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Robert M. Friedlander, MD. MA

Affiliations: 
Cerebrovascular Neurosurgery  University of Pittsburgh, Pittsburgh, PA, United States 
Website:
http://www.neurosurgery.pitt.edu/research/neuroapoptosis/index.html
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Publications

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Sinha B, Wu Q, Li W, et al. (2017) Protection of melatonin in experimental models of newborn hypoxic-ischemic brain injury through MT1 receptor. Journal of Pineal Research
Kozai TD, Du Z, Gugel ZV, et al. (2015) Comprehensive chronic laminar single-unit, multi-unit, and local field potential recording performance with planar single shank electrode arrays. Journal of Neuroscience Methods. 242: 15-40
Kozai TD, Li X, Bodily LM, et al. (2014) Effects of caspase-1 knockout on chronic neural recording quality and longevity: insight into cellular and molecular mechanisms of the reactive tissue response. Biomaterials. 35: 9620-34
Zhou H, Wang J, Jiang J, et al. (2014) N-acetyl-serotonin offers neuroprotection through inhibiting mitochondrial death pathways and autophagic activation in experimental models of ischemic injury. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 34: 2967-78
Zhang Y, Cook A, Kim J, et al. (2013) Melatonin inhibits the caspase-1/cytochrome c/caspase-3 cell death pathway, inhibits MT1 receptor loss and delays disease progression in a mouse model of amyotrophic lateral sclerosis. Neurobiology of Disease. 55: 26-35
Wang X, Sirianni A, Pei Z, et al. (2011) The melatonin MT1 receptor axis modulates mutant Huntingtin-mediated toxicity. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 31: 14496-507
Zhang Y, Wang X, Baranov SV, et al. (2011) Dipyrone inhibits neuronal cell death and diminishes hypoxic/ischemic brain injury. Neurosurgery. 69: 942-56
Yanamadala V, Friedlander RM. (2010) Complement in neuroprotection and neurodegeneration. Trends in Molecular Medicine. 16: 69-76
Wang X, Figueroa BE, Stavrovskaya IG, et al. (2009) Methazolamide and melatonin inhibit mitochondrial cytochrome C release and are neuroprotective in experimental models of ischemic injury. Stroke; a Journal of Cerebral Circulation. 40: 1877-85
Zhang WH, Wang H, Wang X, et al. (2008) Nortriptyline protects mitochondria and reduces cerebral ischemia/hypoxia injury. Stroke; a Journal of Cerebral Circulation. 39: 455-62
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