-
1
-
-
84868007565
-
Physiological roles of mitochondrial reactive oxygen species
-
Sena, L.A.; Chandel, N.S. Physiological roles of mitochondrial reactive oxygen species. Mol. Cell 2012, 48, 158–167
-
(2012)
Mol. Cell
, vol.48
, pp. 158-167
-
-
Sena, L.A.1
Chandel, N.S.2
-
2
-
-
84904395583
-
A deficiency of apoptosis inducing factor (AIF) in Harlequin mouse heart mitochondria paradoxically reduces ROS generation during ischemia-reperfusion
-
Chen, Q.; Szczepanek, K.; Hu, Y.; Thompson, J.; Lesnefsky, E.J. A deficiency of apoptosis inducing factor (AIF) in Harlequin mouse heart mitochondria paradoxically reduces ROS generation during ischemia-reperfusion. Front. Physiol. 2014, doi:10.3389/fphys.2014.00271
-
(2014)
Front. Physiol
-
-
Chen, Q.1
Szczepanek, K.2
Hu, Y.3
Thompson, J.4
Lesnefsky, E.J.5
-
3
-
-
84908574562
-
Mitochondrial oxidative stress in aging and healthspan
-
Dai, D.F.; Chiao, Y.A.; Marcinek, D.J.; Szeto, H.H.; Rabinovitch, P.S. Mitochondrial oxidative stress in aging and healthspan. Longev. Healthspan. 2014, doi:10.1186/2046-2395-3-6
-
(2014)
Longev. Healthspan
-
-
Dai, D.F.1
Chiao, Y.A.2
Marcinek, D.J.3
Szeto, H.H.4
Rabinovitch, P.S.5
-
4
-
-
66949176522
-
Mitochondria and vascular pathology
-
Di Lisa, F.; Kaludercic, N.; Carpi, A.; Menabo, R.; Giorgio, M. Mitochondria and vascular pathology. Pharmacol. Rep.2009, 61, 123–130
-
(2009)
Pharmacol. Rep
, vol.61
, pp. 123-130
-
-
Di Lisa, F.1
Kaludercic, N.2
Carpi, A.3
Menabo, R.4
Giorgio, M.5
-
5
-
-
63349087445
-
Tissue-, substrate-, and site-specific characteristics of mitochondrial reactive oxygen species generation
-
Tahara, E.B.; Navarete, F.D.; Kowaltowski, A.J. Tissue-, substrate-, and site-specific characteristics of mitochondrial reactive oxygen species generation. Free Radic. Biol. Med. 2009, 46, 1283–1297
-
(2009)
Free Radic. Biol. Med
, vol.46
, pp. 1283-1297
-
-
Tahara, E.B.1
Navarete, F.D.2
Kowaltowski, A.J.3
-
6
-
-
84863738048
-
Molecular mechanisms of superoxide production by the mitochondrial respiratory chain
-
Drose, S.; Brandt, U. Molecular mechanisms of superoxide production by the mitochondrial respiratory chain. Adv. Exp. Med. Biol. 2012, 748, 145–169
-
(2012)
Adv. Exp. Med. Biol
, vol.748
, pp. 145-169
-
-
Drose, S.1
Brandt, U.2
-
7
-
-
82355170974
-
Relation between mitochondrial membrane potential and ROS formation
-
Suski, J.M.; Lebiedzinska, M.; Bonora, M.; Pinton, P.; Duszynski, J.; Wieckowski, M.R. Relation between mitochondrial membrane potential and ROS formation. Methods Mol. Biol. 2012, 810, 183–205
-
(2012)
Methods Mol. Biol
, vol.810
, pp. 183-205
-
-
Suski, J.M.1
Lebiedzinska, M.2
Bonora, M.3
Pinton, P.4
Duszynski, J.5
Wieckowski, M.R.6
-
8
-
-
79952023305
-
Measurement of mitochondrial ROS production
-
Starkov, A.A. Measurement of mitochondrial ROS production. Methods Mol. Biol. 2010, 648, 245–255
-
(2010)
Methods Mol. Biol
, vol.648
, pp. 245-255
-
-
Starkov, A.A.1
-
9
-
-
67649866121
-
Mitochondria and reactive oxygen species
-
Kowaltowski, A.J.; de Souza-Pinto, N.C.; Castilho, R.F.; Vercesi, A.E. Mitochondria and reactive oxygen species. Free Radic. Biol. Med. 2009, 47, 333–343
-
(2009)
Free Radic. Biol. Med
, vol.47
, pp. 333-343
-
-
Kowaltowski, A.J.1
De Souza-Pinto, N.C.2
Castilho, R.F.3
Vercesi, A.E.4
-
10
-
-
84870701325
-
Uncoupling protein 1 dependent reactive oxygen species production by thymus mitochondria
-
Clarke, K.J.; Porter, R.K. Uncoupling protein 1 dependent reactive oxygen species production by thymus mitochondria. Int. J. Biochem. Cell Biol. 2013, 45, 81–89
-
(2013)
Int. J. Biochem. Cell Biol
, vol.45
, pp. 81-89
-
-
Clarke, K.J.1
Porter, R.K.2
-
11
-
-
63449133530
-
Quantification of superoxide production by mouse brain and skeletal muscle mitochondria
-
Malinska, D.; Kudin, A.P.; Debska-Vielhaber, G.; Vielhaber, S.; Kunz, W.S. Quantification of superoxide production by mouse brain and skeletal muscle mitochondria. Methods Enzymol. 2009, 456, 419–437
-
(2009)
Methods Enzymol
, vol.456
, pp. 419-437
-
-
Malinska, D.1
Kudin, A.P.2
Debska-Vielhaber, G.3
Vielhaber, S.4
Kunz, W.S.5
-
12
-
-
36248976616
-
Uncoupling is without an effect on the production of reactive oxygen species by in situ synaptic mitochondria
-
Tretter, L.; Adam-Vizi, V. Uncoupling is without an effect on the production of reactive oxygen species by in situ synaptic mitochondria. J. Neurochem.2007, 103, 1864–1871
-
(2007)
J. Neurochem
, vol.103
, pp. 1864-1871
-
-
Tretter, L.1
Adam-Vizi, V.2
-
13
-
-
84868662354
-
High Ca2+ load promotes hydrogen peroxide generation via activation of α-glycerophosphate dehydrogenase in brain mitochondria
-
Tretter, L.; Adam-Vizi, V. High Ca2+ load promotes hydrogen peroxide generation via activation of α-glycerophosphate dehydrogenase in brain mitochondria. Free Radic. Biol. Med. 2012, 53, 2119–2130
-
(2012)
Free Radic. Biol. Med
, vol.53
, pp. 2119-2130
-
-
Tretter, L.1
Adam-Vizi, V.2
-
14
-
-
35848959911
-
Stimulation of H2O2 generation by calcium in brain mitochondria respiring on alpha-glycerophosphate
-
Tretter, L.; Takacs, K.; Kover, K.; Adam-Vizi, V. Stimulation of H2O2 generation by calcium in brain mitochondria respiring on alpha-glycerophosphate. J. Neurosci. Res. 2007, 85, 3471–3479
-
(2007)
J. Neurosci. Res
, vol.85
, pp. 3471-3479
-
-
Tretter, L.1
Takacs, K.2
Kover, K.3
Adam-Vizi, V.4
-
15
-
-
84958674756
-
Simultaneous high-resolution measurement of mitochondrial respiration and hydrogen peroxide production
-
Krumschnabel, G.; Fontana-Ayoub, M.; Sumbalova, Z.; Heidler, J.; Gauper, K.; Fasching, M.; Gnaiger, E. Simultaneous high-resolution measurement of mitochondrial respiration and hydrogen peroxide production. Methods Mol. Biol. 2015, 1264, 245–261
-
(2015)
Methods Mol. Biol
, vol.1264
, pp. 245-261
-
-
Krumschnabel, G.1
Fontana-Ayoub, M.2
Sumbalova, Z.3
Heidler, J.4
Gauper, K.5
Fasching, M.6
Gnaiger, E.7
-
16
-
-
84889491515
-
Polarographic Oxygen Sensors, the Oxygraph and High-Resolution Respirometry to Assess Mitochondrial Function
-
Dykens, J.A., Will, Y., Eds.; John Wiley: Hoboken, NJ, USA
-
Gnaiger, E. Polarographic Oxygen Sensors, the Oxygraph and High-Resolution Respirometry to Assess Mitochondrial Function. In Mitochondrial Dysfunction in Drug-Induced Toxicity; Dykens, J.A., Will, Y., Eds.; John Wiley: Hoboken, NJ, USA, 2008; pp. 327–352
-
(2008)
Mitochondrial Dysfunction in Drug-Induced Toxicity
, pp. 327-352
-
-
Gnaiger, E.1
-
17
-
-
68949148655
-
Capacity of oxidative phosphorylation in human skeletal muscle. New perspectives of mitochondrial physiology
-
Gnaiger, E. Capacity of oxidative phosphorylation in human skeletal muscle. New perspectives of mitochondrial physiology. Int. J. Biochem. Cell Biol. 2009, 41, 1837–1845
-
(2009)
Int. J. Biochem. Cell Biol
, vol.41
, pp. 1837-1845
-
-
Gnaiger, E.1
-
18
-
-
77049249588
-
Respiratory enzymes in oxidative phosphorylation: III. The steady state
-
Chance, B.; Williams, G.R. Respiratory enzymes in oxidative phosphorylation: III. The steady state. J. Biol. Chem. 1955, 217, 409–427
-
(1955)
J. Biol. Chem
, vol.217
, pp. 409-427
-
-
Chance, B.1
Williams, G.R.2
-
20
-
-
84866713727
-
Poly(ADP-ribosyl)ation is a survival mechanism in cigarette smoke-induced and hydrogen peroxide-mediated cell death
-
Kovacs, K.; Erdelyi, K.; Hegeds, C.; Lakatos, P.; Regdon, Z.; Bai, P.; Hasko, G.; Szabo, E.; Virag, L. Poly(ADP-ribosyl)ation is a survival mechanism in cigarette smoke-induced and hydrogen peroxide-mediated cell death. Free Radic. Biol. Med. 2012, 53, 1680–1688
-
(2012)
Free Radic. Biol. Med
, vol.53
, pp. 1680-1688
-
-
Kovacs, K.1
Erdelyi, K.2
Hegeds, C.3
Lakatos, P.4
Regdon, Z.5
Bai, P.6
Hasko, G.7
Szabo, E.8
Virag, L.9
-
21
-
-
84866873131
-
Mitochondrial aquaporin-8 knockdown in human hepatoma HepG2 cells causes ROS-induced mitochondrial depolarization and loss of viability
-
Marchissio, M.J.; Frances, D.E.; Carnovale, C.E.; Marinelli, R.A. Mitochondrial aquaporin-8 knockdown in human hepatoma HepG2 cells causes ROS-induced mitochondrial depolarization and loss of viability. Toxicol. Appl. Pharmacol. 2012, 264, 246–254
-
(2012)
Toxicol. Appl. Pharmacol
, vol.264
, pp. 246-254
-
-
Marchissio, M.J.1
Frances, D.E.2
Carnovale, C.E.3
Marinelli, R.A.4
-
22
-
-
84901400422
-
Use of safranin for the assessment of mitochondrial membrane potential by high-resolution respirometry and fluorometry
-
Krumschnabel, G.; Eigentler, A.; Fasching, M.; Gnaiger, E. Use of safranin for the assessment of mitochondrial membrane potential by high-resolution respirometry and fluorometry. Methods Enzymol. 2014, 542, 163–181
-
(2014)
Methods Enzymol
, vol.542
, pp. 163-181
-
-
Krumschnabel, G.1
Eigentler, A.2
Fasching, M.3
Gnaiger, E.4
-
23
-
-
0345120940
-
Measurement of mitochondrial membrane potential using fluorescent rhodamine derivatives
-
Scaduto, R.C., Jr.; Grotyohann, L.W. Measurement of mitochondrial membrane potential using fluorescent rhodamine derivatives. Biophys. J. 1999, 76, 469–477
-
(1999)
Biophys. J
, vol.76
, pp. 469-477
-
-
Scaduto, R.C.1
Grotyohann, L.W.2
-
24
-
-
85012104636
-
-
Innsbruck, Austria. Unpublished work
-
Krumschnabel, G.; Nydlova, E.; Vrbova, M. OROBOROS INSTRUMENTS, Innsbruck, Austria. Unpublished work, 2015
-
(2015)
OROBOROS INSTRUMENTS
-
-
Krumschnabel, G.1
Nydlova, E.2
Vrbova, M.3
-
25
-
-
84901425119
-
Methods to monitor ROS production by fluorescence microscopy and fluorometry
-
Wojtala, A.; Bonora, M.; Malinska, D.; Pinton, P.; Duszynski, J.; Wieckowski, M.R. Methods to monitor ROS production by fluorescence microscopy and fluorometry. Methods Enzymol. 2014, 542, 243–262
-
(2014)
Methods Enzymol
, vol.542
, pp. 243-262
-
-
Wojtala, A.1
Bonora, M.2
Malinska, D.3
Pinton, P.4
Duszynski, J.5
Wieckowski, M.R.6
-
26
-
-
84655169258
-
Simvastatin impairs ADP-stimulated respiration and increases mitochondrial oxidative stress in primary human skeletal myotubes
-
Kwak, H.B.; Thalacker-Mercer, A.; Anderson, E.J.; Lin, C.T.; Kane, D.A.; Lee, N.S.; Cortright, R.N.; Bamman, M.M.; Neufer, P.D. Simvastatin impairs ADP-stimulated respiration and increases mitochondrial oxidative stress in primary human skeletal myotubes. Free Radic. Biol. Med. 2012, 52, 198–207
-
(2012)
Free Radic. Biol. Med
, vol.52
, pp. 198-207
-
-
Kwak, H.B.1
Thalacker-Mercer, A.2
Anderson, E.J.3
Lin, C.T.4
Kane, D.A.5
Lee, N.S.6
Cortright, R.N.7
Bamman, M.M.8
Neufer, P.D.9
-
27
-
-
79958777073
-
Mitochondrial aconitase knockdown attenuates paraquat-induced dopaminergic cell death via decreased cellular metabolism and release of iron and H2O2
-
Cantu, D.; Fulton, R.E.; Drechsel, D.A.; Patel, M. Mitochondrial aconitase knockdown attenuates paraquat-induced dopaminergic cell death via decreased cellular metabolism and release of iron and H2O2. J. Neurochem.2011, 118, 79–92
-
(2011)
J. Neurochem
, vol.118
, pp. 79-92
-
-
Cantu, D.1
Fulton, R.E.2
Drechsel, D.A.3
Patel, M.4
-
28
-
-
84864929834
-
Photooxidation of Amplex Red to resorufin: Implications of exposing the Amplex Red assay to light
-
Zhao, B.; Summers, F.A.; Mason, R.P. Photooxidation of Amplex Red to resorufin: Implications of exposing the Amplex Red assay to light. Free Radic. Biol. Med. 2012, 53, 1080–1087
-
(2012)
Free Radic. Biol. Med
, vol.53
, pp. 1080-1087
-
-
Zhao, B.1
Summers, F.A.2
Mason, R.P.3
-
29
-
-
84965053068
-
Mitochondrial NDUFS3 regulates the ROS-mediated onset of metabolic switch in transformed cells
-
Suhane, S.; Kanzaki, H.; Arumugaswami, V.; Murali, R.; Ramanujan, V.K. Mitochondrial NDUFS3 regulates the ROS-mediated onset of metabolic switch in transformed cells. Biol. Open. 2013, 2, 295–305
-
(2013)
Biol. Open
, vol.2
, pp. 295-305
-
-
Suhane, S.1
Kanzaki, H.2
Arumugaswami, V.3
Murali, R.4
Ramanujan, V.K.5
-
30
-
-
79955598457
-
Mitochondrial H2O2 generated from electron transport chain complex I stimulates muscle differentiation
-
Lee, S.; Tak, E.; Lee, J.; Rashid, M.A.; Murphy, M.P.; Ha, J.; Kim, S.S. Mitochondrial H2O2 generated from electron transport chain complex I stimulates muscle differentiation. Cell Res. 2011, 21, 817–834
-
(2011)
Cell Res
, vol.21
, pp. 817-834
-
-
Lee, S.1
Tak, E.2
Lee, J.3
Rashid, M.A.4
Murphy, M.P.5
Ha, J.6
Kim, S.S.7
-
31
-
-
0001233650
-
Mitochondria in the Cold
-
Heldmaier, G., Klingenspor, M., Eds.; Springer: Heiderlberg, Germany
-
Gnaiger, E.; Kuznetsov, A.V.; Schneeberger, S.; Seiler, R.; Brandacher, G.; Steurer, W.; Margreiter, R. Mitochondria in the Cold. In Life in the Cold; Heldmaier, G., Klingenspor, M., Eds.; Springer: Heiderlberg, Germany, 2000; pp. 431–442
-
(2000)
Life in the Cold
, pp. 431-442
-
-
Gnaiger, E.1
Kuznetsov, A.V.2
Schneeberger, S.3
Seiler, R.4
Brandacher, G.5
Steurer, W.6
Margreiter, R.7
-
32
-
-
84885300422
-
In the eye of the storm: Mitochondrial damage during heart and brain ischaemia
-
Borutaite, V.; Toleikis, A.; Brown, G.C. In the eye of the storm: mitochondrial damage during heart and brain ischaemia. FEBS J. 2013, 280, 4999–5014
-
(2013)
FEBS J
, vol.280
, pp. 4999-5014
-
-
Borutaite, V.1
Toleikis, A.2
Brown, G.C.3
-
33
-
-
84870266832
-
Deficiency: Clinical features, biochemistry and molecular genetics
-
Fassone, E.; Rahman, S. Complex I deficiency: Clinical features, biochemistry and molecular genetics. J. Med. Genet. 2012, 49, 578–590
-
(2012)
J. Med. Genet
, vol.49
, pp. 578-590
-
-
Fassone, E.1
Rahman, S.2
Complex, I.3
-
34
-
-
67650248980
-
Oxygen sensitivity of mitochondrial reactive oxygen species generation depends on metabolic conditions
-
Hoffman, D.L.; Brookes, P.S. Oxygen sensitivity of mitochondrial reactive oxygen species generation depends on metabolic conditions. J. Biol. Chem.2009, 284, 16236–16245
-
(2009)
J. Biol. Chem
, vol.284
, pp. 16236-16245
-
-
Hoffman, D.L.1
Brookes, P.S.2
-
35
-
-
84907149453
-
Mitochondrial inefficiencies and anoxic ATP hydrolysis capacities in diabetic rat heart
-
Pham, T.; Loiselle, D.; Power, A.; Hickey, A.J. Mitochondrial inefficiencies and anoxic ATP hydrolysis capacities in diabetic rat heart. Am. J. Physiol. Cell Physiol. 2014, 307, C499–C507
-
(2014)
Am. J. Physiol. Cell Physiol
, vol.307
-
-
Pham, T.1
Loiselle, D.2
Power, A.3
Hickey, A.J.4
-
36
-
-
79955939126
-
Unraveling the metabolism of HEK-293 cells using lactate isotopomer analysis
-
Henry, O.; Jolicoeur, M.; Kamen, A. Unraveling the metabolism of HEK-293 cells using lactate isotopomer analysis. Bioprocess Biosyst. Eng. 2011, 34, 263–267
-
(2011)
Bioprocess Biosyst. Eng
, vol.34
, pp. 263-267
-
-
Henry, O.1
Jolicoeur, M.2
Kamen, A.3
-
37
-
-
0018823014
-
Mitochondrial malic enzymes. Mitochondrial NAD(P)+-dependent malic enzyme activity and malate-dependent pyruvate formation are progression-linked in Morris hepatomas
-
Sauer, L.A.; Dauchy, R.T.; Nagel, W.O.; Morris, H.P. Mitochondrial malic enzymes. Mitochondrial NAD(P)+-dependent malic enzyme activity and malate-dependent pyruvate formation are progression-linked in Morris hepatomas. J. Biol. Chem. 1980, 255, 3844–3848
-
(1980)
J. Biol. Chem
, vol.255
, pp. 3844-3848
-
-
Sauer, L.A.1
Dauchy, R.T.2
Nagel, W.O.3
Morris, H.P.4
-
38
-
-
85012108629
-
-
accessed on 5 June
-
Gnaiger, E. P/E from Mouse to Man. Available online: http://wiki.oroboros.at/index.php/OXPHOS_ control_ratio#P.2FE_from_mouse_to_man (accessed on 5 June 2015).
-
(2015)
P/E from Mouse to Man
-
-
Gnaiger, E.1
-
39
-
-
0000466588
-
Respiratory chain linked H2O2 production in pigeon heart mitochondria
-
Loschen, G.; Flohe, L.; Chance, B. Respiratory chain linked H2O2 production in pigeon heart mitochondria. FEBS Lett. 1971, 18, 261–264
-
(1971)
FEBS Lett
, vol.18
, pp. 261-264
-
-
Loschen, G.1
Flohe, L.2
Chance, B.3
-
40
-
-
85012050490
-
Optimization of malate concentration for high-resolution respirometry: Mitochondria from rat liver and brain
-
Sumbalova, Z.; Vancova, O.; Krumschnabel, G.; Gnaiger, E. Optimization of malate concentration for high-resolution respirometry: Mitochondria from rat liver and brain. Mitochondr. Physiol. Netw. 2014, 19.13, 37
-
(2014)
Mitochondr. Physiol. Netw
, vol.19
, Issue.13
-
-
Sumbalova, Z.1
Vancova, O.2
Krumschnabel, G.3
Gnaiger, E.4
-
41
-
-
84884669583
-
Superoxide generation by complex III: From mechanistic rationales to functional consequences
-
Bleier, L.; Drose, S. Superoxide generation by complex III: From mechanistic rationales to functional consequences. Biochim. Biophys. Acta 2013, 1827, 1320–1331
-
(2013)
Biochim. Biophys. Acta
, vol.1827
, pp. 1320-1331
-
-
Bleier, L.1
Drose, S.2
-
42
-
-
58249093939
-
How mitochondria produce reactive oxygen species
-
Murphy, M.P. How mitochondria produce reactive oxygen species. Biochem. J. 2009, 417, 1–13
-
(2009)
Biochem. J
, vol.417
, pp. 1-13
-
-
Murphy, M.P.1
-
43
-
-
80052820817
-
Mitochondria: Isolation, structure and function
-
Picard, M.; Taivassalo, T.; Gouspillou, G.; Hepple, R.T. Mitochondria: Isolation, structure and function. J. Physiol. 2011, 589, 4413–4421
-
(2011)
J. Physiol
, vol.589
, pp. 4413-4421
-
-
Picard, M.1
Taivassalo, T.2
Gouspillou, G.3
Hepple, R.T.4
-
44
-
-
79953147483
-
Mitochondrial structure and function are disrupted by standard isolation methods
-
Picard, M.; Taivassalo, T.; Ritchie, D.; Wright, K.J.; Thomas, M.M.; Romestaing, C.; Hepple, R.T. Mitochondrial structure and function are disrupted by standard isolation methods. PLoS ONE 2011, 6, e18317
-
(2011)
Plos ONE
, vol.6
-
-
Picard, M.1
Taivassalo, T.2
Ritchie, D.3
Wright, K.J.4
Thomas, M.M.5
Romestaing, C.6
Hepple, R.T.7
-
45
-
-
85012049574
-
O2k-Fluorometry: HRR and H2O2 production in mouse cardiac tissue homogenate
-
Eigentler, A.; Fontana-Ayoub, M.; Gnaiger, E. O2k-Fluorometry: HRR and H2O2 production in mouse cardiac tissue homogenate. Mitochondr. Physiol. Netw. 2013, 18, 1–6
-
(2013)
Mitochondr. Physiol. Netw
, vol.18
, pp. 1-6
-
-
Eigentler, A.1
Fontana-Ayoub, M.2
Gnaiger, E.3
-
46
-
-
80052714990
-
Isolation of functional mitochondria from rat kidney and skeletal muscle without manual homogenization
-
Gross, V.S.; Greenberg, H.K.; Baranov, S.V.; Carlson, G.M.; Stavrovskaya, I.G.; Lazarev, A.V.; Kristal, B.S. Isolation of functional mitochondria from rat kidney and skeletal muscle without manual homogenization. Anal. Biochem. 2011, 418, 213–223
-
(2011)
Anal. Biochem
, vol.418
, pp. 213-223
-
-
Gross, V.S.1
Greenberg, H.K.2
Baranov, S.V.3
Carlson, G.M.4
Stavrovskaya, I.G.5
Lazarev, A.V.6
Kristal, B.S.7
-
47
-
-
33845999916
-
Dihydrolipoyl dehydrogenase as a source of reactive oxygen species inhibited by caloric restriction and involved in Saccharomyces cerevisiae aging
-
Tahara, E.B.; Barros, M.H.; Oliveira, G.A.; Netto, L.E.; Kowaltowski, A.J. Dihydrolipoyl dehydrogenase as a source of reactive oxygen species inhibited by caloric restriction and involved in Saccharomyces cerevisiae aging. FASEB J. 2007, 21, 274–283
-
(2007)
FASEB J
, vol.21
, pp. 274-283
-
-
Tahara, E.B.1
Barros, M.H.2
Oliveira, G.A.3
Netto, L.E.4
Kowaltowski, A.J.5
-
48
-
-
10344238617
-
Are respiratory enzymes the primary sources of intracellular hydrogen peroxide?
-
Seaver, L.C.; Imlay, J.A. Are respiratory enzymes the primary sources of intracellular hydrogen peroxide? J. Biol. Chem. 2004, 279, 48742–48750
-
(2004)
J. Biol. Chem
, vol.279
, pp. 48742-48750
-
-
Seaver, L.C.1
Imlay, J.A.2
-
49
-
-
84894165975
-
Cardiac mitochondria and reactive oxygen species generation
-
Chen, Y.R.; Zweier, J.L. Cardiac mitochondria and reactive oxygen species generation. Circ. Res. 2014, 114, 524–537
-
(2014)
Circ. Res
, vol.114
, pp. 524-537
-
-
Chen, Y.R.1
Zweier, J.L.2
-
50
-
-
82355161907
-
High-resolution respirometry: OXPHOS protocols for human cells and permeabilized fibers from small biopsies of human muscle
-
Pesta, D.; Gnaiger, E. High-resolution respirometry: OXPHOS protocols for human cells and permeabilized fibers from small biopsies of human muscle. Methods Mol. Biol. 2012, 810, 25–58.
-
(2012)
Methods Mol. Biol
, vol.810
, pp. 25-58
-
-
Pesta, D.1
Gnaiger, E.2
|