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Journal of Cell Science|January 23, 2003
Protection against hypoxia-induced increase in blood-brain barrier permeability: role of tight junction proteins and NFkappaBRachel C Brown, Karen S Mark, Richard D Egleton, et al.Brain Research|September 30, 2006
Biphasic cytoarchitecture and functional changes in the BBB induced by chronic inflammatory painTracy A Brooks, Scott M Ocheltree, Melissa J Seelbach, et al.Brain Research|October 21, 2004
Nicotine increases in vivo blood-brain barrier permeability and alters cerebral microvascular tight junction protein distributionBrian T Hawkins, Thomas J Abbruscato, Richard D Egleton, et al.Frontiers in Pediatrics|December 30, 2021
Alterations in Excitatory and Inhibitory Synaptic Development Within the Mesolimbic Dopamine Pathway in a Mouse Model of Prenatal Drug ExposureTaylor Boggess, James C Williamson, Ethan B Niebergall, et al.Journal of Pharmaceutical Sciences|June 24, 2003
Conjugation of low molecular weight poly(ethylene glycol) to biphalin enhances antinociceptive profileJason D Huber, Chris R Campos, Richard D Egleton, et al.Journal of Neurochemistry|October 13, 2007
Tight junctions contain oligomeric protein assembly critical for maintaining blood-brain barrier integrity in vivoGwen McCaffrey, William D Staatz, Carolyn A Quigley, et al.Investigative Ophthalmology & Visual Science|June 18, 2010
The α7-nicotinic acetylcholine receptor and MMP-2/-9 pathway mediate the proangiogenic effect of nicotine in human retinal endothelial cellsAaron M Dom, Adam W Buckley, Kathleen C Brown, et al.Journal of the American Chemical Society|April 14, 2005
Glycopeptides related to beta-endorphin adopt helical amphipathic conformations in the presence of lipid bilayersMuthu Dhanasekaran, Michael M Palian, Isabel Alves, et al.The Journal of Pharmacology and Experimental Therapeutics|May 29, 2004
Antinociceptive structure-activity studies with enkephalin-based opioid glycopeptidesNura O Elmagbari, Richard D Egleton, Michael M Palian, et al.Angiogenesis|December 27, 2011
MG624, an α7-nAChR antagonist, inhibits angiogenesis via the Egr-1/FGF2 pathwayKathleen C Brown, Jamie K Lau, Aaron M Dom, et al.Pageof 3