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Biomaterials|July 18, 2006
In vitro model of glial scarring around neuroelectrodes chronically implanted in the CNSVadim S Polikov, Michelle L Block, Jean-Marc Fellous, et al.Parkinsonism & Related Disorders|December 15, 2011
Fluoxetine protects neurons against microglial activation-mediated neurotoxicityFeng Zhang, Hui Zhou, Belinda C Wilson, et al.The Journal of Pharmacology and Experimental Therapeutics|March 2, 2010
Inhibition of IkappaB kinase-beta protects dopamine neurons against lipopolysaccharide-induced neurotoxicityFeng Zhang, Li Qian, Patrick M Flood, et al.Neurobiology of Disease|June 28, 2011
Low dose dextromethorphan attenuates moderate experimental autoimmune encephalomyelitis by inhibiting NOX2 and reducing peripheral immune cells infiltration in the spinal cordOlga V Chechneva, Florian Mayrhofer, Daniel J Daugherty, et al.The Journal of Pharmacology and Experimental Therapeutics|March 21, 2007
Histone deacetylase inhibitors exhibit anti-inflammatory and neuroprotective effects in a rat permanent ischemic model of stroke: multiple mechanisms of actionHyeon Ju Kim, Michael Rowe, Ming Ren, et al.Free Radical Biology & Medicine|November 19, 2011
Rotenone activates phagocyte NADPH oxidase by binding to its membrane subunit gp91phoxHui Zhou, Feng Zhang, Shih-heng Chen, et al.Journal of Inflammation Research|April 16, 2021
Microglial Activation Mediates Noradrenergic Locus Coeruleus Neurodegeneration via Complement Receptor 3 in a Rotenone-Induced Parkinson's Disease Mouse ModelLu Jing, Liyan Hou, Dongdong Zhang, et al.European Journal of Pharmacology|May 2, 2008
(+)-Morphine attenuates the (-)-morphine-produced conditioned place preference and the mu-opioid receptor-mediated dopamine increase in the posterior nucleus accumbens of the ratMaia Terashvili, Hsiang-En Wu, Emma T Schwasinger, et al.Cells|September 28, 2021
Early-Released Interleukin-10 Significantly Inhibits Lipopolysaccharide-Elicited Neuroinflammation In VitroYubao Wang, Pei Yu, Yi Li, et al.Journal of Neuroinflammation|February 21, 2012
Naloxone inhibits immune cell function by suppressing superoxide production through a direct interaction with gp91phox subunit of NADPH oxidaseQingshan Wang, Hui Zhou, Huiming Gao, et al.Pageof 22