Difference between revisions of "Starkov Anatoly A"
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|title=PhD | |title=PhD | ||
|institution=Weill Medical College of Cornell University, Department of Neurology and Neuroscience | |institution=Weill Medical College of Cornell University, Department of Neurology and Neuroscience | ||
[[File:Starkov_AA.jpg|right|150px]] | |||
|address=525 East 68th Street, Room A-501, New York Presbyterian Hospital | |address=525 East 68th Street, Room A-501, New York Presbyterian Hospital | ||
|city=New York | |city=New York | ||
|state=New York (NY) | |state=New York (NY) | ||
|country= | |country=USA | ||
}} | }} | ||
{{Labelingperson}} | {{Labelingperson}} | ||
== Participated at == | |||
::::* [[MiP2014| MiP2014 Obergurgl AT]] |
Latest revision as of 16:04, 14 October 2020
Name | Starkov Anatoly A, PhD |
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Institution | Weill Medical College of Cornell University, Department of Neurology and Neuroscience |
Address | 525 East 68th Street, Room A-501, New York Presbyterian Hospital, |
City | New York |
State/Province | New York (NY) |
Country | USA |
[email protected] | |
Weblink | |
O2k-Network Lab |
Labels:
Publications
Published | Reference | |
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Stepanova 2019 Antioxid Redox Signal | 2019 | Stepanova Anna, Sosunov S, Niatsetskaya Z, Konrad Csaba, Starkov AA, Manfredi G, Wittig I, Ten V, Galkin A (2019) Redox-dependent loss of flavin by mitochondrial complex I in brain ischemia/reperfusion injury. Antioxid Redox Signal 31:608-22. |
Andreyev 2015 Biochemistry (Mosc) | 2015 | Andreyev AY, Kushnareva YE, Murphy AN, Starkov AA (2015) Mitochondrial ROS Metabolism: 10 Years Later. Biochemistry (Mosc) 80: 517โ531. |
Chinopoulos 2014 Methods Enzymol | 2014 | Chinopoulos C, Kiss G, Kawamata H, Starkov AA (2014) Measurement of ADP-ATP exchange in relation to mitochondrial transmembrane potential and oxygen consumption. Methods Enzymol 542:333-48. doi:10.1016/B978-0-12-416618-9.00017-0 |
Kiss 2014 FASEB J | 2014 | Kiss G, Konrad C, Pour-Ghaz I, Mansour JJ, Nรฉmeth B, Starkov AA, Adam-Vizi V, Chinopoulos C (2014) Diaphorases provide NAD+ in anoxia. FASEB J 28:1682-97. |
Kiss 2013 FASEB J | 2013 | Kiss G, Konrad C, Doczi J, Starkov AA, Kawamata H, Manfredi G, Zhang SF, Gibson GE, Beal MF, Adam-Vizi V, Chinopoulos C (2013) The negative impact of alpha-ketoglutarate dehydrogenase complex deficiency on matrix substrate-level phosphorylation. FASEB J 27:2392-406. |
Chinopoulos 2011 Methods Mol Biol | 2011 | Chinopoulos C, Zhang SF, Thomas B, Ten V, Starkov AA (2011) Isolation and functional assessment of mitochondria from small amounts of mouse brain tissue. Methods Mol Biol 793:311-24. |
Starkov 2010 FEBS J | 2010 | Starkov AA (2010) The molecular identity of the mitochondrial Ca2+ sequestration system. FEBS J. 277:3652-63. |
Andreyev 2005 Biochemistry (Mosc) | 2005 | Andreyev AY, Kushnareva YE, Starkov AA (2005) Mitochondrial metabolism of reactive oxygen species. Biochemistry (Mosc) 70:200-14. |
Starkov 2003 J Neurochem | 2003 | Starkov AA, Fiskum G (2003) Regulation of brain mitochondrial H2O2 production by membrane potential and NAD(P)H redox state. J Neurochem 86:1101-7. |
Korshunov 1997 FEBS Letters | 1997 | Korshunov SS, Skulachev VP, Starkov AA (1997) High protonic potential actuates a mechanism of production of reactive oxygen species in mitochondria. FEBS Letters 416:15-8. |
Abstracts
Published | Reference | |
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Starkov 2014 Abstract MiP2014 | 2014 | Mitochondria as H2O2 buffering system. |
Kiss 2012 Abstract Bioblast | 2012 | Kiss G, Konrad C, Doczi J, Starkov AA, Kawamata H, Manfredi G, Zhang SF, Gibson GE, Beal MF, Adam-Vizi V, Chinopoulos C (2012) The negative impact of alpha-ketoglutarate dehydrogenase complex deficiency on matrix substrate-level phosphorylation. Mitochondr Physiol Network 17.12. |