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O2k-Publications: Hypoxia

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Back to: O2k-Publications: Specific topics

 Was published in yearHas title
Patil 2024 J Exp Biol2024Patil YN, Gnaiger E, Landry AP, Leno ZJ, Hand SC (2024) OXPHOS capacity is diminished and the phosphorylation system inhibited during diapause in an extremophile, embryos of Artemia franciscana. J Exp Biol 227:jeb.245828. https://doi.org/10.1242/jeb.245828
Ravasz 2024 Sci Rep2024Ravasz D, Bui D, Nazarian S, Pallag G, Karnok N, Roberts J, Marzullo BP, Tennant DA, Greenwood B, Kitayev A, Hill C, KomlĂłdi T, Doerrier C, Cunatova K, Fernandez-Vizarra E, Gnaiger E, Kiebish Michael A, Raska A, Kolev K, Czumbel B, Narain NR, Seyfried TN, Chinopoulos C (2024) Residual Complex I activity and amphidirectional Complex II operation support glutamate catabolism through mtSLP in anoxia. Sci Rep 14:1729. https://doi.org/10.1038/s41598-024-51365-4
Donnelly 2024 Redox Biol2024Donnelly C, KomlĂłdi T, Cecatto C, Cardoso LHD, Compagnion A-C, Matera A, Tavernari D, Campiche O, Paolicelli RC, Zanou N, Kayser B, Gnaiger E, Place N (2024) Functional hypoxia reduces mitochondrial calcium uptake. Redox Biol 71:103037. https://doi.org/10.1016/j.redox.2024.103037
Ciccone 2024 J Exp Biol2024Ciccone C, Kante F, Folkow LP, Hazlerigg DG, West AC, Wood SH (2024) Circadian coupling of mitochondria in a deep-diving mammal. J Exp Biol 227:jeb24699. https://doi.org/10.1242/jeb.246990
Steffen 2023 J Exp Biol2023Steffen JBM, Sokolov EP, Bock C, Sokolova IM (2023) Combined effects of salinity and intermittent hypoxia on mitochondrial capacity and reactive oxygen species efflux in the Pacific oyster, Crassostrea gigas. https://doi.org/10.1242/jeb.246164
Donnelly 2023 MitoFit2023Donnelly C, Komlódi T, Cecatto C, Cardoso LHD, Compagnion AC, Matera A, Tavernari D, Zanou N, Kayser B, Gnaiger E, Place N (2023) Functional hypoxia reduces mitochondrial calcium uptake. MitoFit Preprints 2023.2. https://doi.org/10.26124/mitofit:2023-0002 — 2024-11-17 published in Redox Biol.
Galli 2023 Comp Biochem Physiol A Mol Integr Physiol2023Galli GLJ, Shiels HA, White E, Couturier CS, Stecyk JAW (2023) The air-breathing Alaska blackfish (Dallia pectoralis) suppresses brain mitochondrial reactive oxygen species to survive cold hypoxic winters. https://doi.org/10.1016/j.cbpa.2022.111355
Bowering 2023 Front Physiol2023Bowering LR, McArley TJ, Devaux JBL, Hickey AJR, Herbert NA (2023) Metabolic resilience of the Australasian snapper (Chrysophrys auratus) to marine heatwaves and hypoxia. https://doi.org/10.3389/fphys.2023.1215442
Kalia 2023 Cell Rep2023Kalia NP, Singh S, Hards K, Cheung CY, Sviriaeva E, Banaei-Esfahani A, Aebersold R, Berney M, Cook GM, Pethe K (2023) M. tuberculosis relies on trace oxygen to maintain energy homeostasis and survive in hypoxic environments. https://doi.org/10.1016/j.celrep.2023.112444
Arias-Reyes 2023 MitoFit2023Arias-Reyes C, Aliaga-RaduĂĄn F, Pinto-Aparicio R, Joseph V, Soliz J (2023) Mitochondrial plasticity in the retrosplenial cortex enhances ATP synthesis during acclimatization to hypoxia in mice but not in rats. MitoFit Preprints 2023.6. https://doi.org/10.26124/mitofit:2023-0006
Ackerly 2023 Comp Biochem Physiol A Mol Integr Physiol2023Ackerly KL, Negrete B Jr, Dichiera AM, Esbaugh AJ (2023) Hypoxia acclimation improves mitochondrial efficiency in the aerobic swimming muscle of red drum (Sciaenops ocellatus). https://doi.org/10.1016/j.cbpa.2023.111443
Timon-Gomez 2022 Elife2022TimĂłn-GĂłmez A, Scharr AL, Wong NY, Ni E, Roy A, Liu M, Chau J, Lampert JL, Hireed H, Kim NS, Jan M, Gupta AR, Day RW, Gardner JM, Wilson RJA, Barrientos A, Chang AJ (2022) Tissue-specific mitochondrial HIGD1C promotes oxygen sensitivity in carotid body chemoreceptors. https://doi.org/10.7554/elife.78915
Muccini 2022 Oxid Med Cell Longev2022Muccini AM, Tran NT, Hale N, McKenzie M, Snow RJ, Walker DW, Ellery SJ (2022) The effects of in utero fetal hypoxia and creatine treatment on mitochondrial function in the late gestation fetal sheep brain. https://doi.org/10.1155/2022/3255296
Donnelly 2022 BEC2022Donnelly C, Schmitt S, Cecatto C, Cardoso LHD, Komlódi T, Place N, Kayser B, Gnaiger E (2022) The ABC of hypoxia – what is the norm. Bioenerg Commun 2022.12.v2. https://doi.org/10.26124/bec:2022-0012.v2
Saraiva 2022 Pathogens2022Saraiva FMS, Cosentino-Gomes D, Inacio JDF, Almeida-Amaral EE, Louzada-Neto O, Rossini A, Nogueira NP, Meyer-Fernandes JR, Paes MC (2022) Hypoxia effects on Trypanosoma cruzi epimastigotes proliferation, differentiation, and energy metabolism. https://doi.org/10.3390/pathogens11080897
Pallag 2022 Int J Mol Sci2022Pallag G, Nazarian S, Ravasz D, Bui D, KomlĂłdi T, Doerrier C, Gnaiger E, Seyfried TN, Chinopoulos C (2022) Proline oxidation supports mitochondrial ATP production when Complex I is inhibited. https://doi.org/10.3390/ijms23095111
Vandenberg 2022 Am J Physiol Cell Physiol2022Vandenberg GG, Thotakura A, Scott AL (2022) Mitochondrial bioenergetics of astrocytes in Fragile X syndrome: new perspectives on culture conditions and sex effects. Am J Physiol Cell Physiol 322:C125-35. https://doi.org/10.1152/ajpcell.00130.2021
Dawson 2022 FASEB J2022Dawson NJ, Scott GR (2022) Adaptive increases in respiratory capacity and O2 affinity of subsarcolemmal mitochondria from skeletal muscle of high-altitude deer mice. https://doi.org/10.1096/fj.202200219r
Donnelly 2022 MitoFit Hypoxia2022Donnelly C, Schmitt S, Cecatto C, Cardoso LHD, Komlodi T, Place N, Kayser B, Gnaiger E (2022) The ABC of hypoxia – what is the norm. https://doi.org/10.26124/mitofit:2022-0025.v2 — 2022-11-14 published in Bioenerg Commun 2022.12.
Lieder 2022 J Cardiovasc Pharmacol Ther2022Lieder HR, TĂŒller P, Braczko F, Zandi A, Kamler M, Thielmann M, Heusch G, Kleinbongard P (2022) Bioassays of humoral cardioprotective factors released by remote ischemic conditioning in patients undergoing coronary artery bypass surgery. https://doi.org/10.1177/10742484221097273
Smith 2022 J Pineal Res2022Smith KLM, Swiderska A, Lock MC, Graham L, Iswari W, Choudhary T, Thomas D, Kowash HM, Desforges M, Cottrell EC, Trafford AW, Giussani DA, Galli GLJ (2022) Chronic developmental hypoxia alters mitochondrial oxidative capacity and reactive oxygen species production in the fetal rat heart in a sex-dependent manner. https://doi.org/10.1111/jpi.12821
Starr 2022 Curr Res Physiol2022Starr VJ, Dzialowski EM (2022) Developing chicken cardiac muscle mitochondria are resistant to variations in incubation oxygen levels. https://doi.org/10.1016/j.crphys.2022.03.001
Galli 2021 Front Physiol2021Galli GLJ, Ruhr IM, Crossley J, Crossley DA 2nd (2021) The long-term effects of developmental hypoxia on cardiac mitochondrial function in snapping turtles. Front Physiol 12:689684. doi: 10.3389/fphys.2021.689684
Pamenter 2021 Biol Lett2021Pamenter ME, Gomez CR, Richards JG, Milsom WK (2021) Mitochondrial responses to prolonged anoxia in brain of red-eared slider turtles. Biol Lett 12:20150797.
Liu 2021 Front Physiol2021Liu H, Tenzing N, van Patot MT, Qile M, Ge RL, Wuren T (2021) Enhanced placental mitochondrial respiration in Tibetan women at high altitude. Front Physiol 12:697022. doi: 10.3389/fphys.2021.697022
Dunn 2021 Arterioscler Thromb Vasc Biol2021Dunn LL, Kong SMY, Tumanov S, Chen W, Cantley J, Ayer A, Maghzal GJ, Midwinter RG, Chan KH, Ng MKC, Stocker R (2021) Hmox1 (heme oxygenase-1) protects against ischemia-mediated injury via stabilization of HIF-1α (hypoxia-inducible factor-1α). Arterioscler Thromb Vasc Biol 41:317-30.
Ouillon 2021 J Exp Biol2021Ouillon N, Sokolov EP, Otto S, Rehder G, Sokolova IM (2021) Effects of variable oxygen regimes on mitochondrial bioenergetics and reactive oxygen species production in a marine bivalve Mya arenaria. J Exp Biol 224:jeb237156.
Liu 2021 FASEB J2021Liu Z, Chaillou T, Santos Alves E, Mader T, Jude B, Ferreira DMS, Hynynen H, Cheng AJ, Jonsson WO, Pironti G, Andersson DC, Kenne E, Ruas JL, Tavi P, Lanner JT (2021) Mitochondrial NDUFA4L2 is a novel regulator of skeletal muscle mass and force. FASEB J 35:e22010.
Cheng 2021 Comp Biochem Physiol B Biochem Mol Biol2021Cheng H, Munro D, Huynh K, Pamenter ME (2021) Naked mole-rat skeletal muscle mitochondria exhibit minimal functional plasticity in acute or chronic hypoxia. Comp Biochem Physiol B Biochem Mol Biol 255:110596.
Komlodi 2021 BEC AmR-O22021KomlĂłdi T, Sobotka O, Gnaiger E (2021) Facts and artefacts on the oxygen dependence of hydrogen peroxide production using Amplex UltraRed. Bioenerg Commun 2021.4. https://doi.org/10.26124/bec:2021-0004
Hesse 2021 FASEB J2021Hesse J, Groterath W, Owenier C, Steinhausen J, Ding Z, Steckel B, Czekelius C, Alter C, Marzoq A, Schrader J (2021) Normoxic induction of HIF-1α by adenosine-A2B R signaling in epicardial stromal cells formed after myocardial infarction. FASEB J 35:21517.
Mahalingam 2020 J Physiol2020Mahalingam S, Cheviron ZA, Storz JF, McClelland GB, Scott GR (2020) Chronic cold exposure induces mitochondrial plasticity in deer mice native to high altitudes. J Physiol 598:5411-26. https://doi.org/10.1113/JP280298
Sommer 2020 Sci Adv2020Sommer N, Alebrahimdehkordi N, Pak O, Knoepp F, Strielkov I, Scheibe S, Dufour E, Andjelekovic A, Sydykov A, Saraji A, Petrovic A, Quanz K, Hecker M, Kumar M, Wahl J, Kraut S, Seeger W, Schermuly RT, Ghofrani HA, Ramser K, Braun T, Jacobs HT, Weissmann N, Szibor M (2020) Bypassing mitochondrial Complex III using alternative oxidase inhibits acute pulmonary oxygen sensing. Sci Adv 6:eaba0694.
Song 2020 Obes Facts2020Song K, Zhang Y, Ga Q, Bai Z, Ge RL (2020) Increased insulin sensitivity by high-altitude hypoxia in mice with high-fat diet-induced obesity is associated with activated AMPK signaling and subsequently enhanced mitochondrial biogenesis in skeletal muscles. Obes Facts 13:455-72.
Hellgren 2020 Free Radic Biol Med2020Hellgren KT, Premanandhan H, Quinn CJ, Trafford AW, Galli GLJ (2020) Sex-dependent effects of developmental hypoxia on cardiac mitochondria from adult murine offspring . Free Radic Biol Med 162:490-99.
Pelster 2020 PLoS One2020Pelster B, Wood CM, Campos DF, Val AL (2020) Cellular oxygen consumption, ROS production and ROS defense in two different size-classes of an Amazonian obligate air-breathing fish (Arapaima gigas). PLoS One 15:e0236507.
Hernansanz-Agustin 2020 Nature2020Hernansanz-Agustín P, Choya-Foces C, Carregal-Romero S, Ramos E, Oliva T, Villa-Piña T, Moreno L, Izquierdo-Álvarez A, Cabrera-García JD, Cortés A, Lechuga-Vieco AV, Jadiya P, Navarro E, Parada E, Palomino-Antolín A, Tello D, Acín-Pérez R, Rodríguez-Aguilera JC, Navas P, Cogolludo Á, López-Montero I, Martínez-Del-Pozo Á, Egea J, López MG, Elrod JW, Ruíz-Cabello J, Bogdanova A, Enríquez JA, Martínez-Ruiz A (2020) Na+ controls hypoxic signalling by the mitochondrial respiratory chain. Nature 586:287-91.
Song 2020 Life Sci2020Song K, Zhang Y, Ga Q, Bai Z, Ge RL (2020) High-altitude chronic hypoxia ameliorates obesity-induced non-alcoholic fatty liver disease in mice by regulating mitochondrial and AMPK signaling. Life Sci 252:117633.
Devaux 2019 Front Physiol2019Devaux JBL, Hedges CP, Birch N, Herbert N, Renshaw GMC, Hickey AJR (2019) Acidosis maintains the function of brain mitochondria in hypoxia-tolerant triplefin fish: a strategy to survive acute hypoxic exposure? Front Physiol 9:1941.
Lau 2019 Comp Biochem Physiol B Biochem Mol Biol2019Lau GY, Milsom WK, Richards JG, Pamenter ME (2019) Heart mitochondria from naked mole-rats (Heterocephalus glaber) are more coupled, but similarly susceptible to anoxia-reoxygenation stress than in laboratory mice (Mus musculus). Comp Biochem Physiol B Biochem Mol Biol 240:110375.
Laouafa 2019 Acta Physiol (Oxf)2019Laouafa S, Roussel D, Marcouiller F, Soliz J, Gozal D, Bairam A, Joseph V (2019) Roles of oestradiol receptor alpha and beta against hypertension and brain mitochondrial dysfunction under intermittent hypoxia in female rats. Acta Physiol (Oxf) 226:e13255.
Mitroshina 2019 Oxid Med Cell Longev2019Mitroshina EV, Mishchenko TA, Shirokova OM, Astrakhanova TA, Loginova MM, Epifanova EA, Babaev AA, Tarabykin VS, Vedunova MV (2019) Intracellular neuroprotective mechanisms in neuron-glial networks mediated by glial cell line-derived neurotrophic factor. Oxid Med Cell Longev 2019:1036907.
Cadiz 2019 Comp Biochem Physiol B Biochem Mol Biol2019Cadiz L, Bundgaard A, Malte H, Fago A (2019) Hypoxia enhances blood O2 affinity and depresses skeletal muscle O2 consumption in zebrafish (Danio rerio). Comp Biochem Physiol B Biochem Mol Biol 234:18-25.
Cedrone 2019 Thesis2019Cedrone M (2019) Low birth weight and post-natal diet induced alterations in skeletal muscle oxygen consumption and fiber type composition. Master's Thesis 83.
Dlaskova 2019 Biochim Biophys Acta Bioenerg2019DlaskovĂĄ A, Ć paček T, EngstovĂĄ H, Ć pačkovĂĄ J, Schröfel A, HolendovĂĄ B, SmolkovĂĄ K, PlecitĂĄ-HlavatĂĄ L, JeĆŸek P (2019) Mitochondrial cristae narrowing upon higher 2-oxoglutarate load. Biochim Biophys Acta Bioenerg 1860:659-78.
Malagrino 2019 Oxid Med Cell Longev2019MalagrinĂČ F, Zuhra K, Mascolo L, Mastronicola D, Vicente JB, Forte E, GiuffrĂš A (2019) Hydrogen sulfide oxidation: adaptive changes in mitochondria of SW480 colorectal cancer cells upon exposure to hypoxia. Oxid Med Cell Longev 2019:8102936.
Hernansanz-Agustin 2019 bioRxiv2019Hernansanz-Agustín P, Choya-Foces C, Carregal-Romero S, Ramos E, Oliva T, Villa-Piña T, Moreno L, Izquierdo-Álvarez A, JCabrera-García JD, Cortés A, Lechuga-Vieco AV, Jadiya P, Navarro E, Parada E, Palomino-Antolín A, Tello D, Acín-Pérez R, Rodríguez-Aguilera JC, Navas P, Cogolludo A, López-Montero I, Martínez-del-Pozo A, Egea J, López MG, Elrod JW, Ruiz-Cabello J, Bogdanova A, Enríquez JA, Martínez-Ruiz A (2019) Mitochondrial Na+ import controls oxidative phosphorylation and hypoxic redox signalling. bioRxiv doi: https://doi.org/10.1101/385690.
Lozano 2019 Oxid Med Cell Longev2019Lozano O, LĂĄzaro-Alfaro A, Silva-Platas C, Oropeza-AlmazĂĄn Y, Torres-Quintanilla A, Bernal-RamĂ­rez J, Alves-Figueiredo H, GarcĂ­a-Rivas G (2019) Nanoencapsulated quercetin improves cardioprotection during hypoxia-reoxygenation injury through preservation of mitochondrial function. Oxid Med Cell Longev 2019:7683051.
Benoist 2019 Sci Rep2019Benoist L, Chadet S, Genet T, Lefort C, Heraud A, Danila MD, Muntean DM, Baron C, Angoulvant D, Babuty D, Bourguignon T, Ivanes F (2019) Stimulation of P2Y11 receptor protects human cardiomyocytes against hypoxia/reoxygenation injury and involves PKCΔ signaling pathway. Sci Rep 9:11613.
Mendes 2018 Mol Neurobiol2018Mendes Lima JP, RayĂȘe D, Silva-Rodrigues T, Ribeiro Paes Pereira P, Mendonca APM, Rodrigues-Ferreira C, Szczupak D, Fonseca A, Oliveira MF, Souza Lima FR, Lent R, Galina A, Uziel D (2018) Perinatal asphyxia and brain development: mitochondrial damage without anatomical or cellular losses. Mol Neurobiol doi.org/10.1007/s12035-018-1019-7.
Boutoual 2018 Sci Rep2018Boutoual R, Meseguer S, Villarroya M, MartĂ­n-HernĂĄndez E, Errami M, MartĂ­n MA, Casado M, Armengod ME (2018) Defects in the mitochondrial-tRNA modification enzymes MTO1 and GTPBP3 promote different metabolic reprogramming through a HIF-PPARÎł-UCP2-AMPK axis. Sci Rep 8:1163.
Laouafa 2018 Adv Exp Med Biol2018Laouafa S, Roussel D, Marcouiller F, Soliz J, Bairam A, Joseph V (2018) Role of estradiol receptor beta (ERÎČ) on arterial pressure, respiratory chemoreflex and mitochondrial function in young and aged female mice. Adv Exp Med Biol 1071:115-27.
Cruz 2018 Chem Biol Interact2018Cruz LC, Ecker A, Rodrigues NR, Martins IK, Posser T, Maciel FE, Vargas MA, Barbosa NV, Franco JL (2018) Honey protects against wings posture error and molecular changes related to mitochondrial pathways induced by hypoxia/reoxygenation in adult Drosophila melanogaster. Chem Biol Interact 291:245-52.
Zhang 2018 J Mol Cell Cardiol2018Zhang G, Sheng M, Wang J, Teng T, Sun Y, Yang Q, Xu Z (2018) Zinc improves mitochondrial respiratory function and prevents mitochondrial ROS generation at reperfusion by phosphorylating STAT3 at Ser727. J Mol Cell Cardiol 118:169-82.
Krug 2018 Thesis2018Krug KP (2018) Adaptation of metabolism and respiratory chain functions in pulmonary arterial vascular muscle cells under chronic hypoxia: especially considering the cytochrome c oxidase subunit 4 isoform 2. Doctoral Dissertation 136.
Chicco 2018 J Biol Chem2018Chicco AJ, Le CH, Gnaiger E, Dreyer HC, Muyskens JB, D'Alessandro A, Nemkov T, Hocker AD, Prenni JE, Wolfe LM, Sindt NM, Lovering AT, Subudhi AW, Roach RC (2018) Adaptive remodeling of skeletal muscle energy metabolism in high-altitude hypoxia: Lessons from AltitudeOmics. J Biol Chem 293:6659-71.
Zhan 2018 Mol Cell2018Zhan N, Wang C, Chen L, Yang H, Feng J, Gong X, Ren B, Wu R, Mu J, Li Y, Liu Z, Zhou Y, Peng J, Wang K, Huang X, Xiao S, Zuo J (2018) S-Nitrosylation targets GSNO reductase for selective autophagy during hypoxia responses in plants. Mol Cell 71:142-54.
Fuhrmann 2018 Cell Mol Life Sci2018Fuhrmann DC, Wittig I, Dröse S, Schmid T, Dehne N, BrĂŒne B (2018) Degradation of the mitochondrial complex I assembly factor TMEM126B under chronic hypoxia. Cell Mol Life Sci 75:3051-67.
Urazov 2018 Sovrem Tekhnologii Med2018Urazov MD, Astrakhanova TA, Usenko AV, Mishchenko TA, Schelchkova NA, Kravchenko GA, Vedunova MV, Mitroshina EV (2018) New aspects of central nervous system adaptation to prenatal hypoxia. Sovrem Tekhnologii Med 10:60-68.
Kim 2018 Free Radic Biol Med2018Kim M, Stepanova A, Niatsetskaya Z, Sosunov S, Arndt S, Murphy MP, Galkin A, Ten VS (2018) Attenuation of oxidative damage by targeting mitochondrial complex I in neonatal hypoxic-ischemic brain injury. Free Radic Biol Med 124:517-24.
De Medeiros 2018 Biochim Biophys Acta2018de Medeiros WA, da Silva LA, Dall'Igna DM, Michels M, Manfredini A, Dos Santos Cardoso J, Constantino L, Scaini G, Vuolo F, Streck EL, Ritter C, Dal-Pizzol F (2018) N-acetylcysteine effects on a murine model of chronic critical limb ischemia. Biochim Biophys Acta 1864:454-63.
Pacheco-Velazquez 2018 Mol Pharm2018Pacheco-Velåzquez SC, Robledo-Cadena DX, Hernåndez-Reséndiz I, Gallardo-Pérez JC, Moreno-Sånchez R, Rodríguez-Enríquez S (2018) Energy metabolism drugs block triple negative breast metastatic cancer cell phenotype. Mol Pharm 15:2151-64.
Tetri 2018 Front Physiol2018Tetri LH, Diffee GM, Barton GP, Braun RK, Yoder HE, Haraldsdottir K, Eldridge MW, Goss KN (2018) Sex-specific skeletal muscle fatigability and decreased mitochondrial oxidative capacity in adult rats exposed to postnatal hyperoxia. Front Physiol 9:326.
Stepanova 2018 J Cereb Blood Flow Metab2018Stepanova A, Konrad C, Guerrero-Castillo S, Manfredi G, Vannucci S, Arnold S, Galkin A (2018) Deactivation of mitochondrial complex I after hypoxia-ischemia in the immature brain. J Cereb Blood Flow Metab 39:1790-802.
Dawson 2018 Acta Physiol (Oxf)2018Dawson NJ, Lyons SA, Henry DA, Scott GR (2018) Effects of chronic hypoxia on diaphragm function in deer mice native to high altitude. Acta Physiol (Oxf) 223:e13030.
Ferri 2018 Eur J Appl Physiol2018Ferri A, Panariti A, Miserocchi G, Rocchetti M, Buoli Comani G, Rivolta I, Bishop DJ (2018) Tissue specificity of mitochondrial adaptations in rats after 4 weeks of normobaric hypoxia. Eur J Appl Physiol 118:1641-52.
Friederich-Persson 2018 Acta Physiol (Oxf)2018Friederich-Persson M, Persson P, Hansell P, Palm F (2018) Deletion of Uncoupling Protein-2 reduces renal mitochondrial leak respiration, intrarenal hypoxia and proteinuria in a mouse model of type 1 diabetes. Acta Physiol (Oxf) 223:e13058.
Astrakhanova 2018 Sovrem Tekhnologii Med2018Astrakhanova бА, Urazov МD, Usenko АV, Mitroshina ЕV, Mishchenko бА, Schelchkova NА, Vedunova МV (2018) BDNF-mediated regulation of the brain mitochondria functional state in hypoxia. Sovrem Tekhnologii Med 10:88-94.
Robach 2018 Scand J Med Sci Sports2018Robach P, Hansen J, Pichon A, Meinild Lundby AK, Dandanell S, SlettalÞkken Falch G, Hammarström D, Pesta DH, Siebenmann C, Keiser S, Kérivel P, Whist JE, RÞnnestad BR, Lundby C (2018) Hypobaric live high-train low does not improve aerobic performance more than live low-train low in cross-country skiers. Scand J Med Sci Sports 28:1636-52.
Scott 2018 Integr Comp Biol2018Scott GR, Guo KH, Dawson NJ (2018) The mitochondrial basis for adaptive variation in aerobic performance in high-altitude deer mice. Integr Comp Biol 58:506-18. https://doi.org/10.1093/icb/icy056
Wu 2017 Sci Rep2017Wu LH, Chang SC, Fu TC, Huang CH, Wang JS (2017) High-intensity interval training improves mitochondrial function and suppresses thrombin generation in platelets undergoing hypoxic stress. Sci Rep 7:4191.
Ren 2017 Front Pharmacol2017Ren YJ, Wang XH, Ji C, Guan YD, Lu XJ, Liu XR, Zhang HH, Guo LC, Xu QH, Zhu WD, Ming ZJ, Yang JM, Cheng Y, Zhang Y (2017) Silencing of NAC1 expression induces cancer cells oxidative stress in hypoxia and potentiates the therapeutic activity of elesclomol. Front Pharmacol 8:804.
Da Silva 2017 Thesis2017da Silva LA (2017) Efeito do tratamento com N-acetilcisteĂ­na sobre dinĂąmica mitocondrial em modelo animal de isquemia crĂŽnica de membros inferiores. Dissertation p54.
Neckar 2017 Clin Sci (Lond)2017Neckar J, Svatonova A, Weissova R, Drahota Z, Zajickova P, Brabcova I, Kolar D, Alanova P, Vasinova J, Silhavy J, Hlavackova M, Tauchmannova K, Milerova M, Ostadal B, Cervenka L, Zurmanova J, Kalous M, Novakova O, Novotny J, Pravenec M, Kolar F (2017) Selective replacement of mitochondrial DNA increases the cardioprotective effect of chronic continuous hypoxia in spontaneously hypertensive rats. Clin Sci (Lond) 131:865-81.
Mahalingam 2017 J Physiol2017Mahalingam S, McClelland GB, Scott GR (2017) Evolved changes in the intracellular distribution and physiology of muscle mitochondria in high-altitude native deer mice. J Physiol 595:4785-801.
Koning 2017 J Cereb Blood Flow Metab2017Koning G, Leverin AL, Nair S, Schwendimann L, Ek J, Carlsson Y, Gressens P, Thornton C, Wang X, Mallard C, Hagberg H (2017) Magnesium induces preconditioning of the neonatal brain via profound mitochondrial protection. J Cereb Blood Flow Metab 39:1038-55.
Zholobenko 2017 PLOS ONE2017Zholobenko AV, Mouithys-Mickalad A, Dostal Z, Serteyn D, Modriansky M (2017) On the causes and consequences of the uncoupler-like effects of quercetin and dehydrosilybin in H9c2 cells. PLOS ONE 12:e0185691.
Lau 2017 Dissertation2017Lau G (2017) Adaptive variation of mitochondrial function in response to oxygen variability in intertidal sculpins (Cottidae, Actinopterygii). Dissertation p148.
Schmidt 2017 J Vasc Surg2017Schmidt CA, Ryan TE, Lin CT, Inigo MM, Green TD, Brault JJ, Spangenburg EE, McClung JM (2017) Diminished force production and mitochondrial respiratory deficits are strain-dependent myopathies of subacute limb ischemia. J Vasc Surg 65:1504-1514.
Pamenter 2017 J Exp Biol2017Pamenter ME, Lau GY, Richards JG, Milsom WK (2017) Naked mole rat brain mitochondria electron transport system flux and H+ leak are reduced during acute hypoxia. J Exp Biol 221.
Horscroft 2017 Proc Natl Acad Sci U S A2017Horscroft JA, Kotwica AO, Laner V, West JA, Hennis PJ, Levett DZH, Howard DJ, Fernandez BO, Burgess SL, Ament Z, Gilbert-Kawai ET, Vercueil A, Landis BD, Mitchell K, Mythen MG, Branco C, Johnson RS, Feelisch M, Montgomery HE, Griffin JL, Grocott MPW, Gnaiger E, Martin DS, Murray AJ (2017) Metabolic basis to Sherpa altitude adaptation. Proc Natl Acad Sci U S A 114:6382–7. https://doi.org/10.1073/pnas.1700527114
Cunha-de 2017 Thesis2017Cunha-de Padua MM (2017) Mecanismos citotĂłxicos da galactomanana de sementes de Schizolobium amazonicum e seus complexos com oxovanĂĄdio em cĂ©lulas de hepatocarcinoma humano (HepG2) e efeito do silenciamento da enzima glucose-6-fosfato isomerase (GPI) na sobrevivĂȘncia de cĂ©lulas de adenocarcinoma de cĂłlon humano (LS174T). Doctoral Thesis p160.
Lau 2017 Mol Biol Evol2017Lau GY, Mandic M, Richards JG (2017) Evolution of cytochrome c oxidase in hypoxia tolerant Sculpins (Cottidae, Actinopterygii). Mol Biol Evol 34:2153-62.
Hals 2017 Physiol Rep2017Hals I, Ohki T, Singh R, Ma Z, Björklund A, Balasuriya C, Scholz H, Grill V (2017) Hyperoxia reduces insulin release and induces mitochondrial dysfunction with possible implications for hyperoxic treatment of neonates. Physiol Rep 5. pii: e13447.
Salvadego 2016 J Appl Physiol (1985)2016Salvadego D, Keramidas ME, Brocca L, Domenis R, Mavelli I, Rittweger J, Eiken O, Mekjavic IB, Grassi B (2016) Separate and combined effects of a 10-d exposure to hypoxia and inactivity on oxidative function in vivo and mitochondrial respiration ex vivo in humans. J Appl Physiol (1985) 121:154-63.
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