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  • |Title=[https://www.journals.elsevier.com/redox-biology/ Redox Biology]
    84 bytes (10 words) - 13:20, 4 July 2017
  • ...redox state where the activity of components are such that their effective redox potentials favor physiologically useful electron transfer.
    895 bytes (125 words) - 11:11, 30 March 2021
  • |Title=[http://www.liebertpub.com/ars Antioxidants & Redox Signaling]
    82 bytes (10 words) - 09:28, 5 December 2017
  • [[File:Redox medicine conference2015.jpg|1000px]] |title='''Belgrade RS''', 2015 Sep 25-26. [http://ssmfrp.edu.rs/home Redox Medicine]
    861 bytes (114 words) - 15:50, 3 November 2015
  • ...f respiratory Complexes, can be detected by measuring the changes of the Q-redox state with respect to the respiratory activity. ...th respiratory oxygen consumption. Added CoQ2 reflects the mitochondrial Q-redox state when equilibrating both with the detecting electrode and the biologic
    2 KB (361 words) - 11:49, 10 March 2022
  • #REDIRECT [[Q-redox state]]
    27 bytes (3 words) - 10:11, 3 April 2021
  • ...erg E (2015) Effects of long-term dietary nitrate supplementation in mice. Redox Biol 5:234-42. |journal=Redox Biol
    3 KB (371 words) - 16:20, 27 March 2018
  • ...:[[Category:Publications]] [[Instrument and method::Oxygraph-2k]] [[Topic::Redox state]] == O2k-Publications: Redox state - Abstracts ==
    1 KB (181 words) - 16:01, 16 April 2018
  • ...oenergetic function in a rat model of alcohol-induced fatty liver disease. Redox Biol 9:188-97. |journal=Redox Biol
    3 KB (380 words) - 12:09, 8 November 2016
  • ...er of mitochondrial health. Redox Biol 10:65-77. https://doi.org/10.1016/j.redox.2016.09.009 |journal=Redox Biol
    3 KB (341 words) - 12:01, 9 July 2023
  • ...hment as a potential therapeutic approach for Niemann Pick type C disease. Redox Biol 11:60-72. |journal=Redox Biol
    3 KB (447 words) - 16:18, 13 November 2017
  • ...s cyclic GMP dependent protein kinase 1: Implication for neuropathic pain. Redox Biol 11:176-91. |journal=Redox Biol
    2 KB (339 words) - 09:43, 16 November 2017
  • ...ate NDHP: Role of xanthine oxidoreductase-mediated nitric oxide formation. Redox Biol 13:163-9. |journal=Redox Biol
    2 KB (280 words) - 13:11, 26 June 2019
  • ...cs and energetics in mice, and protects against human cardiac pathologies. Redox Biol 14:509-21. |journal=Redox Biol
    2 KB (303 words) - 12:22, 8 January 2018
  • ...ondrial glutathione exacerbates menadione-induced inhibition of Complex I. Redox Biol 22:101155. |journal=Redox Biol
    2 KB (268 words) - 12:23, 11 March 2019
  • ...ates age-related contractile dysfunction and loss of skeletal muscle mass. Redox Biol 17:47-58. |journal=Redox Biol
    1 KB (176 words) - 10:15, 19 January 2022
  • ...anism of levobupivacaine cytostatic effect on human prostate cancer cells. Redox Biol 18:33-42. |journal=Redox Biol
    2 KB (305 words) - 16:35, 26 November 2019
  • ...dysfunction: Involvement of the glutathione-dependent antioxidant system. Redox Biol 20:118-29. |journal=Redox Biol
    3 KB (353 words) - 09:06, 5 May 2020
  • ...ia can act as energy-sensing regulators of hydrogen peroxide availability. Redox Biol 20:483-88. |journal=Redox Biol
    3 KB (396 words) - 13:35, 7 March 2020
  • ...acyl-CoA dehydrogenase can be a source of mitochondrial hydrogen peroxide. Redox Biol 26:101253. |journal=Redox Biol
    2 KB (344 words) - 09:30, 23 August 2021

Page text matches

  • [[File:Redox medicine conference2015.jpg|1000px]] |title='''Belgrade RS''', 2015 Sep 25-26. [http://ssmfrp.edu.rs/home Redox Medicine]
    861 bytes (114 words) - 15:50, 3 November 2015
  • ...redox state where the activity of components are such that their effective redox potentials favor physiologically useful electron transfer.
    895 bytes (125 words) - 11:11, 30 March 2021
  • |topics=Oxygen consumption, Q-redox state, NADH-redox state, ROS production, Mitochondrial membrane potential, ATP production, Ca
    353 bytes (42 words) - 14:13, 19 September 2023
  • ...ox biochemistry: Conceptual, methodological and technical recommendations. Redox Biol 12:540-548. |journal=Redox Biol
    2 KB (214 words) - 14:35, 14 April 2022
  • |topics=Oxygen consumption, Q-redox state, NADH-redox state, ROS production, Mitochondrial membrane potential, ATP production, Ca
    414 bytes (51 words) - 15:59, 27 June 2023
  • ...FQ, Buettner GR (2001) Redox environment of the cell as viewed through the redox state of the glutathione disulfide/glutathione couple. Free Radic Biol Med ...ximately -170 mV. These estimates can be used to more fully understand the redox biochemistry that results from oxidative stress. These are the first steps
    2 KB (300 words) - 12:34, 31 May 2019
  • ...a W (1959) Pyridine nucleotide in liver mitochondria. An analysis of their redox relationships. Biochem Z 331:486-517. |topics=Redox state
    422 bytes (53 words) - 10:36, 28 May 2015
  • |Title=[https://www.journals.elsevier.com/redox-biology/ Redox Biology]
    84 bytes (10 words) - 13:20, 4 July 2017
  • #REDIRECT [[Q-redox state]]
    27 bytes (3 words) - 10:11, 3 April 2021
  • ...the redox properties, of the tightly bound ubiquinone. A very low midpoint redox potential (<-300 mV) was found for the bound ubiquinone, more than 400 mV l
    1 KB (181 words) - 19:50, 27 January 2024
  • |Title=[http://www.liebertpub.com/ars Antioxidants & Redox Signaling]
    82 bytes (10 words) - 09:28, 5 December 2017
  • ...Sies H (2021) Oxidative eustress: On constant alert for redox homeostasis. Redox Biol 41:101867. |journal=Redox Biol
    2 KB (247 words) - 13:36, 25 April 2022
  • ...f respiratory Complexes, can be detected by measuring the changes of the Q-redox state with respect to the respiratory activity. ...th respiratory oxygen consumption. Added CoQ2 reflects the mitochondrial Q-redox state when equilibrating both with the detecting electrode and the biologic
    2 KB (361 words) - 11:49, 10 March 2022
  • ...NAD(H) and NADP(H) redox couples and cellular energy metabolism. Antioxid Redox Signal 28:251–72. |journal=Antioxid Redox Signal
    3 KB (389 words) - 22:55, 3 November 2023
  • ...er PD (2012) Linking mitochondrial bioenergetics to insulin resistance via redox biology. Trends Endocrinol Metab 23:142-53. https://doi.org/10.1016/j.tem.2 ...biology and offer new insight into how H(2)O(2) emission may be linked via redox biology to the etiology of insulin resistance.
    1 KB (190 words) - 10:31, 11 November 2023
  • ...ultaneous measurement of oxygen consumption and NAD(P)H/NAD(P)<sup>+</sup>-redox state in isolated mitochondria. (in prep) |keywords=NADH fluorescence, NAD-pool, N-junction, NAD-redox state, high-resolution respirometry HRR, isolated mitochondria, mouse liver
    946 bytes (114 words) - 10:06, 3 May 2022
  • |title=Urban PF, Klingenberg M (1969) On the redox potentials of ubiquinone and cytochrome ''b'' in the respiratory chain. Eur ...ration with the succinate/fumarate system to about 65 mV at pH 7, with the redox ratio, ''n'' = 2. The pH dependence is ‐60 mV/ΔpH. The lower value measu
    1 KB (151 words) - 22:48, 16 February 2021
  • ...:[[Category:Publications]] [[Instrument and method::Oxygraph-2k]] [[Topic::Redox state]] == O2k-Publications: Redox state - Abstracts ==
    1 KB (181 words) - 16:01, 16 April 2018
  • ...iao W, Loscalzo J (2020) Metabolic responses to reductive stress. Antioxid Redox Signal 32:1330-47. DOI: 10.1089/ars.2019.7803 |journal=Antioxid Redox Signal
    2 KB (269 words) - 17:10, 3 February 2022
  • ...B, Schumacker PT (2017) Redox signaling during hypoxia in mammalian cells. Redox Biol 13:228-34. |journal=Redox Biol
    1 KB (173 words) - 21:50, 24 September 2021

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