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From Bioblast
Was published in year | Reference | Organism | Tissue;cell | |
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Harris 2022 Autophagy | 2022 | Harris MP, Zhang QJ, Cochran CT, Ponce J, Alexander S, Kronemberger A, Fuqua JD, Zhang Y, Fattal R, Harper T, Murry ML, Grueter CE, Abel ED, Lira VA (2022) Perinatal versus adult loss of ULK1 and ULK2 distinctly influences cardiac autophagy and function. https://doi.org/10.1080/15548627.2021.2022289 | Mouse | Heart |
Harrison 2015 J Appl Physiol | 2015 | Harrison DK, Fasching M, Fontana-Ayoub M, Gnaiger E (2015) Cytochrome redox states and respiratory control in mouse and beef heart mitochondria at steady-state levels of hypoxia. J Appl Physiol 119:1210-8. https://doi.org/10.1152/japplphysiol.00146.2015 | Mouse Bovines | Heart |
Hasenour 2014 J Biol Chem | 2014 | Hasenour CM, Ridley DE, Hughey CC, James FD, Donahue EP, Shearer J, Viollet B, Foretz M, Wasserman DH (2014) 5-Aminoimidazole-4-carboxamide-1-β-D-ribofuranoside (AICAR) effect on glucose production, but not energy metabolism, is independent of hepatic AMPK in vivo. J Biol Chem 289:5950-9. | Mouse | Liver |
Hassoun 2006 Mitochondrion | 2006 | Hassoun SM, Lancel S, Petillot P, Decoster B, Favory R, Marchetti P, Neviere R (2006) Sphingosine impairs mitochondrial function by opening permeability transition pore. Mitochondrion 6:149-54. | Mouse | Heart |
Hauptmann 2009 Neurobiol Aging | 2009 | Hauptmann S, Scherping I, Dröse S, Brandt U, Schulz KL, Jendrach M, Leuner K, Eckert A, Müller WE (2009) Mitochondrial dysfunction: An early event in Alzheimer pathology accumulates with age in AD transgenic mice. Neurobiol Aging 30:1574-86. | Mouse | Nervous system |
Hawley 2016 Diabetes | 2016 | Hawley SA, Ford RJ, Smith BK, Gowans GJ, Mancini SJ, Pitt RD, Day EA, Salt IP, Steinberg GR, Hardie DG (2016) The Na+/glucose cotransporter inhibitor canagliflozin activates AMPK by inhibiting mitochondrial function and increasing cellular AMP levels. Diabetes 65:2784-94. | Human Mouse | Liver HEK |
He 2020 Clin Transl Med | 2020 | He C, Gao P, Cui Y, Li Q, Li Y, Lu Z, Ma H, Zhao Y, Li L, Sun F, Chen, X, Jia H, Liu D, Yang G, Zheng H, Zhu Z (2020) Low‐glucose‐sensitive TRPC6 dysfunction drives hypoglycemia‐induced cognitive impairment in diabetes. Clin Transl Med 10:e205. | Mouse | Nervous system |
Heden 2019 Sci Adv | 2019 | Heden TD, Johnson JM, Ferrara PJ, Eshima H, Verkerke ARP, Wentzler EJ, Siripoksup P, Narowski TM, Coleman CB, Lin CT, Ryan TE, Reidy PT, de Castro Brás LE, Karner CM, Burant CF, Maschek JA, Cox JE, Mashek DG, Kardon G, Boudina S, Zeczycki TN, Rutter J, Shaikh SR, Vance JE, Drummond MJ, Neufer PD, Funai K (2019) Mitochondrial PE potentiates respiratory enzymes to amplify skeletal muscle aerobic capacity. Sci Adv 5:eaax8352. | Mouse | Skeletal muscle |
Hedges 2020 Biosci Rep | 2020 | Hedges CP, Pham T, Shetty B, Masson SWC, Hickey AJR, Shepherd PR, Merry TL (2020) Prolonged treatment with a PI3K p110α inhibitor causes sex- and tissue-dependent changes in antioxidant content, but does not affect mitochondrial function. https://doi.org/10.1042/bsr20201128 | Mouse | Skeletal muscle Liver |
Hedges IBEC2012 | Hedges CP, Hickey AJ, McMahon CD, Smith HK (2012) A fiber-type-specific role for myostatin in regulating mitochondrial function. IBEC2012. | Mouse | Skeletal muscle | |
Heeman 2011 J Cell Sci | 2011 | Heeman B, Van den Haute C, Aelvoet SA, Valsecchi F, Rodenburg RJ, Reumers V, Debyser Z, Callewaert G, Koopman WJ, Willems PH, Baekelandt V (2011) Depletion of PINK1 affects mitochondrial metabolism, calcium homeostasis and energy maintenance. J Cell Sci 124:1115-25. | Mouse | |
Hegazy 2022 Biomedicines | 2022 | Hegazy L, Gill LE, Pyles KD, Kaiho C, Kchouk S, Finck BN, McCommis KS, Elgendy B (2022) Identification of novel mitochondrial pyruvate carrier inhibitors by homology modeling and pharmacophore-based virtual screening. https://doi.org/10.3390/biomedicines10020365 | Mouse | Heart |
Hellgren 2017 MiPschool Obergurgl | Effect of prenatal hypoxia on adult mitochondrial respiration and ROS production. | Mouse | Heart | |
Hellgren 2020 Free Radic Biol Med | 2020 | Hellgren 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. | Mouse | |
Hempenstall 2012 Mech Ageing Dev | 2012 | Hempenstall S, Page MM, Wallen KR, Selman C (2012) Dietary restriction increases skeletal muscle mitochondrial respiration but not mitochondrial content in C57BL/6 mice. Mech Ageing Dev 133:37-45. | Mouse | Skeletal muscle |
Hendricks 2013 Abstract MiP2013 | Hendricks E, Nathan BP, Menze MA (2013) Bioenergetics of permeabilized and intact nerve cell terminals from ApoE deficient and wild type mice. Mitochondr Physiol Network 18.08. | Mouse | Nervous system | |
Hendricks 2015 Thesis | 2015 | Hendricks EW (2015) The impact of aging and estrogen therapy on synaptic mitochondrial bioenergetics in an Alzheimer's mouse model. Master Thesis 1-67. | Mouse | Nervous system |
Henique 2010 J Biol Chem | 2010 | Henique C, Mansouri A, Fumey G, Lenoir V, Girard J, Bouillaud F, Prip-Buus C, Cohen I (2010) Increased mitochondrial fatty acid oxidation is sufficient to protect skeletal muscle cells from palmitate-induced apoptosis. J Biol Chem 285:36818-27. | Mouse | Skeletal muscle Other cell lines |
Heo 2023 J Cachexia Sarcopenia Muscle | 2023 | Heo J, Schifino AG, McFaline-Figueroa J, Miller DL, Hoffman JR, Noble EE, Greising SM, Call JA (2023) Differential effects of Western diet and traumatic muscle injury on skeletal muscle metabolic regulation in male and female mice. https://doi.org/10.1002/jcsm.13361 | Mouse | Skeletal muscle |
Herbst 2014 Abstract MiP2014 | Analysis of mitochondrial function in multiple brain regions through in situ permeabilization. | Mouse | Nervous system | |
Herbst 2015 J Physiol | 2015 | Herbst EA, Holloway GP (2015) Permeabilization of brain tissue in situ enables multi-region analysis of mitochondrial function in a single mouse brain. J Physiol 593:787-801. | Mouse | Nervous system |
Herbst 2015 Metabolism | 2015 | Herbst EA, Roussakis C, Matravadia S, Holloway GP (2015) Chronic treadmill running does not enhance mitochondrial oxidative capacity in the cortex or striatum. Metabolism 64:1419-25. | Mouse | Skeletal muscle Nervous system |
Herbst 2015 Neuroscience | 2015 | Herbst EA, Holloway GP (2015) Exercise training normalizes mitochondrial respiratory capacity within the striatum of the R6/1 model of Huntington's disease. Neuroscience 303:515-23. | Mouse | Nervous system |
Herbst 2016 Appl Physiol Nutr Metab | 2016 | Herbst EA, Holloway GP (2016) Exercise increases mitochondrial glutamate oxidation in the mouse cerebral cortex. Appl Physiol Nutr Metab 41:799-801. | Mouse | Nervous system |
Herbst 2017 Appl Physiol Nutr Metab | 2017 | Herbst EAF, George MAJ, Brebner K, Holloway GP, Kane DA (2017) Lactate is oxidized outside of the mitochondrial matrix in rodent brain. Appl Physiol Nutr Metab 43:467-74. | Mouse Rat | Nervous system |
Herledan 2017 Thesis | 2017 | Herledan G (2017) Le role de SRF au cours de l'atrophie du muscle squelettique adulte & dans les cellules satellites. Diploma Thesis p166. | Mouse | Skeletal muscle |
Hezel 2015 Redox Biol | 2015 | Hezel MP, Liu M, Schiffer TA, Larsen FJ, Checa A, Wheelock CE, Carlström M, Lundberg JO, Weitzberg E (2015) Effects of long-term dietary nitrate supplementation in mice. Redox Biol 5:234-42. | Mouse | Skeletal muscle |
Hill 2015 Abstract MiPschool London 2015 | A novel inhibitor of the mitochondrial permeability transition pore is beneficial in an experimental model of multiple sclerosis. | Mouse | Liver | |
Hingst 2020 Mol Metab | 2020 | Hingst JR, Kjøbsted R, Birk JB, Jørgensen NO, Larsen MR, Kido K, Larsen JK, Kjeldsen SAS, Fentz J, Frøsig C, Holm S, Fritzen AM, Dohlmann TL, Larsen S, Foretz M, Viollet B, Schjerling P, Overby P, Halling JF, Pilegaard H, Hellsten Y, Wojtaszewski JFP (2020) Inducible deletion of skeletal muscle AMPKα reveals that AMPK is required for nucleotide balance but dispensable for muscle glucose uptake and fat oxidation during exercise. Mol Metab 40:101028. | Mouse | Skeletal muscle |
Hodges 2021 J Biol Chem | 2021 | Hodges WT, Jarasvaraparn C, Ferguson D, Griffett K, Gill LE, Chen Y, Ilagan MXG, Hegazy L, Elgendy B, Cho K, Patti GJ, McCommis KS, Finck BN (2021) Mitochondrial pyruvate carrier inhibitors improve metabolic parameters in diet-induced obese mice. J Biol Chem 298:101554. | Mouse | Heart |
Hoeks 2011 PLoS One | 2011 | Hoeks J, de Wilde J, Hulshof MF, van den Berg SA, Schaart G, van Dijk KW, Smit E, Mariman EC (2011) High fat diet-induced changes in mouse muscle mitochondrial phospholipids do not impair mitochondrial respiration despite insulin resistance. PLoS One 6:e27274. | Mouse | Skeletal muscle |
Hoeks 2012 J Cell Physiol | 2012 | Hoeks J, Arany Z, Phielix E, Moonen-Kornips E, Hesselink MK, Schrauwen P (2012) Enhanced lipid -but not carbohydrate- supported mitochondrial respiration in skeletal muscle of PGC-1α overexpressing mice. J Cell Physiol 227:1026-33. | Mouse | Skeletal muscle |
Hoene 2021 Mol Metab | 2021 | Hoene M, Kappler L, Kollipara L, Hu C, Irmler M, Bleher D, Hoffmann C, Beckers J, Hrabě de Angelis M, Häring HU, Birkenfeld AL, Peter A, Sickmann A, Xu G, Lehmann R, Weigert C (2021) Exercise prevents fatty liver by modifying the compensatory response of mitochondrial metabolism to excess substrate availability. Mol Metab 54:101359. | Mouse | Liver |
Hoevenaars 2014 Mol Nutr Food Res | 2014 | Hoevenaars FP, Bekkenkamp-Grovenstein M, Janssen RJ, Heil SG, Bunschoten A, Hoek-van den Hil EF, Snaas-Alders S, Teerds K, van Schothorst EM, Keijer J (2014) Thermoneutrality results in prominent diet-induced body weight differences in C57BL/6J mice, not paralleled by diet-induced metabolic differences. Mol Nutr Food Res 58:799-807. | Mouse | Skeletal muscle |
Hofstee 2017 Placenta | Maternal selenium deficiency in mice alters placental function, reduces foetal glucose concentration and impairs foetal growth. | Mouse | Genital | |
Holloway 2014 Abstract MiP2014 | Acute diet-induced insulin resistance is associated with increased adipose tissue mitochondrial ROS emissions. | Mouse | Fat | |
Holmstroem 2012 Am J Physiol Endocrinol Metab | 2012 | Holmstroem MH, Iglesias-Gutierrez E, Zierath JR, Garcia-Roves PM (2012) Tissue-specific control of mitochondrial respiration in obesity-related insulin resistance and diabetes. Am J Physiol Endocrinol Metab 302:E731-9. | Mouse | Skeletal muscle Liver |
Holmstroem 2013 Metabolism | 2013 | Holmström MH, Tom RZ, Björnholm M, Garcia-Roves PM, Zierath JR (2013) Effect of leptin treatment on mitochondrial function in obese leptin-deficient ob/ob mice. Metabolism 62:1258-67. | Mouse | Skeletal muscle Liver |
Holzknecht 2017 MiPschool Obergurgl | Metabolic characterization of Fahd1 knock-out cardiomyocytes in a mammalian model organism - an outlook. | Mouse | Heart | |
Hong 2022 Cell Stem Cell | 2022 | Hong X, Isern J, Campanario S, Perdiguero E, Ramírez-Pardo I, Segalés J, Hernansanz-Agustín P, Curtabbi A, Deryagin O, Pollán A, González-Reyes JA, Villalba JM, Sandri M, Serrano AL, Enríquez JA, Muñoz-Cánoves P (2022) Mitochondrial dynamics maintain muscle stem cell regenerative competence throughout adult life by regulating metabolism and mitophagy. https://doi.org/10.1016/j.stem.2022.07.009 | Mouse | Skeletal muscle |
Honrath 2017 Cell Death Differ | 2017 | Honrath B, Matschke L, Meyer T, Magerhans L, Perocchi F, Ganjam GK, Zischka H, Krasel C, Gerding A, Bakker BM, Bünemann M, Strack S, Decher N, Culmsee C, Dolga AM (2017) SK2 channels regulate mitochondrial respiration and mitochondrial Ca2+ uptake. Cell Death Differ 24:761-73. | Mouse | Nervous system Other cell lines |
Horcas-Nieto 2023 Biochim Biophys Acta Mol Basis Dis | 2023 | Horcas-Nieto JM, Versloot CJ, Langelaar-Makkinje M, Gerding A, Blokzijl T, Koster MH, Baanstra M, Martini IA, Coppes RP, Bourdon C, van Ijzendoorn SCD, Kim P, Bandsma RHJ, Bakker BM (2023) Organoids as a model to study intestinal and liver dysfunction in severe malnutrition. https://doi.org/10.1016/j.bbadis.2022.166635 | Mouse | Liver Other cell lines |
Horvath 2012 Abstract Bioblast | Horvath G, Eigentler A, Gnaiger E, Tretter L (2012) Respiratory substrate effects on mitochondrial membrane potential - experiments with mouse cardiac muscle homogenate. Mitochondr Physiol Network 17.12. | Mouse | Heart | |
Horvath 2022 Antioxidants (Basel) | 2022 | Horváth G, Sváb G, Komlódi T, Ravasz D, Kacsó G, Doczi J, Chinopoulos C, Ambrus A, Tretter L (2022) Reverse and forward electron flow-induced H2O2 formation is decreased in α-ketoglutarate dehydrogenase (α-KGDH) subunit (E2 or E3) heterozygote knock out animals. https://doi.org/10.3390/antiox11081487 | Mouse | Nervous system |
Hu 2017 Proc Natl Acad Sci U S A | 2017 | Hu H, Nan J, Sun Y, Zhu D, Xiao C, Wang Y, Zhu L, Wu Y, Zhao J, Wu R, Chen J, Yu H, Hu X, Zhu W, Wang J (2017) Electron leak from NDUFA13 within mitochondrial complex I attenuates ischemia-reperfusion injury via dimerized STAT3. Proc Natl Acad Sci U S A 114:11908-13. | Mouse | |
Hu 2024 Ecotoxicol Environ Saf | 2024 | Hu R, Fan W, Li S, Zhang G, Zang L, Qin L, Li R, Chen R, Zhang L, Gu W, Zhang Y, Rajagopalan S, Sun Q, Liu C (2024) PM2.5-induced cellular senescence drives brown adipose tissue impairment in middle-aged mice. Ecotoxicol Environ Saf 278:116423. https://doi.org/10.1016/j.ecoenv.2024.116423 | Mouse | Fat |
Hu 2024 Front Endocrinol (Lausanne) | 2024 | Hu Y, Fang B, Tian X, Wang H, Tian X, Yu F, Li T, Yang Z, Shi R (2024) Passive exercise is an effective alternative to HRT for restoring OVX induced mitochondrial dysfunction in skeletal muscle. Front Endocrinol (Lausanne) 15:1356312. https://doi.org/10.3389/fendo.2024.1356312 | Mouse | Skeletal muscle |
Huai 2013 J Cell Sci | 2013 | Huai J, Vögtle FN, Jöckel L, Li Y, Kiefer T, Ricci JE, Borner C (2013) TNFα-induced lysosomal membrane permeability (LMP) is downstream of MOMP and triggered by caspase-mediated p75 cleavage and ROS formation. J Cell Sci 126:4015-25. | Human Mouse | HeLa Fibroblast |
Huang 2017 Sci Rep | 2017 | Huang L, Zhang K, Guo Y, Huang F, Yang K, Chen L, Huang K, Zhang F, Long Q, Yang Q (2017) Honokiol protects against doxorubicin cardiotoxicity via improving mitochondrial function in mouse hearts. Sci Rep 7:11989. | Mouse | Heart |
Hughes 2019 J Physiol | 2019 | Hughes MC, Ramos SV, Turnbull PC, Edgett BA, Huber JS, Polidovitch N, Schlattner U, Backx PH, Simpson JA, Perry CGR (2019) Impairments in left ventricular mitochondrial bioenergetics precede overt cardiac dysfunction and remodelling in Duchenne muscular dystrophy. J Physiol 598:1377-92. | Mouse | Heart |