Feng X, Ma S, Chen X, Zhu T, Cao T, Liu D, Nilius B, Huang Y, Yan Z, Zhu Z (2012) TRPV1 activation improves exercise endurance and energy metabolism through PGC-1α upregulation in mice. Cell Res 22:551-64.)
  • Luongo 2020 Nature  + (Luongo TS, Eller JM, Lu MJ, Niere M, Raith 
 Luongo TS, Eller JM, Lu MJ, Niere M, Raith F, Perry C, Bornstein MR, Oliphint P, Wang L, McReynolds MR, Migaud ME, Rabinowitz JD, Johnson FB, Johnsson K, Ziegler M, Cambronne XA, Baur JA (2020) SLC25A51 is a mammalian mitochondrial NAD<sup>+</sup> transporter. https://doi.org/10.1038/s41586-020-2741-7transporter. https://doi.org/10.1038/s41586-020-2741-7)
  • Luther 2023 Am J Physiol Renal Physiol  + (Luther T, BĂŒlow Anderberg S, Persson P, Fr 
 Luther T, BĂŒlow Anderberg S, Persson P, FranzĂ©n S, Skorup P, Wernerson A, Hultenby K, Palm F, Schiffer TA, Frithiof R (2023) Renal mitochondrial dysfunction in ovine experimental sepsis associated acute kidney injury. https://doi.org/10.1152/ajprenal.00294.2022ttps://doi.org/10.1152/ajprenal.00294.2022)
  • Luevano-Martinez 2019 Fungal Biol  + (LuĂ©vano-MartĂ­nez LA, Caldeira da Silva CC, 
 LuĂ©vano-MartĂ­nez LA, Caldeira da Silva CC, Nicastro GG, Schumacher RI, Kowaltowski AJ, Gomes SL (2019) Mitochondrial alternative oxidase is determinant for growth and sporulation in the early diverging fungus ''Blastocladiella emersonii''. Fungal Biol 123:59-65.diella emersonii''. Fungal Biol 123:59-65.)
  • Kowaltowski 2014 Abstract MiP2014  + (LuĂ©vano-MartĂ­nez LA, Forni FM, dos Santos VT, Souza-Pinto NC, Kowaltowski AJ (2014) Cardiolipin is a key determinant for mitochondrial DNA stability and segregation.)
  • Luevano-Martinez 2015 Biochim Biophys Acta  + (LuĂ©vano-MartĂ­nez LA, Forni MF, Dos Santos VT, Souza-Pinto NC, Kowaltowski AJ (2015) Cardiolipin is a key determinant for mtDNA stability and segregation during mitochondrial stress. Biochim Biophys Acta 1847:587-98.)
  • Luevano-Martinez 2020 FEBS Lett  + (LuĂ©vano-MartĂ­nez LA, Girard RMBM, Alencar MB, Silber AM (2020) ATP regulates the activity of an alternative oxidase in ''Trypanosoma brucei''. FEBS Lett [Epub ahead of print].)
  • Lyon 2006 Anal Chem  + (Lyon J L, Stevenson K J (2006) Picomolar peroxide detection using a chemically activated redox mediator and square wave voltammetry. Anal Chem 78:8518-25.)
  • Labajova 2006 Gen Physiol Biophys  + (LĂĄbajovĂĄ A, KofrĂĄnek J, KrivĂĄkovĂĄ P, CervinkovĂĄ Z, Drahota Z (2006) Tetraphenylphosphonium-Selective Electrode as a Tool for Evaluating Mitochondrial Permeability Transition Pore Function in Isolated Rat Hepatocytes. Gen Physiol Biophys 25:325-31.)
  • Laehteenmaeki 2022 Physiol Rep  + (LĂ€hteenmĂ€ki EI, Koski M, Koskela I, Lehton 
 LĂ€hteenmĂ€ki EI, Koski M, Koskela I, Lehtonen E, KankaanpÀÀ A, Kainulainen H, Walker S, Lehti M (2022) Resistance exercise with different workloads have distinct effects on cellular respiration of peripheral blood mononuclear cells. https://doi.org/10.14814/phy2.15394cells. https://doi.org/10.14814/phy2.15394)
  • Lopez 2009 J Pineal Res  + (LĂłpez A, GarcĂ­a JA, Escames G, Venegas C, Ortiz F, LĂłpez LC, Acuña-Castroviejo D (2009) Melatonin protects the mitochondria from oxidative damage reducing oxygen consumption, membrane potential, and superoxide anion production. J Pineal Res 46:188-98.)
  • Lopez 2017 PLOS ONE  + (LĂłpez A, Ortiz F, Doerrier C, Venegas C, F 
 LĂłpez A, Ortiz F, Doerrier C, Venegas C, FernĂĄndez-Ortiz M, Aranda P, DĂ­az-Casado ME, FernĂĄndez-Gil B, Barriocanal-Casado E, Escames G, LĂłpez L, Acuña-Castroviejo D (2017) Mitochondrial impairment and melatonin protection in parkinsonian mice do not depend of inducible or neuronal nitric oxide synthases. PLOS ONE 12:e0183090.ric oxide synthases. PLOS ONE 12:e0183090.)
  • Lopez-Erauskin 2013 Hum Mol Genet  + (LĂłpez-Erauskin J, Galino J, Ruiz M, Cuezva 
 LĂłpez-Erauskin J, Galino J, Ruiz M, Cuezva JM, Fabregat I, Cacabelos D, Boada J, MartĂ­nez J, Ferrer I, Pamplona R, Villarroya F, Portero-OtĂ­n M, Fourcade S, Pujol A (2013) Impaired mitochondrial oxidative phosphorylation in the peroxisomal disease X-linked adrenoleukodystrophy. Hum Mol Genet 22:3296-305.leukodystrophy. Hum Mol Genet 22:3296-305.)
  • Lopez-Grueso 2014 Antioxid Redox Signal  + (LĂłpez-Grueso R, Gambini J, Abdelaziz KM, M 
 LĂłpez-Grueso R, Gambini J, Abdelaziz KM, MonleĂłn D, DĂ­az A, El Alami M, Bonet-Costa V, BorrĂĄs C, Viña J (2014) Early, but not late onset estrogen replacement therapy prevents oxidative stress and metabolic alterations caused by ovariectomy. Antioxid Redox Signal 20:236-46.riectomy. Antioxid Redox Signal 20:236-46.)
  • Krajcova Adela  + (M.D.)
  • Jeremic M  + (M.D.)
  • Vukojevic M  + (M.D.)
  • Dasarathy S  + (M.D.)
  • Aydin HH  + (M.D., FACB Professor of Medical Biochemistry)
  • Erbay E  + (M.D., Ph.D.)
  • Rychtrmoc D  + (M.D., Ph.D.)
  • Mercan S  + (M.Sc)
  • Principe S  + (M.Sc.)
  • Ghanim M  + (M.Sc.)
  • Sutton E  + (M.Sc.)
  • Magnano S  + (M.Sc.)
  • Karavyraki Marilena  + (M.Sc.)
  • Gumpp A  + (M.Sc.)
  • Silva Ana Maria  + (M.Sc.)
  • Kappler Lisa  + (M.Sc. [https://orcid.org/0000-0002-0584-6799 ORCID ID])
  • Goebel G  + (M.Sc., Ph.D., Priv.-Doz.)
  • Thapa Maheshwor  + (MA)
  • Koves Timothy R  + (MBA, PhD, Asst. Prof. Asst. Prof. of Medicine (Geriatrics) & Sen. Res. Fellow (Center for Aging & Human Development))
  • Hesdorffer C  + (MBBCh, MMED, Associate Prof., Director)
  • Elkalaf Moustafa  + (MBBCh, PhD)
  • Moore J  + (MBChB, BMSc(Hons), MRCS, FCICM, Dr.)
  • Chakraborty M  + (MBChem (PhD student))
  • Chu MJJ  + (MBChem (PhD student))
  • Yang C  + (MBChem (PhD student))
  • Windsor JA  + (MBChem, MD, PhD, Professor)
  • Mittal Anubhav  + (MBChem, PhD)
  • Lidron 2016 Abstract Mito Xmas Meeting Innsbruck  + (MCU knock-down impairs skeletal muscle and motor neuron development in zebrafish embryos.)
  • Dos Santos P  + (MD)
  • Lepper PM  + (MD)
  • Nussbaum RL  + (MD)
  • Schulze A  + (MD)
  • Shoffner J  + (MD)
  • Uusijaervi J  + (MD)
  • Jung HY  + (MD)
  • Park YJ  + (MD)
  • Haase V  + (MD)
  • Musi N  + (MD)
  • Herndon DN  + (MD)
  • Westerlund E  + (MD)
  • Aburel Oana M  + (MD)
  • Liang Liping  + (MD)
  • Wu H  + (MD)
  • Bertero E  + (MD)
  • Birkenfeld AL  + (MD)
  • Carter K  + (MD)
  • Ioannidis John PA  + (MD)
  • Svab Gergely  + (MD)
  • Pohl Elena  + (MD)
  • Garcia Menendez Rodobaldo  + (MD)
  • Puskarich Michael A  + (MD [https://orcid.org/0000-0001-6358-4670?lang=en ORCID ID])
  • Roshanravan Baback  + (MD MS MSPH)
  • Serlie M  + (MD PhD)
  • West M  + (MD PhD)
  • Prigione Alessandro  + (MD PhD)
  • Scheibye-Knudsen Morten  + (MD PhD)
  • Chowdhury Subir Roy  + (MD PhD)
  • Falk Marni J  + (MD, Assistant Prof.)
  • Bernstein D  + (MD, Chief, Division of Pediatric Cardiology, Professor of Pediatrics)
  • Christiansen M  + (MD, Dir. Research Director, Chief physician, Head, Research and Development)
  • Sims Carrie A  + (MD, MS, FACS Chief of Trauma, Critical Care and Burn)
  • Jang David H  + (MD, MSc FACMT [https://orcid.org/0000-0002-1213-6971 ORCID ID])
  • Siemen D  + (MD, PhD)
  • Cervinka Miroslav  + (MD, PhD)
  • Jeschke MG  + (MD, PhD)
  • Kasal D  + (MD, PhD)
  • Jespersen Nichlas Riise  + (MD, PhD)
  • Hagberg H  + (MD, PhD)
  • Lemasters JJ  + (MD, PhD)
  • Shigemoto K  + (MD, PhD)
  • Baloh RH  + (MD, PhD)
  • Chini EN  + (MD, PhD)
  • Spinazzi Marco  + (MD, PhD)
  • Ljubkovic M  + (MD, PhD)
  • Dal-Pizzol F  + (MD, PhD)
  • Sheldon C  + (MD, PhD)
  • Stacpoole PW  + (MD, PhD)
  • Lopez MG  + (MD, PhD)
  • Varricchio Frederick  + (MD, PhD)
  • Sen Zumrut Duygu  + (MD, PhD)
  • Alvarez Diego F  + (MD, PhD)
  • Kopecky Jan  + (MD, PhD)
  • Meszaros Andras T  + (MD, PhD)
  • Elmer Eskil  + (MD, PhD Associate Professor, Adjunct Senior Lecturer)
  • Chlopicki S  + (MD, PhD Director JCET)
  • Szabadkai Gyorgy  + (MD, PhD Senior Lecturer)
  • Prochownik Edward V  + (MD, PhD, Professor of Microbiology & Molecular Genetics)
  • Wikstroem Marten KF  + (MD, PhD, Professor Emeritus, Physical Biochemistry)
  • Schauer I  + (MD, PhD, Assistant Professor)
  • Sangle G  + (MD, PhD, Associate Prof.)
  • Chinopoulos Christos  + (MD, PhD, Associate Professor)
  • Hansson Magnus J  + (MD, PhD, CMO & VP Preclinical and Clinical Development)
  • Zaugg Michael  + (MD, PhD, DEAA, FRCPC, Prof.)
  • Cap AP  + (MD, PhD, FACP, Lieutenant Colonel, Medical Corps, U.S. Army, Task Area Manager, Blood Research)
  • Fessel Joshua Patrick  + (MD, PhD, Fellow in Pulmonary and Critical Care Medicine [https://orcid.org/0000-0003-0797-7693 ORCID ID])
  • Yu X  + (MD, PhD, Prof.)
  • Lee Hong Kyu  + (MD, PhD, Prof.)
  • Mervaala E  + (MD, PhD, Professor)
  • Shen G  + (MD, PhD, Professor Associate Director, Diabetes Research Group)
  • Shirihai Orian  + (MD, PhD, Professor, Molecular and Medical Pharmacology)
  • Stary Creed  + (MD, PhDAssistant Professor of Anesthesiology, Perioperative & Pain MedicineDirector, Laboratory for Molecular BioenergeticsAsst. Clinical Director Byers Eye Institute)
  • Sivitz WI  + (MD, Professor Internal Medicine, Director)
  • Garipi E  + (MD.)
  • Vegh E  + (MD. Dr.)
  • Seiler J  + (MPAS, PAC Physician Assistant, Project Manager, Obesity Institute Geisinger Medical Center 100 North Academy Avenue Danville, PA 17822-2111)
  • Liu Daoyan  + (MPH, PhD)
  • Smaling Anna  + (MRes)
  • Zaobornyj T  + (MS)
  • Erickson K  + (MS)
  • Jadiya Pooja  + (MS, Ph.D. [https://orcid.org/0000-0003-4807-9304 ORCID ID])
  • Maderova D  + (MSC)
  • Pidcoke H  + (MSCI, MD)
  • Aasander Frostner Eleonor  + (MSc Communications Officer & Lab Manager [http://orcid.org/0000-0001-8426-4836 ORCID ID])
  • Hooijman P  + (MSc PhD student)
  • Ostrovsky J  + (MSc Research Assistnat)
  • Moreira Bruno P  + (MSc [http://orcid.org/0000-0002-8584-4979 ORCID ID])
  • Hudson M  + (MSc (PhD student))
  • Granata Cesare  + (MSc Chem, PhD Research Fellow [http://orcid.org/0000-0002-3509-6001 ORCID ID])
  • Fritz K  + (MSc, MSc)
  • Fleischmann S  + (MSc, MSc)
  • Cardoso Luiza HD  + (MSc, PhD)
  • Treberg Jason R  + (MSc, PhD)
  • Cecatto Cristiane  + (MSc, PhD)
  • Garcia-Souza Luiz F  + (MSc, PhD)
  • Hjelde A  + (MSc, PhD Senior Engineer)
  • Baker Daniel  + (MSc, PhD, (Post Doctoral Fellow))
  • Agbas A  + (MSc,PhD Associate Professor)
  • Droescher S  + (MSc.)
  • George S  + (MSc.)
  • Bufe A  + (MSc.)
  • Nemec Michal  + (MSc.)
  • Liebscher G  + (MSc.)
  • Ezrova Zuzana  + (MSc.)
  • Tindle-Solomon Lisa  + (MSc.)
  • Neves D  + (MSc.)
  • Medar M  + (MSc.)
  • Starovlah I  + (MSc.)
  • Hussein R  + (MSc.)
  • Oefele M  + (MSc.)
  • Zdrazilova Lucie  + (MSc.)
  • Gurkina A  + (MSc.)
  • Bento Guida Jose Freitas  + (MSc.)
  • Vernerova Andrea  + (MSc.)
  • Kranewitter Sabine  + (MSc.)
  • Korzh Stanislava  + (MSc.)
  • Baglivo Eleonora  + (MSc.)
  • Saatmann Nina  + (MSc.)
  • Armas Diaz Yasmany  + (MSc.)
  • Serna Julian DC  + (MSc.)
  • Pallag Gergely  + (MSc.)
  • Gnaiger Carolina  + (MSc.)
  • Figueirdo Costa Claudio  + (MSc.)
  • Pertler Elke  + (MSc.)
  • Saucedo-Rodriguez Maria Jose  + (MSc.)
  • Cotter Matthew  + (MSc. Lab Manager)
  • Schirris T  + (MSc., Post doctoral researcher)
  • Batterson Philip M  + (MSc[https://orcid.org/0000-0002-1535-080X ORCID ID])
  • Seifritz A  + (MTA)
  • Weber S  + (MTA)
  • Kuncova J  + (MU Dr., PhD)
  • Sobotka Ondrej  + (MUDr., Ph.D.)
  • Ma 2018 Nat Cell Biol  + (Ma C, Niu R, Huang T, Shao LW, Peng Y, Ding W, Wang Y, Jia G, He C, Li CY, He A, Liu Y (2018) N6-methyldeoxyadenine is a transgenerational epigenetic signal for mitochondrial stress adaptation. Nat Cell Biol 21:319-27.)
  • Ma 2022 Int J Obes (Lond)  + (Ma H, He C, Li L, Gao P, Lu Z, Hu Y, Wang 
 Ma H, He C, Li L, Gao P, Lu Z, Hu Y, Wang L, Zhao Y, Cao T, Cui Y, Zheng H, Yang G, Yan Z, Liu D, Zhu Z (2022) TRPC5 deletion in the central amygdala antagonizes high-fat diet-induced obesity by increasing sympathetic innervation. https://doi.org/10.1038/s41366-022-01151-xhttps://doi.org/10.1038/s41366-022-01151-x)
  • Ma 2017 J Membr Biol  + (Ma L, Dong JX, Wu C, Li XY, Chen J, Zhang H, Liu Y (2017) Spectroscopic, polarographic, and microcalorimetric studies on mitochondrial dysfunction induced by ethanol. J Membr Biol 250:195-204. https://doi.org/10.1007/s00232-017-9947-0)
  • Ma 2017 Int J Cancer  + (Ma L, Fu Q, Xu B, Zhou H, Gao J, Shao X, Xiong J, Gu Q, Wen S, Li F, Shen L, Chen G, Fang H, Lyu J (2017) Breast cancer-associated mitochondrial DNA haplogroup promotes neoplastic growth via ROS-mediated AKT activation. Int J Cancer 142:1786-96.)
  • Ma 2019 Biochem Biophys Res Commun  + (Ma T, Lin S, Wang B, Wang Q, Xia W, Zhang 
 Ma T, Lin S, Wang B, Wang Q, Xia W, Zhang H, Cui Y, He C, Wu H, Sun F, Zhao Z, Gao P, Zhu Z, Liu D (2019) TRPC3 deficiency attenuates high salt-induced cardiac hypertrophy by alleviating cardiac mitochondrial dysfunction. Biochem Biophys Res Commun 519:674-81.on. Biochem Biophys Res Commun 519:674-81.)
  • Ma 2015 Int J Biol Sci  + (Ma W, Jing L, Valladares A, Mehta SL, Wang Z, Li PA, Bang JJ (2015) Silver nanoparticle exposure induced mitochondrial stress, caspase-3 activation and cell death: amelioration by sodium selenite. Int J Biol Sci 11:860-7.)
  • Ma 2020 Oxid Med Cell Longev  + (Ma WX, Li CY, Tao R, Wang XP, Yan LJ (2020) Reductive stress-induced mitochondrial dysfunction and cardiomyopathy. Oxid Med Cell Longev 2020:5136957.)
  • Ma 2018 Cancer Lett  + (Ma Y, Temkin SM, Hawkridge AM, Guo C, Wang W, Wang XY, Fang X (2018) Fatty acid oxidation: an emerging facet of metabolic transformation in cancer. Cancer Lett 435:92-100. https://doi.org/10.1016/j.canlet.2018.08.006)
  • Ma 2020 Sci Rep  + (Ma Y, Wang W, Devarakonda T, Zhou H, Wang XY, Salloum FN, Spiegel S, Fang X (2020) Functional analysis of molecular and pharmacological modulators of mitochondrial fatty acid oxidation. Sci Rep 10:1450.)
  • Ma 2012 Islets  + (Ma Z, Wirstroem T, Borg H, Larsson-Nyren G 
 Ma Z, Wirstroem T, Borg H, Larsson-Nyren G, Hals IK, Bondo-Hansen J, Grill V, Bjoerklund A (2012) Diabetes reduces ÎČ-cell mitochondria and induces distinct morphological abnormalities, which are reproducible by high glucose ''in vitro'' with attendant dysfunction. Islets V(4) - I(3) - (05-06/2012).nction. Islets V(4) - I(3) - (05-06/2012).)
  • Ma 2012 Exp Diabetes Res  + (Ma ZA, Zhao Z, Turk J (2012) Mitochondrial dysfunction and ÎČ-cell failure in type 2 diabetes mellitus. Exp Diabetes Res 2012:703538. https://doi.org/10.1155/2012/703538)
  • Maarman 2016 J Appl Physiol (1985)  + (Maarman GJ, Andrew BM, Blackhurst DM, Ojuka EO (2016) Melatonin protects against uric acid-induced mitochondrial dysfunction, oxidative stress, and triglyceride accumulation in C<sub>2</sub>C<sub>12</sub> myotubes. J Appl Physiol (1985) 122:1003-10.)
  • MacCannell 2021 Int J Obes (Lond)  + (MacCannell ADV, Futers TS, Whitehead A, Moran A, Witte KK, Roberts LD (2021) Sexual dimorphism in adipose tissue mitochondrial function and metabolic flexibility in obesity. Int J Obes (Lond) 45:1773-81.)
  • MacDonald 2011 Am J Physiol Cell Physiol  + (MacDonald JR, Oellermann M, Rynbeck S, Cha 
 MacDonald JR, Oellermann M, Rynbeck S, Chang G, Ruggiero K, Cooper GJ, Hickey AJ (2011) Transmural differences in respiratory capacity across the rat left ventricle in health, aging, and streptozotocin-induced diabetes mellitus: evidence that mitochondrial dysfunction begins in the subepicardium. Am J Physiol Cell Physiol 300:C246-55.um. Am J Physiol Cell Physiol 300:C246-55.)
  • MacLennan 1968 Biochemistry  + (MacLennan DH, Tzagoloff A (1968) Studies on the mitochondrial adenosine triphosphatase system IV. Purification and characterization of the oligomycin sensitivity conferring protein. Biochemistry 7:1603-10.)
  • MacMillan 2017 Front Physiol  + (MacMillan NJ, Kapchinsky S, Konokhova Y, G 
 MacMillan NJ, Kapchinsky S, Konokhova Y, Gouspillou G, de Sousa Sena R, Jagoe RT, Baril J, Carver TE, Andersen RE, Richard R, Perrault H, Bourbeau J, Hepple RT, Taivassalo T (2017) Eccentric ergometer training promotes locomotor muscle strength but not mitochondrial adaptation in patients with severe chronic obstructive pulmonary disease. Front Physiol 8:114.ve pulmonary disease. Front Physiol 8:114.)
  • MacMillan-Crow 2018 Intern Med Rev (Wash D C)  + (MacMillan-Crow LA, Mayeux PR (2018) Female mice exhibit less renal mitochondrial injury but greater mortality using a comorbid model of experimental sepsis. Intern Med Rev (Wash D C) 4.)
  • MacPherson 2016 Am J Physiol Cell Physiol  + (MacPherson RE, Dragos SM, Ramos S, Sutton 
 MacPherson RE, Dragos SM, Ramos S, Sutton C, Frendo-Cumbo S, Castellani L, Watt MJ, Perry CG, Mutch DM, Wright DC (2016) Reduced ATGL-mediated lipolysis attenuates ÎČ-adrenergic-induced AMPK signaling, but not the induction of PKA-targeted genes, in adipocytes and adipose tissue. Am J Physiol Cell Physiol 311:C269-76.ue. Am J Physiol Cell Physiol 311:C269-76.)
  • Macasoi 2020 Oncol Rep  + (Macașoi I, Pavel IZ, Moacă AE, Avram S, Da 
 Macașoi I, Pavel IZ, Moacă AE, Avram S, David LV, Coricovac D, Mioc A, Spandidos DA, Tsatsakis A, Șoica C, Dumitrașcu V, Dehelean C (2020) Mechanistic investigations of antitumor activity of a Rhodamine B‑oleanolic acid derivative bioconjugate. Oncol Rep 44:1169-83.vative bioconjugate. Oncol Rep 44:1169-83.)
  • Macchi 2013 J Cell Sci  + (Macchi M, El Fissi N, Tufi R, Bentobji M, LiĂ©vens JC, Martins LM, Royet J, Rival T (2013) The ''Drosophila'' inner-membrane protein PMI controls crista biogenesis and mitochondrial diameter. J Cell Sci 126:814-24.)
  • Macedo 2019 Biochim Biophys Acta Mol Cell Biol Lipids  + (Macedo F, Martins GL, LuĂ©vano-MartĂ­nez LA, 
 Macedo F, Martins GL, LuĂ©vano-MartĂ­nez LA, Viana GM, Riske KA, Inague A, Yoshinaga MY, Aguilaniu H, Miyamoto S, Glezer I, da Cunha FM (2019) Lipase-like 5 enzyme controls mitochondrial activity in response to starvation in ''Caenorhabditis elegans''. Biochim Biophys Acta Mol Cell Biol Lipids 1865:158539.hys Acta Mol Cell Biol Lipids 1865:158539.)
  • Macedo 2020 FASEB J  + (Macedo F, Romanatto T, Gomes de Assis C, Buis A, Kowaltowski AJ, Aguilaniu H, Marques da Cunha F (2020) Lifespan-extending interventions enhance lipid-supported mitochondrial respiration in ''Caenorhabditis elegans''. FASEB J 34:9972-81.)
  • Machado 2019 MitoFit Preprint Arch EA  + (Machado Ivo F, Teodoro JS, Palmeira CM, Rolo AP (2019) Interplay between metformin and miR-378a-3p in cells under hyperglycaemia. https://doi.org/10.26124/mitofit:ea19.MiPSchool.0008)
  • Machado-Neto 2018 Cell Death Dis  + (Machado-Neto JA, Fenerich BA, Scopim-Ribei 
 Machado-Neto JA, Fenerich BA, Scopim-Ribeiro R, Eide CA, Coelho-Silva JL, Dechandt CRP, Fernandes JC, Rodrigues Alves APN, Scheucher PS, SimĂ”es BP, Alberici LC, de Figueiredo Pontes LL, Tognon CE, Druker BJ, Rego EM, Traina F (2018) Metformin exerts multitarget antileukemia activity in JAK2<sup>V617F</sup>-positive myeloproliferative neoplasms. Cell Death Dis 9:311.ve myeloproliferative neoplasms. Cell Death Dis 9:311.)
  • Macheiner 2016 Sci Rep  + (Macheiner T, Fengler VH, Agreiter M, Eisenberg T, Madeo F, Kolb D, Huppertz B, Ackbar R, Sargsyan K (2016) Magnetomitotransfer: An efficient way for direct mitochondria transfer into cultured human cells. Sci Rep 6:35571.)
  • Maciocci 2019 eLife  + (Maciocci G, Aufreiter M, Bentley N (2019) Introducing eLife’s first computationally reproducible article. eLife Labs Feb 20, 2019.)
  • Macleod 2014 Lancet  + (Macleod MR, Michie S, Roberts I, Dirnagl U, Chalmers I, Ioanidis JPA, Salman RAS, Chan AW, Glasziou P (2014) Biomedicel research: increasing value, reducing waste.. Lancet 383(9912):101-4.)
  • Madamanchi 2007 Circ Res  + (Madamanchi NR, Runge MS (2007) Mitochondrial dysfunction in atherosclerosis. Circ Res 100:460-73. doi: 10.1161/01.RES.0000258450.44413.96)
  • Maddalena 2017 Biochim Biophys Acta  + (Maddalena LA, Ghelfi M, Atkinson J, Stuart 
 Maddalena LA, Ghelfi M, Atkinson J, Stuart JA (2017) The mitochondria-targeted imidazole substituted oleic acid 'TPP-IOA' affects mitochondrial bioenergetics and its protective efficacy in cells is influenced by cellular dependence on aerobic metabolism. Biochim Biophys Acta 1858:73-85.tabolism. Biochim Biophys Acta 1858:73-85.)
  • Maddalena 2017 Biochem Biophys Res Commun  + (Maddalena LA, Selim SM, Fonseca J, Messner H, McGowan S, Stuart JA (2017) Hydrogen peroxide production is affected by oxygen levels in mammalian cell culture. Biochem Biophys Res Commun 493:246-251.)
  • Maddison 2020 PLoS Genet  + (Maddison DC, Alfonso-NĂșñez M, Swaih AM, Breda C, Campesan S, Allcock N, Straatman-Iwanowska A, Kyriacou CP, Giorgini F (2020) A novel role for kynurenine 3-monooxygenase in mitochondrial dynamics. PLoS Genet 16:e1009129.)
  • Madeo 2018 Science  + (Madeo F, Eisenberg T, Pietrocola F, Kroemer G (2018) Spermidine in health and disease. Science 359:eaan2788.)
  • Madeo 2020 US Patent  + (Madeo F, Eisenberg T, Stekovic S (2020) Use of spermidine for the enhancement of mitochondrial respiration. US Patent US20200054579 A1.)
  • Madlala 2015 Fatty Acid Oxidation O2k-Network Discussion Forum  + (Madlala 2015 Fatty Acid Oxidation O2k-Network Discussion Forum)
  • Madlala 2019 Integr Food Nutr Metab  + (Madlala HP, Maarman GJ, Ojuka E (2019) Fructose impairs mitochondrial respiration and substrate utilization in hepatocytes via the enzyme, glutamate oxaloacetate transaminase. Integr Food Nutr Metab doi: 10.15761/IFNM.1000228.)
  • Madreiter-Sokolowski 2019 FEBS J  + (Madreiter-Sokolowski CT, Ramadani-Muja J, Ziomek G, Burgstaller S, Bischof H, Koshenov Z, Gottschalk B, Malli R, Graier WF (2019) Tracking mitochondria's intra- and inter-organelle signaling. FEBS J 286:4378-401.)
  • Madsen 2015 Nat Commun  + (Madsen CT, Sylvestersen KB, Young C, Larse 
 Madsen CT, Sylvestersen KB, Young C, Larsen SC, Poulsen JW, Andersen MA, Palmqvist EA, Hey-Mogensen M, Jensen PB, Treebak JT, Lisby M, Nielsen ML (2015) Biotin starvation causes mitochondrial protein hyperacetylation and partial rescue by the SIRT3-like deacetylase Hst4p. Nat Commun 6:7726.like deacetylase Hst4p. Nat Commun 6:7726.)
  • Maechler 2006 Int J Biochem Cell Biol  + (Maechler P, Carobbio S, Rubi B (2006) In beta-cells, mitochondria integrate and generate metabolic signals controlling insulin secretion. Int J Biochem Cell Biol 38:696-709.)
  • Maeda 2020 J Cell Mol Med  + (Maeda H, Kami D, Maeda R, Murata Y, Jo JI, Kitani T, Tabata Y, Matoba S, Gojo S (2020) TAT-dextran-mediated mitochondrial transfer enhances recovery from models of reperfusion injury in cultured cardiomyocytes. J Cell Mol Med 24:5007-20.)
  • Maedo 2014 Abstract IOC 2014-04 Schroecken  + (Maedo K, Kaldma A, Planken A, Klepinin A, 
 Maedo K, Kaldma A, Planken A, Klepinin A, Chekulayev V, Varikmaa M, Tepp K, Chevchuk I, Kaambre T (2014) Regulation of mitochondrial respiration in human colorectal cancer cells in situ: the possible role of beta-tubulins. Mitochondr Physiol Network 19.02.ubulins. Mitochondr Physiol Network 19.02.)
  • Maekawa 2019 Biochem Biophys Rep  + (Maekawa S, Takada S, Furihata T, Fukushima A, Yokota T, Kinugawa S (2019) Mitochondrial respiration of complex II is not lower than that of complex I in mouse skeletal muscle. Biochem Biophys Rep 21:100717.)
  • Maekawa 2019 Cell Commun Signal  + (Maekawa S, Takada S, Nambu H, Furihata T, 
 Maekawa S, Takada S, Nambu H, Furihata T, Kakutani N, Setoyama D, Ueyanagi Y, Kang D, Sabe H, Kinugawa S (2019) Linoleic acid improves assembly of the CII subunit and CIII2/CIV complex of the mitochondrial oxidative phosphorylation system in heart failure. Cell Commun Signal 17:128. heart failure. Cell Commun Signal 17:128.)
  • Maffezzini 2020 Cell Mol Life Sci  + (Maffezzini C, Calvo-Garrido J, Wredenberg A, Freyer C (2020) Metabolic regulation of neurodifferentiation in the adult brain. Cell Mol Life Sci 77:2483-96. https://doi.org/10.1007/s00018-019-03430-9)
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