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  • |title=Smith KA, Waypa GB, Schumacker PT (2017) Redox signaling during hypoxia in mammalian cells. Redox Biol 13:228-34. ...ders the growing body of work indicating that increased ROS signals during hypoxia are responsible for regulating the activation of protective mechanisms in d
    1 KB (173 words) - 21:50, 24 September 2021
  • ...lity of metabolic efficiencies under chronic hypoxia in man. In: Surviving Hypoxia: Mechanisms of Control and Adaptation. Hochachka PW, Lutz PL, Sick T, Rosen
    495 bytes (65 words) - 13:57, 16 June 2015
  • ...GS, Chandel NS (2017) Mitochondria control acute and chronic responses to hypoxia. Exp Cell Res 356:217-22. https://doi.org/10.1016/j.yexcr.2017.03.034 ...w recent evidence that mitochondrial signals can imitate acute and chronic hypoxia responses.
    1 KB (187 words) - 23:39, 23 April 2023
  • ...nger GRS, Duranteau J, Chandel NS, Schumacker PT (1998) Hibernation during hypoxia in cardiomyocytes. Role of mitochondria as the O2 sensor. J Biol Chem 273(6 ...ensor mediating the decreases in ATP utilization and O2 consumption during hypoxia.
    2 KB (261 words) - 11:34, 9 February 2022
  • |description='''Microxia''' (deep hypoxia) is obtained when trace amounts of O<sub>2</sub> exert a stimulatory effect {{Template:Keywords: hypoxia, normoxia, hyperoxia}}
    557 bytes (73 words) - 14:48, 21 October 2021
  • ...mitochondrial complex III stabilize hypoxia-inducible factor-1alpha during hypoxia: a mechanism of O<sub>2</sub> sensing. J Biol Chem 275:25130-8. ...e both required and sufficient to initiate HIF-1alpha stabilization during hypoxia.
    2 KB (217 words) - 17:50, 13 April 2022
  • |title=Giaccia AJ, Simon MC, Johnson R (2004) The biology of hypoxia: the role of oxygen sensing in development, normal function, and disease. G ...uch as cancer. This report on the first Keystone Meeting on the Biology of Hypoxia will summarize our current understanding of key genes and pathways involved
    1 KB (162 words) - 13:52, 31 May 2019
  • ...Rahman A, Tabassum T, Araf Y, Al Nahid A, Ullah MA, Hosen MJ (2021) Silent hypoxia in COVID-19: pathomechanism and possible management strategy. Mol Biol Rep ...symptoms, mechanism, and possible factors behind the occurrence of silent hypoxia among COVID-19 patients.
    1 KB (213 words) - 10:53, 27 December 2021
  • |title=Ackerly KL, Negrete B Jr, Dichiera AM, Esbaugh AJ (2023) Hypoxia acclimation improves mitochondrial efficiency in the aerobic swimming muscl ...ng performance in the absence of improved maximum metabolic rate following hypoxia acclimation.
    3 KB (348 words) - 16:47, 24 May 2023
  • ...on JFR, López-Barneo J, Wilson RJA, Marina N, Pokorski M (2021) Editorial: Hypoxia and cardiorespiratory control. https://doi.org/10.3389/fphys.2021.820815 ...kewise, long-range consequences for organ and tissue functions affected by hypoxia have not been fully elucidated. In the article collection of this Research
    2 KB (346 words) - 23:10, 15 July 2022
  • ...S production in human pulmonary artery smooth-muscle cells (HPASMC) during hypoxia. ...oronary artery smooth-muscle cells (HCASMC) under normoxia (20%) and acute hypoxia (5%).
    2 KB (260 words) - 21:34, 13 April 2022
  • ..., Waypa GB, Jairaman A, Prakriya M, Dokic D, Ball MK, Schumacker PT (2011) Hypoxia Triggers AMPK Activation through Reactive Oxygen Species-Mediated Activatio ...nockdown of CaMKKβ abolishes the AMPK response. These findings reveal that hypoxia can trigger AMPK activation in the apparent absence of increased [AMP] thro
    2 KB (287 words) - 15:39, 11 February 2022
  • ...ligomycin on hypoxic HIF-1alpha content was pronounced in cells exposed to hypoxia (1.5% O(2)) but decreased markedly when cells were exposed to severe oxygen |keywords=Hypoxia, HIF, Oxygen sensing
    2 KB (255 words) - 16:58, 31 May 2019
  • |title=Cadiz L, Bundgaard A, Malte H, Fago A (2019) Hypoxia enhances blood O<sub>2</sub> affinity and depresses skeletal muscle O<sub>2 ...as overall significantly inhibited. In addition, male zebrafish had higher hypoxia tolerance (measured as time to loss of equilibrium) than females. The prese
    2 KB (303 words) - 10:14, 3 July 2019
  • |title=Wu W, Platoshyn O, Firth AL, Yuan XJ (2007) Hypoxia divergently regulates production of reactive oxygen species in human pulmon ...butes to the development of pulmonary vascular remodeling in patients with hypoxia-associated pulmonary hypertension.
    2 KB (333 words) - 17:46, 20 April 2022
  • |title=Mitochondria remodelling in hypoxia. ...2</sub>. Many of the features of the adaptation to hypoxia are mastered by hypoxia inducible factor 1α (HIF1α) that prompts glycolysis, increases the effici
    1 KB (171 words) - 13:21, 16 June 2015
  • |title=Che X, Zhang T, Li H, Li Y, Zhang L, Liu J (2023) Nighttime hypoxia effects on ATP availability for photosynthesis in seagrass. Plant Cell Envi ...upply of energy required for PSII to recover. This study demonstrated that hypoxia has several negative impacts on the photosynthetic apparatus of E. acoroide
    2 KB (252 words) - 23:44, 16 September 2023
  • |keywords=antioxidant, biochemical adaptation, estivation, hypoxia, oxidative stress, reactive oxygen species, redox |injuries=Ischemia-reperfusion, Oxidative stress;RONS, Hypoxia
    595 bytes (76 words) - 13:20, 31 May 2019
  • ...of brain mitochondrial respiration rates during acclimatization to chronic hypoxia in mice. Mitochondr Physiol Network 24.01. ...ivergent responses might contribute to a more efficient acclimatization to hypoxia in the central nervous system in mice.
    2 KB (348 words) - 06:56, 24 July 2019
  • ...tion of the mitochondrial complex I assembly factor TMEM126B under chronic hypoxia. Cell Mol Life Sci 75:3051-67. ...omplex I assembly appears critical for cellular adaptation towards chronic hypoxia and is linked to destruction of the mitochondrial assembly factor TMEM126B.
    2 KB (296 words) - 18:31, 31 January 2020

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