Results: 1-25 | 26-50 | 51-74
Results: 1-25/74

Authors: Lewen, A Sugawara, T Gasche, Y Fujimura, M Chan, PH
Citation: A. Lewen et al., Oxidative cellular damage and the reduction of APE/Ref-1 expression after experimental traumatic brain injury, NEUROBIOL D, 8(3), 2001, pp. 380-390

Authors: Kim, GW Chan, PH
Citation: Gw. Kim et Ph. Chan, Oxidative stress and neuronal DNA fragmentation mediate age-dependent vulnerability to the mitochondrial toxin, 3-nitropropionic acid, in the mouse striatum, NEUROBIOL D, 8(1), 2001, pp. 114-126

Authors: Sugawara, T Yu, FS Ma, L Hsia, CJC Chan, PH
Citation: T. Sugawara et al., Delayed treatment with polynitroxyl albumin reduces infarct size after stroke in rats, NEUROREPORT, 12(16), 2001, pp. 3609-3612

Authors: Chen, YM Chan, PH Swanson, RA
Citation: Ym. Chen et al., Astrocytes overexpressing Cu,Zn superoxide dismutase have increased resistance to oxidative injury, GLIA, 33(4), 2001, pp. 343-347

Authors: Copin, JC Gasche, Y Li, YB Chan, PH
Citation: Jc. Copin et al., Prolonged hypoxia during cell development protects mature manganese superoxide dismutase-deficient astrocytes from damage by oxidative stress, FASEB J, 15(2), 2001, pp. 525-534

Authors: Kim, GW Lewen, A Copin, JC Watson, BD Chan, PH
Citation: Gw. Kim et al., The cytosolic antioxidant, copper/zinc superoxide dismutase, attenuates blood-brain barrier disruption and oxidative cellular injury after photothrombotic cortical ischemia in mice, NEUROSCIENC, 105(4), 2001, pp. 1007-1018

Authors: Lewen, A Fujimura, M Sugawara, T Matz, P Copin, JC Chan, PH
Citation: A. Lewen et al., Oxidative stress-dependent release of mitochondrial cytochrome c after traumatic brain injury, J CEREBR B, 21(8), 2001, pp. 914-920

Authors: Matz, PG Lewen, A Chan, PH
Citation: Pg. Matz et al., Neuronal, but not microglial, accumulation of extravasated serum proteins after intracerebral hemolysate exposure is accompanied by cytochrome c release and DNA fragmentation, J CEREBR B, 21(8), 2001, pp. 921-928

Authors: Noshita, N Sugawara, T Fujimura, M Morita-Fujimura, Y Chan, PH
Citation: N. Noshita et al., Manganese superoxide dismutase affects cytochrome c release and caspase-9 activation after transient focal cerebral ischemia in mice, J CEREBR B, 21(5), 2001, pp. 557-567

Authors: Lewen, A Skoglosa, Y Clausen, F Marklund, N Chan, PH Lindholm, D Hillered, L
Citation: A. Lewen et al., Paradoxical increase in neuronal DNA fragmentation after neuroprotective free radical scavenger treatment in experimental traumatic brain injury, J CEREBR B, 21(4), 2001, pp. 344-350

Authors: Huang, CY Fujimura, M Noshita, N Chang, YY Chan, PH
Citation: Cy. Huang et al., SOD1 down-regulates NF-kappa B and c-mye expression in mice after transient focal cerebral ischemia, J CEREBR B, 21(2), 2001, pp. 163-173

Authors: Gasche, Y Copin, JC Sugawara, T Fujimura, M Chan, PH
Citation: Y. Gasche et al., Matrix metalloproteinase inhibition prevents oxidative stress-associated blood-brain barrier disruption after transient focal cerebral ischemia, J CEREBR B, 21(12), 2001, pp. 1393-1400

Authors: Noshita, N Lewen, A Sugawara, T Chan, PH
Citation: N. Noshita et al., Evidence of phosphorylation of Akt and neuronal survival after transient focal cerebral ischemia in mice, J CEREBR B, 21(12), 2001, pp. 1442-1450

Authors: Chan, PH
Citation: Ph. Chan, Reactive oxygen radicals in signaling and damage in the ischemic brain, J CEREBR B, 21(1), 2001, pp. 2-14

Authors: Saito, A Kamii, H Kato, I Takasawa, S Kondo, T Chan, PH Okamoto, H Yoshimoto, T
Citation: A. Saito et al., Transgenic CuZn-superoxide dismutase inhibits NO synthase induction in experimental subarachnoid hemorrhage, STROKE, 32(7), 2001, pp. 1652-1656

Authors: Kim, GW Noshita, N Sugawara, T Chan, PH
Citation: Gw. Kim et al., Early decrease in DNA repair proteins, Ku70 and Ku86, and subsequent DNA fragmentation after transient focal cerebral ischemia in mice, STROKE, 32(6), 2001, pp. 1401-1407

Authors: Huang, CY Fujimura, M Chang, YY Chan, PH
Citation: Cy. Huang et al., Overexpression of copper-zinc superoxide dismutase attenuates acute activation of activator protein-1 after transient focal cerebral ischemia in mice, STROKE, 32(3), 2001, pp. 741-747

Authors: Matz, PG Fujimura, M Lewen, A Morita-Fujimura, Y Chan, PH
Citation: Pg. Matz et al., Increased cytochrome c-mediated DNA fragmentation and cell death in manganese-superoxide dismutas-deficient mice after exposure to subarachnoid hemolysate, STROKE, 32(2), 2001, pp. 506-515

Authors: Morita-Fujimura, Y Fujimura, M Yoshimoto, T Chan, PH
Citation: Y. Morita-fujimura et al., Superoxide during reperfusion contributes to caspase-8 expression and apoptosis after transient focal stroke, STROKE, 32(10), 2001, pp. 2356-2361

Authors: Sugawara, T Noshita, N Lewen, A Kim, GW Chan, PH
Citation: T. Sugawara et al., Neuronal expression of the DNA repair protein Ku 70 after ischemic preconditioning corresponds to tolerance to global cerebral ischemia, STROKE, 32(10), 2001, pp. 2388-2393

Authors: Chan, PH
Citation: Ph. Chan, Gene transfer of extracellular superoxide dismutase increases superoxide dismutase activity in cerebrospinal fluid - Comment, STROKE, 32(1), 2001, pp. 189-189

Authors: Chen, YM Vartiainen, NE Ying, WH Chan, PH Koistinaho, J Swanson, RA
Citation: Ym. Chen et al., Astrocytes protect neurons from nitric oxide toxicity by a glutathione-dependent mechanism, J NEUROCHEM, 77(6), 2001, pp. 1601-1610

Authors: Vartiainen, N Huang, CY Salminen, A Goldsteins, G Chan, PH Koistinaho, J
Citation: N. Vartiainen et al., Piroxicam and NS-398 rescue neurones from hypoxia/reoxygenation damage by a mechanism independent of cyclo-oxygenase inhibition, J NEUROCHEM, 76(2), 2001, pp. 480-489

Authors: Gobbel, GT Chan, PH
Citation: Gt. Gobbel et Ph. Chan, Neuronal death is an active, caspase-dependent process after moderate but not severe DNA damage, J NEUROCHEM, 76(2), 2001, pp. 520-531

Authors: Fujimura, M Morita-Fujimura, Y Copin, JC Yoshimoto, T Chan, PH
Citation: M. Fujimura et al., Reduction of copper,zinc-superoxide dismutase in knockout mice does not affect edema or infarction volumes and the early release of mitochondrial cytochrome c after permanent focal cerebral ischemia, BRAIN RES, 889(1-2), 2001, pp. 208-213
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