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  • |editor=Komlodi T {{Template:Cited by Komlodi 2021 MitoFit CoQ}}
    372 bytes (46 words) - 08:49, 16 July 2021
  • |editor=Komlodi T {{Template:Cited by Komlodi 2021 MitoFit CoQ}}
    722 bytes (94 words) - 17:13, 1 February 2022
  • {{Template:Cited by Komlodi 2021 MitoFit AmR}} {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}}
    455 bytes (56 words) - 11:18, 19 August 2021
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} |additional=MitoFit 2021 Tissue normoxia
    396 bytes (45 words) - 10:23, 6 August 2021
  • {{Template:Cited by Komlodi 2021 MitoFit AmR}} {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}}
    991 bytes (136 words) - 17:27, 20 April 2022
  • |year=2021-08-02 |abstract=Komlodi T, Schmitt S, Gnaiger E (2021) O2k-MultiSensor system with ion selective electrodes (ISE). Mitochondr Phy
    991 bytes (129 words) - 11:23, 17 October 2023
  • |editor=Komlodi T {{Template:Cited by Komlodi 2021 MitoFit CoQ}}
    1 KB (155 words) - 12:07, 9 December 2021
  • {{Template:Cited by Komlodi 2021 MitoFit AmR}} {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}}
    1 KB (150 words) - 09:23, 23 August 2021
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} {{Template:Cited by Komlodi 2021 MitoFit AmR}}
    2 KB (240 words) - 20:18, 7 April 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} |additional=MitoFit 2021 Tissue normoxia
    968 bytes (133 words) - 11:37, 19 August 2021
  • {{Template:Cited by Komlodi 2021 MitoFit AmR-O2}} {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}}
    1 KB (216 words) - 14:18, 21 July 2022
  • |editor=Komlodi T {{Template:Cited by Komlodi 2021 MitoFit CoQ}}
    2 KB (244 words) - 13:59, 24 August 2021
  • {{Template:Cited by Komlodi 2021 MitoFit AmR}} {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}}
    2 KB (251 words) - 09:22, 23 August 2021
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} {{Template:Cited by Komlodi 2021 MitoFit AmR}}
    2 KB (241 words) - 20:17, 7 April 2022
  • ...sub>2</sub> production on oxygen concentration is vital for the studies of tissue ischemia/reperfusion, where the relationship between oxygen availability, r |editor=[[Komlodi T]],
    2 KB (286 words) - 07:17, 28 June 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} {{Template:Cited by Komlodi 2022 MitoFit pmF}}
    2 KB (254 words) - 00:17, 18 February 2022
  • ...rometry with isolated mitochondria, permeabilized cells, muscle fibres and tissue homogenates. Whereas optimization is necessary for specific experimental pr {{Template:Cited by Cardoso 2021 MitoFit MgG}}
    2 KB (265 words) - 17:38, 17 October 2023
  • ...se results were supported by electron microscopy of Polytron-treated heart tissue showing rupture and loss of sarcolemma with release of the underlying mitoc {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}}
    2 KB (235 words) - 08:48, 16 July 2021
  • ...sessed. The distribution of control in mitochondria isolated from the four tissue types was found to be similar. |additional=MitoFit 2021 Tissue normoxia, MitoFit 2022 pmF
    2 KB (269 words) - 12:36, 24 November 2022
  • |title=Keeley TP, Mann GE (2019) Defining physiological normoxia for improved translation of cell physiology to animal models and humans. ht ...e thus far. In this review, we aim to address the current understanding of tissue Po2 distribution in vivo and summarize the attempts made to replicate these
    2 KB (268 words) - 09:09, 28 June 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} {{Template:Cited by Komlodi 2022 MitoFit pmF}}
    2 KB (280 words) - 00:35, 18 February 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} {{Template:Cited by Komlodi 2022 MitoFit pmF}}
    2 KB (281 words) - 10:07, 4 April 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} {{Template:Cited by Komlodi 2022 MitoFit pmF}}
    2 KB (286 words) - 09:33, 4 April 2022
  • {{Template:Cited by Komlodi 2021 MitoFit AmR}} |additional= MitoFit 2021 Tissue normoxia, MitoFit 2021 AmR
    1 KB (162 words) - 21:39, 11 April 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} {{Template:Cited by Komlodi 2022 MitoFit pmF}}
    2 KB (303 words) - 00:18, 18 February 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} |additional=MitoFit 2021 Tissue normoxia
    2 KB (201 words) - 09:28, 23 August 2021
  • |title=Komlodi T, Sobotka O, Krumschnabel G, Bezuidenhout N, Hiller E, Doerrier C, Gnaiger |authors=Komlodi Timea, Sobotka Ondrej, Krumschnabel Gerhard, Bezuidenhout N, Hiller Elisabe
    3 KB (453 words) - 12:33, 25 October 2023
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} {{Template:Cited by Komlodi 2022 MitoFit pmF}}
    2 KB (281 words) - 00:33, 18 February 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} |additional=MitoFit 2021 Tissue normoxia
    1 KB (198 words) - 09:02, 16 July 2021
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} {{Template:Cited by Komlodi 2022 MitoFit pmF}}
    2 KB (320 words) - 16:53, 5 April 2022
  • |title=Dominiak K, Jarmuszkiewicz W (2021) The Relationship between Mitochondrial Reactive Oxygen Species Production |year=2021
    2 KB (300 words) - 13:41, 18 August 2021
  • ...measurement of oxygen and hydrogen peroxide fluxes in permeabilized cells, tissue homogenate and isolated mitochondria. https://doi.org/10.3390/biom5031319 ...>) production, applied to mitochondrial preparations (permeabilized cells, tissue homogenate, isolated mitochondria). The widely used H<sub>2</sub>O<sub>2</s
    4 KB (484 words) - 19:56, 7 January 2024
  • {{Template:Cited by Komlodi 2021 MitoFit AmR-O2}} {{Template:Cited by Komlodi 2021 MitoFit AmR}}
    3 KB (479 words) - 12:16, 22 March 2023
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} |additional= MitoFit 2021 Tissue normoxia
    2 KB (233 words) - 21:38, 11 April 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} {{Template:Cited by Komlodi 2022 MitoFit pmF}}
    2 KB (317 words) - 00:16, 18 February 2022
  • ...The major brain tissue damage takes place upon the reperfusion of ischemic tissue. Energy failure due to alterations in mitochondrial metabolism and elevated {{Template:Cited by Komlodi 2021 MitoFit AmR-O2}}
    2 KB (348 words) - 21:42, 13 April 2022
  • ...s important to realize that most of the experiments performed in so-called normoxia might be dangerously misleading. .../sub> lower than physioxia and indicative for a lack of oxygenation in the tissue.
    3 KB (443 words) - 06:52, 28 June 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} |preparations=Permeabilized tissue
    2 KB (249 words) - 19:24, 17 April 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} |additional=MitoFit 2021 Tissue normoxia
    2 KB (237 words) - 09:25, 23 August 2021
  • {{Template:Cited by Komlodi 2021 MitoFit AmR-O2}} {{Template:Cited by Komlodi 2021 MitoFit AmR}}
    3 KB (389 words) - 13:35, 25 April 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} |additional=MitoFit 2021 Tissue normoxia
    2 KB (289 words) - 13:44, 18 August 2021
  • ...generation in brain mitochondria is lower under hypoxic conditions than in normoxia. {{Template:Cited by Komlodi 2021 MitoFit AmR-O2}}
    3 KB (461 words) - 21:43, 13 April 2022
  • ...sing Amplex UltraRed. Bioenerg Commun 2021.4. https://doi.org/10.26124/bec:2021-0004 ...s/b/b9/Komlodi_2021_BEC_AmR-O2.pdf |Open Access pdf]] ''published online'' 2021-12-21
    5 KB (700 words) - 13:33, 1 May 2024
  • |abstract=Most mammalian tissue cells experience oxygen partial pressures in vivo equivalent to 1-6% O2 (i. {{Template:Cited by Komlodi 2021 MitoFit AmR}}
    2 KB (292 words) - 17:34, 20 April 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} |additional=MitoFit 2021 Tissue normoxia
    2 KB (317 words) - 10:01, 23 August 2021
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} |additional=MitoFit 2021 Tissue normoxia
    2 KB (317 words) - 08:44, 16 July 2021
  • {{Template:Cited by Komlodi 2021 MitoFit AmR-O2}} {{Template:Cited by Komlodi 2021 MitoFit AmR}}
    3 KB (373 words) - 21:42, 13 April 2022
  • |authors=Komlodi Timea, Geibl F Fanni, Sassani Mathilde, Ambrus Attila, Tretter Laszlo |editor=[[Komlodi T]]
    3 KB (439 words) - 04:34, 19 July 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} |additional=MitoFit 2021 Tissue normoxia
    2 KB (350 words) - 08:34, 16 July 2021
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} |additional=MitoFit 2021 Tissue normoxia
    2 KB (301 words) - 12:56, 20 August 2021
  • ...piration under hypoxia and ischemia. Low intracellular oxygen levels under normoxia, however, imply mild oxygen limitation, provide protection from oxidative s {{Template:Keywords: hypoxia, normoxia, hyperoxia}}
    7 KB (963 words) - 06:05, 3 April 2024
  • ...03 AmR ce D058, MitoFit 2021 AmR, MitoFit 2021 AmR-O2, MitoFit 2021 Tissue normoxia, AmR, H2O2 ...measurement of oxygen and hydrogen peroxide fluxes in permeabilized cells, tissue homogenate and isolated mitochondria. Biomolecules 5:1319-38. - [[Makrecka-
    4 KB (565 words) - 12:31, 25 October 2023
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} |additional=Labels, 2019-07, US, MitoFit 2021 Tissue normoxia
    2 KB (344 words) - 09:30, 23 August 2021
  • ...ny fluorophore applied for probing mtMP, in any respiratory state, type of tissue and pathophysiological condition. ...021 MgG, MitoFit 2021 Tissue normoxia, MitoFit 2022 CaG, MitoFit 2022 pmF, MitoFit 2022 NADH, mt-Membrane
    5 KB (600 words) - 21:53, 23 April 2024
  • ...ermeabilized cells, permeabilized muscle fibers, isolated mitochondria and tissue homogenates offer sensitive diagnostic tests of integrated mitochondrial fu ::* 37 articles in PubMed (2021-12-27) https://pubmed.ncbi.nlm.nih.gov/29850993/
    6 KB (850 words) - 12:27, 5 March 2024
  • ::* 16 articles in PubMed (2021-12-27) {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}}
    4 KB (505 words) - 16:27, 24 April 2023
  • |title=McKeown SR (2014) Defining normoxia, physoxia and hypoxia in tumours-implications for treatment response. https ...rs exhibiting median oxygen levels <2%. This is partially dependent on the tissue of origin, and it is notable that many prostate and pancreatic tumours are
    5 KB (686 words) - 23:09, 15 July 2022
  • {{Template:Cited by Komlodi 2021 MitoFit Tissue normoxia}} {{Template:Cited by Komlodi 2021 MitoFit AmR}}
    6 KB (883 words) - 11:59, 20 December 2022
  • ...solated mitochondria. Bioenerg Commun 2021.3. https://doi.org/10.26124/bec:2021-0003 ...bec/article/view/komlodi_2021_q/29 |Open Access pdf]] ''published online'' 2021-11-11
    6 KB (810 words) - 16:37, 21 January 2024
  • {{Template:Cited by Huete-Ortega M 2021 MitoFit Dark respiration}} {{Template:Cited by Huete-Ortega M 2021 MitoFit Photosynthesis protocols}}
    8 KB (1,114 words) - 10:17, 16 August 2022
  • ...mitochondria isolated from potato (''Solanum tuberosum'' cv. Bintje, fresh tissue and callus), sweet potato (''Ipomoea batatas'') and ''Arum italicum''. We h {{Template:Cited by Komlodi 2021 MitoFit CoQ}}
    7 KB (1,023 words) - 09:03, 16 July 2021
  • ...evaluated relative to patterns of intracellular oxygen distribution in the tissue and enzyme turnover ''in vivo'', considering the kinetic effects of CIV exc {{Template:Cited by Komlodi 2021 MitoFit AmR-O2}}
    9 KB (1,216 words) - 03:42, 17 January 2023
  • {{MitoFit page name}} [[Image:Logo MitoFit-OROBOROS.jpg|right|300px|MitoFit]]
    33 KB (4,250 words) - 15:07, 2 February 2022
  • == Dec 2021 == 2021 Week 48
    85 KB (11,819 words) - 14:18, 10 January 2022
  • ...he International System of Units (SI) 9th ed. https://doi.org/doi:10.26124/mitofit:200004. - [[File:CASE-cell count.png|right|300px|thumb|Figure 1.4.]] [[File ...r PGM<sub>''P''</sub> may support higher fluxes than PM<sub>''P''</sub> at tissue- and species-specific degrees.
    89 KB (12,074 words) - 17:54, 6 May 2024
  • ...ndr, Klepinina Lyudmila, Klingenspor Martin, Klocker Helmut, Kolassa Iris, Komlodi Timea, Koopman Werner JH, Kopitar-Jerala Natasa, Kowaltowski Alicia J, Kozl ...Actions CA16225 EU-CARDIOPROTECTION and CA17129 CardioRNA; K-Regio project MitoFit funded by the Tyrolian Government, and project NextGen-O2k which has receiv
    59 KB (8,156 words) - 13:41, 1 May 2024
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