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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
  • ...ets and leukocytes: implications for their use as bioenergetic biomarkers. Redox Biol 2:206–10. |journal=Redox Biol
    2 KB (259 words) - 13:28, 2 March 2020
  • ...vation is required for mouse sperm capacitation. https://doi.org/10.1016/j.redox.2021.102176 |info=Redox Biol 48:102176. [https://pubmed.ncbi.nlm.nih.gov/34753004 PMID: 34753004 Op
    3 KB (340 words) - 19:21, 24 February 2023
  • ...Reactive oxygen species, nutrition, hypoxia and diseases: Problems solved? Redox Biol 6:372-385. |journal=Redox Biol
    2 KB (251 words) - 09:22, 23 August 2021
  • ...ependence of mitochondrial ROS production as detected by Amplex Red assay. Redox Biol 17:192-9. |journal=Redox Biol
    3 KB (357 words) - 21:37, 13 April 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
  • ...defenses: An advocacy for physical activity during the COVID-19 pandemic. Redox Biol 43:1-13. |journal=Redox Biol
    2 KB (304 words) - 11:09, 24 August 2021
  • ...ox biochemistry: Conceptual, methodological and technical recommendations. Redox Biol 12:540-548. |journal=Redox Biol
    2 KB (214 words) - 14:35, 14 April 2022
  • ...upling in cardiac muscle: evidence from a novel CARNS1 knockout rat model. Redox Biol 44:102016. |journal=Redox Biol
    4 KB (523 words) - 16:05, 2 August 2021
  • ...n early consequence of palmitate lipotoxicity mediated by redox signaling. Redox Biol 45:102026. |journal=Redox Biol
    2 KB (301 words) - 10:21, 5 August 2021
  • ...oaches for interrogating mitochondrial reactive oxygen species production. Redox Biol 45:102044. https://doi.org/10.3390/antiox9060472 |journal=Redox Biol
    6 KB (961 words) - 19:52, 16 January 2023
  • ...rial reactive oxygen species formation and the coenzyme Q reduction level. Redox Biol 18:256-265. |journal=Redox Biol
    2 KB (289 words) - 13:44, 18 August 2021
  • ...ki AJ (2015) H2O2 release from the very long chain acyl-CoA dehydrogenase. Redox Biol 4:375-80. |journal=Redox Biol
    2 KB (237 words) - 09:25, 23 August 2021
  • ...oxygen species generation by mitochondria oxidizing different substrates. Redox Biol 1:304-12. |journal=Redox Biol
    2 KB (317 words) - 10:01, 23 August 2021
  • ...systemic redox status in survivors and non-survivors of critical illness. Redox Biol 41:101907. |journal=Redox Biol
    3 KB (442 words) - 14:59, 13 October 2021
  • ...a key regulator of the biosynthesis of the redox-active lipid coenzyme Q. Redox Biol 46:102127. |journal=Redox Biol
    3 KB (429 words) - 19:11, 17 January 2022
  • ...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
  • ...lysine acetylation: A potential role for SIRT1. https://doi.org/10.1016/j.redox.2022.102307 |info=Redox Biol 52:102307. [https://pubmed.ncbi.nlm.nih.gov/35398714 PMID: 35398714 Op
    3 KB (362 words) - 14:24, 22 August 2022
  • ...mediators of denervation induced muscle atrophy. https://doi.org/10.1016/j.redox.2022.102518 |info=Redox Biol 57:102518. [https://pubmed.ncbi.nlm.nih.gov/36283174 PMID: 36283174 Op
    3 KB (425 words) - 15:07, 7 November 2022
  • ...ose metabolism in cerebral ischemia reperfusion. https://doi.org/10.1016/j.redox.2022.102475 |info=Redox Biol 57:102475. [https://pubmed.ncbi.nlm.nih.gov/36179435 PMID: 36179435 Op
    3 KB (356 words) - 12:56, 22 November 2022
  • ...ntent and function in untrained middle-aged men. https://doi.org/10.1016/j.redox.2022.102341 |info=Redox Biol 53:102341. [https://pubmed.ncbi.nlm.nih.gov/35623315 PMID: 35623315 Op
    3 KB (432 words) - 14:18, 17 January 2023
  • ...etabolic stress as potential therapeutic target. https://doi.org/10.1016/j.redox.2022.102251 |info=Redox Biol 51:102251. [https://pubmed.ncbi.nlm.nih.gov/35248827 PMID: 35248827 Op
    3 KB (416 words) - 14:58, 5 December 2022
  • ...an emerging role in vascular biology. Redox Biol 47:102164. doi:10.1016/j.redox.2021.102164 |journal=Redox Biol
    2 KB (271 words) - 17:59, 2 April 2023
  • ...he evolution of a concept. Redox Biol 6:524-551. https://doi.org/10.1016/j.redox.2015.08.020 |journal=Redox Biol
    2 KB (346 words) - 03:56, 11 November 2023
  • ...ron influx by mediating Tgfβ1 signaling pathway. https://doi.org/10.1016/j.redox.2023.102727 |info=Redox Biol 63:102727. [https://pubmed.ncbi.nlm.nih.gov/37156218 PMID: 37156218 Op
    2 KB (347 words) - 16:01, 10 May 2023
  • ...ge-related skeletal muscle atrophy and weakness. https://doi.org/10.1016/j.redox.2023.102761 |info=Redox Biol 64:102761. [https://pubmed.ncbi.nlm.nih.gov/37279604 PMID: 37279604 Op
    3 KB (389 words) - 13:08, 7 June 2023
  • ...mprove adaptations to intense exercise training. https://doi.org/10.1016/j.redox.2023.102873 |info=Redox Biol 67:102873. [https://www.ncbi.nlm.nih.gov/pubmed/37688976 PMID: 3768897
    2 KB (256 words) - 18:17, 22 September 2023
  • ...c fibrosis via regulating fatty acid metabolism. https://doi.org/10.1016/j.redox.2023.102907 |info=Redox Biol [Epub ahead of print]. [https://pubmed.ncbi.nlm.nih.gov/37797372 PMID:
    3 KB (410 words) - 15:36, 11 October 2023
  • ...xygenation and metabolism. Redox Biol 34:101549. https://doi.org/10.1016/j.redox.2020.101549 |journal=Redox Biol
    2 KB (269 words) - 15:19, 5 November 2023
  • ...prime hepatocellular carcinoma for ferroptosis. https://doi.org/10.1016/j.redox.2023.103002 |info=Redox Biol [Epub ahead of print]. [https://pubmed.ncbi.nlm.nih.gov/38142583 PMID:
    3 KB (379 words) - 17:00, 3 January 2024
  • ...ry complex I assembly by FMN cofactor targeting. https://doi.org/10.1016/j.redox.2023.103001 |info=Redox Biol [Epub ahead of print]. [https://pubmed.ncbi.nlm.nih.gov/38145589 PMID:
    2 KB (279 words) - 15:35, 3 January 2024
  • ...ochondrial calcium uptake. Redox Biol 71:103037. https://doi.org/10.1016/j.redox.2024.103037 |journal=Redox Biol
    3 KB (366 words) - 13:55, 1 May 2024
  • ...reactive oxygen species lead to enhanced amyloid beta formation. Antioxid Redox Signal 16:1421-33. |journal=Antioxid Redox Signal
    3 KB (417 words) - 10:50, 27 March 2018
  • ...(2013) Mitochondrial plasticity in obesity and diabetes mellitus. Antioxid Redox Signal 19:258-68. |journal=Antioxid Redox Signal
    2 KB (278 words) - 11:19, 28 April 2015
  • ...eostasis are regulated by STOX1, a pre-eclampsia associated gene. Antioxid Redox Signal 21:819-34. |journal=Antioxid Redox Signal
    2 KB (335 words) - 17:49, 9 November 2017
  • ...on of mitochondrial DNA transcripts and mitochondrial biogenesis. Antioxid Redox Signal 22:883-900. |journal=Antioxid Redox Signal
    3 KB (382 words) - 15:14, 9 November 2016
  • ...function: novel insights, mechanisms, and therapeutic strategies. Antioxid Redox Signal 22:1499-501. |journal=Antioxid Redox Signal
    1 KB (140 words) - 11:40, 21 March 2016
  • ...015) Mitochondrial redox dysfunction and environmental exposures. Antioxid Redox Signal 23:578-95. |journal=Antioxid Redox Signal
    2 KB (288 words) - 17:45, 8 November 2016
  • ...cise may amend metabolic disturbances in diabetic cardiomyopathy. Antioxid Redox Signal:2015 Apr 28 22:1587-605. |journal=Antioxid Redox Signal
    2 KB (315 words) - 16:13, 19 March 2019
  • ...tor GPR40, and regulates insulin secretion in pancreatic β-cells. Antioxid Redox Signal 23:958-72. |journal=Antioxid Redox Signal
    3 KB (386 words) - 14:47, 13 November 2017
  • ...illus terreus'' is overpowered by co-application of pro-oxidants. Antioxid Redox Signal 23:1424-38. https://doi.org/10.1089/ars.2014.6220 |journal=Antioxid Redox Signal
    2 KB (324 words) - 08:28, 5 April 2024
  • ...itochondrial ROS-induced apoptosis in glycolytic skeletal muscle. Antioxid Redox Signal 24:84-98. |journal=Antioxid Redox Signal
    3 KB (391 words) - 20:26, 7 March 2020
  • ...ccelerates inflammatory response and causes liver injury in rats. Antioxid Redox Signal 22:572-86. |journal=Antioxid Redox Signal
    3 KB (385 words) - 16:31, 13 November 2017
  • #REDIRECT [[Bouitbir 2016 Antioxid Redox Signal]]
    49 bytes (5 words) - 11:55, 9 May 2016
  • ...as a new strategy to suppress Her2<sup>high</sup> breast cancer. Antioxid Redox Signal 26:84-103. |journal=Antioxid Redox Signal
    3 KB (443 words) - 07:01, 20 April 2020
  • ...itochondrial morphology changes induced by glutathione depletion. Antioxid Redox Signal 18:129-38. |journal=Antioxid Redox Signal
    2 KB (307 words) - 09:03, 18 March 2020
  • ...phosphorylation and cytosolic calcium handling in healthy cells. Antioxid Redox Signal 17:1657-69. |journal=Antioxid Redox Signal
    3 KB (335 words) - 14:37, 27 March 2018
  • ...: biogenesis, regulation, and reactive oxygen species generation. Antioxid Redox Signal 12:1431-70. |journal=Antioxid Redox Signal
    2 KB (279 words) - 14:35, 27 March 2018
  • ...mmasome is activated in fibromyalgia: the effect of coenzyme Q10. Antioxid Redox Signal 20:1169-80. |journal=Antioxid Redox Signal
    2 KB (286 words) - 09:49, 3 October 2016
  • ...tion a mitochondrial dysfunction-dependent event in fibromyalgia? Antioxid Redox Signal 18:800-7. |journal=Antioxid Redox Signal
    2 KB (276 words) - 10:18, 3 October 2016
  • ...of gender on mitochondrial toxicity of Alzheimer's Abeta peptide. Antioxid Redox Signal 9:1677-90. |journal=Antioxid Redox Signal
    2 KB (291 words) - 10:44, 14 October 2016
  • ...aging: importance to explain why females live longer than males. Antioxid Redox Signal 5:549-56. |journal=Antioxid Redox Signal
    1 KB (178 words) - 16:47, 17 October 2016
  • ...tress and mediates microparticle-induced endothelial dysfunction. Antioxid Redox Signal 26:15-27. |journal=Antioxid Redox Signal
    3 KB (375 words) - 12:48, 4 June 2018
  • ...g exerts dual effects in old female rats exposed to 3-nitropropionic acid. Redox Biol 12:610-24. |journal=Redox Biol
    2 KB (278 words) - 13:23, 4 July 2017
  • ...piratory analysis of coupled mitochondria in cryopreserved liver biopsies. Redox Biol 17:207-12. |journal=Redox Biol
    2 KB (234 words) - 15:25, 2 January 2019
  • ...ardiomyopathy and Left Ventricular Dysfunction in Chagas Disease. Antioxid Redox Signal. 27(9):550-566. |journal=Antioxid Redox Signal.
    3 KB (387 words) - 22:28, 1 August 2018
  • ...ll regulation and cancer biology: recent advances and hypotheses. Antioxid Redox Signal 30:635-49. |journal=Antioxid Redox Signal
    2 KB (295 words) - 13:28, 19 February 2019
  • ...coupling proteins: subtle regulators of cellular redox signaling. Antioxid Redox Signal 29:667-714. |journal=Antioxid Redox Signal
    3 KB (346 words) - 18:40, 16 January 2021
  • ...by mitochondrial complex I in brain ischemia/reperfusion injury. Antioxid Redox Signal 31:608-22. |journal=Antioxid Redox Signal
    3 KB (383 words) - 21:13, 3 May 2024
  • |title=Jezek P (2020) 2-Hydroxyglutarate in cancer cells. Antioxid Redox Signal http://doi.org/10.1089/ars.2019.7902 [ahead of print]. |journal=Antioxid Redox Signal
    2 KB (321 words) - 10:19, 2 February 2020
  • ...re driven by nitric oxide and reflected in circulating platelets. Antioxid Redox Signal 31:673–86. |journal=Antioxid Redox Signal
    3 KB (390 words) - 07:22, 4 March 2020
  • ...r hypoxia-induced ROS production and gene transcription in yeast. Antioxid Redox Signal 9:1317-28. |journal=Antioxid Redox Signal
    2 KB (284 words) - 18:00, 13 April 2022
  • ...phorylation, mitochondrial oxidant production, and methods of measurement. Redox Biol 2020:101674. |journal=Redox Biol
    1 KB (146 words) - 18:58, 12 August 2020
  • ...detection of mitochondrial and cellular reactive oxygen species. Antioxid Redox Signal 20:372–82. |journal=Antioxid Redox Signal
    2 KB (266 words) - 17:36, 13 April 2022
  • ...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
  • ...Biological Production, Detection, and Fate of Hydrogen Peroxide. Antioxid Redox Signal 29:541-551. |journal=Antioxid Redox Signal
    2 KB (271 words) - 11:37, 22 March 2021
  • ...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
  • ...functions and cell death: regulation and biological consequences. Antioxid Redox Signal 10:179-206. |journal=Antioxid Redox Signal
    2 KB (254 words) - 17:54, 1 February 2022
  • |info=Antioxid Redox Signal [https://pubmed.ncbi.nlm.nih.gov/35102747/ PMID: 35102747 Open Acces |journal=Antioxid Redox Signal
    3 KB (341 words) - 06:49, 28 June 2022
  • ...hondrial homeostasis in visceral adipose tissue. https://doi.org/10.1016/j.redox.2022.102353 |info=Redox Biol 54:102353. [https://pubmed.ncbi.nlm.nih.gov/35777200 PMID: 35777200 Op
    3 KB (457 words) - 12:20, 27 March 2023
  • ...ndria complex I is different in brain and heart. https://doi.org/10.1016/j.redox.2022.102258 |info=Redox Biol 51:102258. [https://pubmed.ncbi.nlm.nih.gov/35189550 PMID: 35189550 Op
    3 KB (440 words) - 12:07, 5 December 2022
  • ...nd methods of measurement. Redox Biol 37:101674. https://doi.org/10.1016/j.redox.2020.101674 |journal=Redox Biol
    1 KB (158 words) - 08:00, 4 April 2023
  • ...gulation of cell survival and death during low-oxygen conditions. Antioxid Redox Signal 11:2673-83. https://doi.org/10.1089/ars.2009.2730 |journal=Antioxid Redox Signal
    1,017 bytes (136 words) - 23:47, 23 April 2023
  • ...drogen sulfide signaling via electron transport chain plasticity. Antioxid Redox Signal 38:57-67. https://doi.org/10.1089/ars.2022.0067 |journal=Antioxid Redox Signal
    2 KB (324 words) - 23:26, 23 April 2023
  • ...Slc7a9<sup>-/-</sup> mouse model of cystinuria. https://doi.org/10.1016/j.redox.2023.102801 |info=Redox Biol 64:102801. [https://pubmed.ncbi.nlm.nih.gov/37418888 PMID: 37418888 Op
    3 KB (415 words) - 13:53, 18 July 2023
  • ...tabolism, superoxide formation, redox homeostasis, and pathology. Antioxid Redox Signal 39:635–83. https://doi.org/10.1089/ars.2022.0173 |journal=Antioxid Redox Signal
    3 KB (345 words) - 14:09, 29 October 2023
  • ...phosphorylation disorder. Redox Biol 41:101871. https://doi.org/10.1016/j.redox.2021.101871 |journal=Redox Biol
    2 KB (268 words) - 01:37, 10 November 2023
  • ...(2009) Nitric oxide in health and disease of the nervous system. Antioxid Redox Signal 11:541-54. https://doi.org/10.1089/ars.2008.2234 |journal=Antioxid Redox Signal
    2 KB (241 words) - 09:58, 9 November 2023
  • ...n hepatoma cells requires the mitochondrial fission protein Drp1. Antioxid Redox Signal 19:366-78. |journal=Antioxid Redox Signal
    2 KB (325 words) - 14:35, 13 November 2017
  • ...iabetes; consequences for skeletal and cardiac muscle metabolism. Antioxid Redox Signal 24:39-51. |journal=Antioxid Redox Signal
    2 KB (287 words) - 10:06, 8 November 2016
  • ...oxidative stress and metabolic alterations caused by ovariectomy. Antioxid Redox Signal 20:236-46. |journal=Antioxid Redox Signal
    2 KB (315 words) - 14:59, 12 October 2016

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
  • ...Anthony L.jpg|left|90px|Anthony Moore]] The electron transfer-pathway – Q redox regulation and mitochondrial pathways to oxygen. ...ratory diseases and finally novel techniques for the measurement of Q-pool redox poise using ‘Q-electrodes’.
    2 KB (223 words) - 12:48, 3 April 2021
  • ...Q<sub>9</sub>) are common. These redox compounds exist in three different redox states: [[quinone]] (oxidized), quinol (reduced), and an intermediate [[sem
    676 bytes (85 words) - 08:09, 6 November 2021
  • ...proach to understand the role of reactive species in defining the cellular redox environment. Cell Biochem Biophys 67:477-83. ...ution of biochemical pathways and networks. This new field of Quantitative Redox Biology will allow researchers to identify new targets for intervention to
    2 KB (266 words) - 10:27, 8 November 2021
  • ...utritional sciences, environmental medicine, and molecular knowledge-based redox medicine.
    2 KB (205 words) - 12:14, 22 March 2021
  • |title=Liu H, Liu X, Zhang C, Zhu H, Xu Q, Bu Y, Lei Y (2017) Redox imbalance in the development of colorectal cancer. J Cancer 8: 1586–1597. ...in, we attempt to afford an overview that highlights the crosstalk between redox imbalance and CRC.
    1 KB (175 words) - 16:06, 3 February 2022
  • |title=Choudhury FK (2021) Mitochondrial redox metabolism: the epicenter of metabolism during cancer progression. Antioxid ...ammed to maintain the optimum NADPH level in the mitochondria required for redox homeostasis. After reaching the distant organ, the intrinsic metabolic limi
    2 KB (242 words) - 11:59, 22 October 2023
  • ...itochondrial morphology changes induced by glutathione depletion. Antioxid Redox Signal 18:129-38. |journal=Antioxid Redox Signal
    2 KB (307 words) - 09:03, 18 March 2020
  • ...C, Figueira TR, Busanello E (2018) Mitochondrial calcium transport and the redox nature of the calcium-induced membrane permeability transition. Free Radic ...//pubmed.ncbi.nlm.nih.gov/30172747-mitochondrial-calcium-transport-and-the-redox-nature-of-the-calcium-induced-membrane-permeability-transition/?from_single
    2 KB (227 words) - 13:22, 21 February 2020
  • ...gulation of cell survival and death during low-oxygen conditions. Antioxid Redox Signal 11:2673-83. https://doi.org/10.1089/ars.2009.2730 |journal=Antioxid Redox Signal
    1,017 bytes (136 words) - 23:47, 23 April 2023
  • ...ME, Francia F, Danon A, Marchand CH, Fermani S, Trost P, Lemaire SD (2013) Redox regulation of the Calvin-Benson cycle: something old, something new. Front ...ed by multiple interconnected redox post-translational modifications. This redox control is likely allowing fine tuning of the Calvin-Benson cycle required
    2 KB (305 words) - 11:47, 12 October 2023
  • ...nguez E, Borrás C (2022) Recent approaches to determine static and dynamic redox state-related parameters. https://doi.org/10.3390/antiox11050864 ...ve the potential to complement each other for a complete evaluation of the redox state of a given sample.
    2 KB (279 words) - 16:07, 28 November 2022
  • ...termittent fasting results in tissue-specific changes in bioenergetics and redox state. PLoS One 10:e0120413. ...Overall, IF affects redox balance in a tissue-specific manner, leading to redox imbalance in the liver and brain and protection against oxidative damage in
    2 KB (273 words) - 15:56, 7 November 2016
  • ...nd methods of measurement. Redox Biol 37:101674. https://doi.org/10.1016/j.redox.2020.101674 |journal=Redox Biol
    1 KB (158 words) - 08:00, 4 April 2023
  • |title=Javali PS, Sekar M, Kumar A, Thirumurugan K (2023) Dynamics of redox signaling in aging via autophagy, inflammation, and senescence. Biogerontol ...y, and regulation of autophagy in aging. Next, we discuss inflammation and redox signaling with various pathways involved: NOX pathway, ROS production via T
    2 KB (219 words) - 10:28, 24 October 2023
  • ...ak K, Budzinska A, Wojcicki K, Galganski L (2023) Mitochondrial coenzyme Q redox homeostasis and reactive oxygen species production. https://doi.org/10.3108 ...al and pathophysiological factors affecting the amount of mtQ and thus its redox homeostasis and mtROS production level.
    3 KB (422 words) - 11:58, 27 March 2023
  • ...tory responses. Thereafter, we (iv) examine the influence of microbiota on REDOX homeostasis and how shifts in pro- and anti-oxidative cellular conditions c
    2 KB (291 words) - 23:31, 18 December 2023
  • ...e socalled third site of oxidative phosphorylation. I report here that the redox activity of mitochondrial cytochrome c oxidase is coupled to the translocat
    1 KB (165 words) - 09:56, 6 July 2022
  • ...=Wang K, Jiang J, Lei Y, Zhou S, Wei Y, Huang C (2019) Targeting metabolic-redox circuits for cancer therapy. Trends Biochem Sci 44:401-14. https://doi.org/ ...re intertwined, with an emphasis on the perspective of targeting metabolic-redox circuits for cancer therapy.
    1 KB (200 words) - 11:35, 16 September 2023
  • BioAnalytical Redox Biology Core ...rd=Diabetes, Obesity, Mitochondrial Physiology, Nutritional Bioenergetics, Redox Biology
    907 bytes (122 words) - 08:57, 11 May 2018
  • |title=Sies H (2014) Role of metabolic H2O2 generation: redox signaling and oxidative stress. J Biol Chem 289:8735-41. ...ng this reactive oxygen species essential for poising the set point of the redox proteome. Major processes including proliferation, differentiation, tissue
    1 KB (216 words) - 15:06, 12 July 2021
  • |title=Blacker TS, Duchen MR (2016) Investigating mitochondrial redox state using NADH and NADPH autofluorescence. Free Radic Biol Med 100:53-65. ...e the modern implementation of these techniques for studying mitochondrial redox state in complex tissue preparations. As the fluorescence spectra of NADH a
    2 KB (292 words) - 17:11, 1 February 2022
  • ...Biological Production, Detection, and Fate of Hydrogen Peroxide. Antioxid Redox Signal 29:541-551. |journal=Antioxid Redox Signal
    2 KB (271 words) - 11:37, 22 March 2021
  • ...the reduction of molecular oxygen to water, while conserving the released redox-linked energy into vectorial translocation of protons to establish a transm
    940 bytes (122 words) - 17:27, 19 March 2023
  • |title=Wu Y, Li Y, Lv G, Bu W (2022) Redox dyshomeostasis strategy for tumor therapy based on nanomaterials chemistry. ...eview will firstly introduce the basic definition and function of cellular redox homeostasis and RDH. Subsequently, the current representative progress of t
    2 KB (215 words) - 12:04, 18 January 2023
  • ...]'''Belgrade, RS''', 2024 Sep 27-29. SSMFRP Fifth International Congress - Redox Biology: A Paradigm of the Foundation of Life |abstract=SSMFRP Fifth International Congress - Redox Biology: A Paradigm of the Foundation of Life, Belgrage, Serbia, 2024
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  • ...coupling proteins: subtle regulators of cellular redox signaling. Antioxid Redox Signal 29:667-714. |journal=Antioxid Redox Signal
    3 KB (346 words) - 18:40, 16 January 2021
  • |title=Papa S, Petruzzella V, Scacco S (2007) Electron transport. Structure, redox-coupled protonmotive activity, and pathological disorders of respiratory ch ...o complex IV. The last two sections cover aspects of the biogenesis of the redox complexes and their genetic disorders in human pathology respectively.
    1 KB (201 words) - 10:00, 10 October 2023
  • |title=Bradshaw PC (2019) Cytoplasmic and Mitochondrial NADPH-Coupled Redox Systems in the Regulation of Aging. Nutrients 11:504. ...ity. Mitochondrial NADPH plays an important role in the protection against redox stress and cell death and mitochondrial NADPH-utilizing thioredoxin reducta
    2 KB (245 words) - 10:56, 4 February 2022
  • |institution=Arterial Inflammation and Redox Biology Group,
    278 bytes (33 words) - 10:16, 12 January 2022
  • ...markers to study the generator-dependent dual role of mitochondrial ROS in redox signaling and oxidative stress. ...I, Free radicals, Mitochondria, Reactive oxygen species, Redox proteomics, Redox signaling, Thiol oxidation
    2 KB (340 words) - 15:34, 7 November 2016
  • ...rade, RS''', 2018 Sep 28-30. Fourth International Congress - Challenges in Redox Biology |abstract= Fourth International Congress - Challenges in Redox Biology, Belgrade, Serbia.
    3 KB (332 words) - 15:15, 7 March 2018
  • ...Harth R, Dirr A, Janetzky B, Kuhn W, Riederer P, Gerlach M (2000) Altered redox state of platelet coenzyme Q<sub>10</sub> in Parkinson's disease. J Neural ...ctron transport which might be reflected by the platelet CoQQ<sub>10</sub> redox state.
    2 KB (364 words) - 12:39, 3 April 2021
  • ...Society for Free Radical Research-Asia and Chinese National Conference of Redox Biology and Medicine ...Society for Free Radical Research-Asia and Chinese National Conference of Redox Biology and Medicine, Beijing, China, 2024
    1 KB (174 words) - 14:40, 10 April 2024
  • ...Sanders JN, Segrè D, Aspuru-Guzik A (2020) A thermodynamic atlas of carbon redox chemical space. Proc Natl Acad Sci U S A 117:32910-18. doi: 10.1073/pnas.20 ...as a thermodynamic atlas to indicate which compounds are energy minima in redox chemical space across a set of pH values and electron-donor potentials. Whi
    2 KB (323 words) - 23:40, 13 February 2022
  • ...l sample has consumed the O2 in the O2k-chamber for calculation of the NAD redox state.
    163 bytes (30 words) - 16:06, 14 December 2023
  • ...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
  • |title=Favia M, Atlante A (2021) Cellular Redox State Acts as Switch to Determine the Direction of NNT-Catalyzed Reaction i ...urprisingly lower in CF cells than healthy cells (about 30%). The cellular redox state, together with the low mΔΨ, pushes to drive NNT reverse reaction, a
    2 KB (302 words) - 17:34, 22 February 2022
  • ...se P, Jones DP (2003) The Coenzyme Q10 analog decylubiquinone inhibits the redox-activated mitochondrial permeability transition: role of mitcohondrial [cor ...ytochrome ''bc''<sub>1</sub> activity, the mechanism of protection against redox-dependent mtPT by dUb may depend on its ability to scavenge ROS generated b
    2 KB (287 words) - 16:59, 11 March 2021
  • ...drial inner membrane. This connection is of general importance because CoQ redox state integrates three bioenergetic parameters: mitochondrial electron supp
    1 KB (206 words) - 11:58, 21 June 2023
  • ...xygenation and metabolism. Redox Biol 34:101549. https://doi.org/10.1016/j.redox.2020.101549 |journal=Redox Biol
    2 KB (269 words) - 15:19, 5 November 2023
  • |title=Aon MA, Cortassa S, O'Rourke B (2010) Redox-optimized ROS balance: a unifying hypothesis. Biochim Biophys Acta 1797:865 ...ns and also provides a rationale for graded physiological ROS signaling at redox potentials near the minimum.
    2 KB (323 words) - 21:46, 24 September 2021
  • ...by a decreased 2-oxoglutarate concentration. Under conditions in which the redox component was held constant, a kinetic analysis indicated that the apparent |topics=Calcium, Inhibitor, Redox state, Substrate
    2 KB (319 words) - 07:52, 17 December 2018
  • |title=Kaludercic N, Deshwal S, Di Lisa F (2014) Reactive oxygen species and redox compartmentalization. Front Physiol 5:285. ...help elucidate their role in physiology and disease. Here we will examine redox probes currently available and how ROS generation may vary between subcellu
    2 KB (270 words) - 18:07, 20 April 2022
  • ...und: The ratio of NAD(+)/NADH is a key indicator that reflects the overall redox state of the cells. Until recently, there were no methods for real time NAD ...ide, NAD(H), redox state changes by inserting circularly permuted YFP into redox sensor T-REX from Thermus aquaticus. We characterized the sensor in vitro u
    2 KB (323 words) - 13:11, 14 February 2022
  • |title=Gille L, Nohl H (2000) The existence of a lysosomal redox chain and the role of ubiquinone. Arch Biochem Biophys 375:347-54. .... By using the basic spin label TEMPAMINE, we showed that the NADH-related redox chain in lysosomes supports proton accumulation in lysosomes. In contrast t
    3 KB (388 words) - 22:18, 16 February 2021
  • ...015) Mitochondrial redox dysfunction and environmental exposures. Antioxid Redox Signal 23:578-95. |journal=Antioxid Redox Signal
    2 KB (288 words) - 17:45, 8 November 2016
  • |title='''Virtual ''', 2021 May 13-14. SfRBM & MCW Redox Biology Symposium |abstract= SfRBM & MCW Redox Biology Symposium, 2021.
    1 KB (152 words) - 10:55, 22 November 2021
  • ...otentially targeted to increase cancer cell death or modulate H2O2-induced redox signaling to protect the heart against ischemia/reperfusion damage.
    2 KB (304 words) - 17:08, 3 February 2022
  • ...I. However, the molecular mechanism by which energy is extracted from the redox reaction and utilized to drive proton translocation is unresolved and a mat ..., Mitochondria, NADH:Ubiquinone oxidoreductase, Oxidative phosphorylation, Redox-linked proton translocation, Respiratory chain
    2 KB (207 words) - 16:55, 22 March 2023
  • == O2k-Publications: Redox state - Abstracts ==
    1 KB (167 words) - 09:15, 23 May 2018
  • ...CA, Lin CT, Fisher-Wellman KH, Neufer PD (2020) Flux through mitochondrial redox circuits linked to nicotinamide nucleotide transhydrogenase generates count ...s expended via NNT-mediated proton conductance. This variable flux through redox circuits provides a potential compensatory mechanism for fine-tuning energy
    3 KB (420 words) - 18:13, 20 October 2021
  • ...n of brain mitochondrial H2O2 production by membrane potential and NAD(P)H redox state. J Neurochem 86:1101-7. ...ical NADH-dependent substrates is regulated by DeltaPsi and by the NAD(P)H redox state over ranges consistent with those that exist at different levels of c
    2 KB (281 words) - 10:07, 4 April 2022
  • ...Gegebenheiten bei der Zerlegung der Brennstoffe werden einige Gruppen von Redox-Systemen in verschiedenen Raeumen der Zellen und Gewebe in ihren Beziehunge
    1 KB (134 words) - 10:37, 28 May 2015
  • ..., Dokic D, Schumacker PT (2010) Hypoxia triggers subcellular compartmental redox signaling in vascular smooth muscle cells. Circ Res 106:526-35. Objective: This study tested the hypothesis that hypoxia induces redox changes that differ among subcellular compartments in pulmonary (PASMCs) an
    2 KB (259 words) - 17:50, 20 April 2022
  • ...cotinamide nucleotide transhydrogenase is required for brain mitochondrial redox balance under hampered energy substrate metabolism and high-fat diet. J Neu ...ess of a high-fat diet. Overall, the role of NNT in the brain mitochondria redox balance especially comes into play under mitochondrial respiratory defects
    3 KB (405 words) - 13:20, 17 April 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
  • |title=Irazabal MV, Torres VE (2020) Reactive oxygen species and redox signaling in chronic kidney disease. Cells 9:1342. https://doi.org/10.3390/ ...ctor 2 (Nrf2) in regulating antioxidant responses, and other mechanisms of redox signaling.
    2 KB (220 words) - 02:38, 5 November 2023
  • ...gets for cardiovascular diseases in which oxidative stress perturbs normal redox signaling.
    2 KB (309 words) - 03:47, 11 November 2023
  • ...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
  • |title=Xhani M (2017) Cellular redox homeostasis and environmental toxicity. Dissertation p110. ...of its homeostasis. Potentially harming circumstances which may challenge redox homeostasis in a way or another are variations of the O<sub>2</sub> concent
    2 KB (226 words) - 11:19, 21 January 2020
  • ...l locations and roles have been recently discovered. CoQ is described as a redox component of extramitochondrial electron transport chains and it is a power
    1,023 bytes (143 words) - 12:40, 3 April 2021
  • ...r PM (2024) Visualizing subcellular changes in the NAD(H) pool size versus redox state using fluorescence lifetime imaging microscopy of NADH. Commun Biol 7 ...vidual components of the fluorescence lifetime are differently impacted by redox versus pool size changes, allowing us to distinguish both modalities using
    2 KB (271 words) - 15:59, 11 April 2024
  • ...tabolism, superoxide formation, redox homeostasis, and pathology. Antioxid Redox Signal 39:635–83. https://doi.org/10.1089/ars.2022.0173 |journal=Antioxid Redox Signal
    3 KB (345 words) - 14:09, 29 October 2023
  • ...M (2011) Pyruvate kinase triggers a metabolic feedback loop that controls redox metabolism in respiring cells. Cell Metab 14:415-27. ...initiated by PYK, mediated by its substrate and acting on TPI, stimulates redox metabolism in respiring cells. Originating from a single catalytic step, th
    2 KB (258 words) - 09:21, 9 November 2016
  • ...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
  • ...ted the direct involvement of these organelles in cellular ATP production, redox balance, as well as in platelet activation and apoptosis. Here, we review a
    1 KB (202 words) - 17:10, 27 March 2018
  • ...n plant mitochondria: nonlinear relationship between electron flux and the redox poise of the quinone pool. Arch Biochem Biophys 273:148-57. ...flux, as measured with salicylhydroxamic acid, and that predicted from the redox poise of the Q-pool. These results are discussed in terms of existing model
    1 KB (213 words) - 12:42, 3 April 2021
  • |title=Dumollard R, Ward Z, Carroll J, Duchen MR (2007) Regulation of redox metabolism in the mouse oocyte and embryo. Development 134:455-65. https:// ...pyruvate impairs development, demonstrating the fundamental importance of redox state on early development.
    2 KB (298 words) - 07:09, 11 October 2023
  • ...phorylation, mitochondrial oxidant production, and methods of measurement. Redox Biol 2020:101674. |journal=Redox Biol
    1 KB (146 words) - 18:58, 12 August 2020
  • |title=Oliveira Pinto M (2013) Studies on the energy and redox metabolism of the blood fluke ''Schistosoma mansoni''. Mitochondr Physiol N ...We therefore conclude that there is a difference in energy metabolism and redox between adult female and adult male worms, which may be relevant to allow t
    3 KB (359 words) - 15:14, 20 October 2017
  • |institution=Arterial Inflammation and Redox Biology Group,Heart Research Institute, |weblink=https://www.hri.org.au/our-research/arterial-inflammation-and-redox-biology
    401 bytes (51 words) - 10:19, 20 October 2022
  • ...function: novel insights, mechanisms, and therapeutic strategies. Antioxid Redox Signal 22:1499-501. |journal=Antioxid Redox Signal
    1 KB (140 words) - 11:40, 21 March 2016
  • ...an emerging role in vascular biology. Redox Biol 47:102164. doi:10.1016/j.redox.2021.102164 |journal=Redox Biol
    2 KB (271 words) - 17:59, 2 April 2023
  • ...absorbance spectrum]] of the same substance at a known concentration and [[redox state]].
    322 bytes (38 words) - 14:38, 8 February 2016
  • ...(2009) Nitric oxide in health and disease of the nervous system. Antioxid Redox Signal 11:541-54. https://doi.org/10.1089/ars.2008.2234 |journal=Antioxid Redox Signal
    2 KB (241 words) - 09:58, 9 November 2023
  • ...re driven by nitric oxide and reflected in circulating platelets. Antioxid Redox Signal 31:673–86. |journal=Antioxid Redox Signal
    3 KB (390 words) - 07:22, 4 March 2020
  • ...pools: Continuous monitoring of pull and push control of respiration and redox state of the Q-mimetic CoQ<sub>2</sub>, ''May 14, 16:30-17:00'' ...]: [https://wiki.oroboros.at/index.php/Cardoso_2022_Q10_Hamburg Coenzyme Q redox state and respiration in permeabilized HEK 293T cells: coupling and pathway
    2 KB (232 words) - 14:24, 17 May 2022
  • |title=Lenaz G (1988) Role of mobility of redox components in the inner mitochondrial membrane. J Membr Biol 104:193-209.
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  • |info=[[Jezek 2020 Antioxid Redox Signal]] :::# [[Jezek 2020 Antioxid Redox Signal]]
    1 KB (146 words) - 16:31, 8 September 2020
  • ...ll regulation and cancer biology: recent advances and hypotheses. Antioxid Redox Signal 30:635-49. |journal=Antioxid Redox Signal
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