Raymond S. Duncan, Ph.D.

2008 Pharmacology and Neuroscience University of North Texas Health Science Center at Fort Worth 
Neuroscience Biology, Cell Biology
"Raymond Duncan"
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Peter Koulen grad student 2008 University of North Texas Health Science Center at Fort Worth
 (N-acylethanolamine signaling in neurons.)
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Duncan RS, Rohowetz L, Vogt A, et al. (2019) Repeat exposure to polyinosinic:polycytidylic acid induces TLR3 expression via JAK-STAT signaling and synergistically potentiates NFκB-RelA signaling in ARPE-19 cells. Cellular Signalling. 66: 109494
Duncan RS, Song B, Koulen P. (2018) Presenilins as Drug Targets for Alzheimer's Disease-Recent Insights from Cell Biology and Electrophysiology as Novel Opportunities in Drug Development. International Journal of Molecular Sciences. 19
Srivastava T, Sharma M, Yew KH, et al. (2013) LPS and PAN-induced podocyte injury in an in vitro model of minimal change disease: changes in TLR profile. Journal of Cell Communication and Signaling. 7: 49-60
Yew KH, Carpenter C, Duncan RS, et al. (2012) Human cytomegalovirus induces TLR4 signaling components in monocytes altering TIRAP, TRAM and downstream interferon-beta and TNF-alpha expression. Plos One. 7: e44500
Burroughs SL, Duncan RS, Rayudu P, et al. (2012) Plate reader-based assays for measuring cell viability, neuroprotection and calcium in primary neuronal cultures. Journal of Neuroscience Methods. 203: 141-5
Kilaru A, Tamura P, Garg P, et al. (2011) Changes in N-acylethanolamine Pathway Related Metabolites in a Rat Model of Cerebral Ischemia/Reperfusion. Journal of Glycomics & Lipidomics. 1
Duncan RS, Xin H, Goad DL, et al. (2011) Protection of neurons in the retinal ganglion cell layer against excitotoxicity by the N-acylethanolamine, N-linoleoylethanolamine. Clinical Ophthalmology (Auckland, N.Z.). 5: 543-8
Garg P, Duncan RS, Kaja S, et al. (2011) Lauroylethanolamide and linoleoylethanolamide improve functional outcome in a rodent model for stroke. Neuroscience Letters. 492: 134-8
Kaja S, Duncan RS, Longoria S, et al. (2011) Novel mechanism of increased Ca2+ release following oxidative stress in neuronal cells involves type 2 inositol-1,4,5-trisphosphate receptors. Neuroscience. 175: 281-91
Martín-Montañez E, Acevedo MJ, López-Téllez JF, et al. (2010) Regulator of G-protein signaling 14 protein modulates Ca²+ influx through Cav1 channels. Neuroreport. 21: 1034-9
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