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Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|November 6, 2025
Multiscale 3D Whole Joint Cellular and Molecular Mapping Reveals Disease-Specific Neurovascular Plasticity Underlying the Structure-Pain RelationshipPeng Chen, Jiaxin Chai, Abirami Soundararajan, et al.
Biochemical Pharmacology|September 18, 2002
Regulation of anandamide tissue levels by N-arachidonylglycineSumner H Burstein, Susan M Huang, Timothy J Petros, et al.
Prostaglandins & Other Lipid Mediators|August 16, 2005
Targeted lipidomics: fatty acid amides and pain modulationJ Michael Walker, Jocelyn F Krey, Jay S Chen, et al.
Journal of the American Board of Family Medicine : JABFM|November 11, 2018
Interactive Mobile Doctor (iMD) to Promote Patient-Provider Discussion on Tobacco Use among Asian American Patients in Primary Care: A Pilot StudyJanice Y Tsoh, Thu Quach, Thomas B Duong, et al.
The Journal of Biological Chemistry|February 6, 2003
N-oleoyldopamine, a novel endogenous capsaicin-like lipid that produces hyperalgesiaConstance J Chu, Susan M Huang, Luciano De Petrocellis, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|May 22, 2008
Incensole acetate, an incense component, elicits psychoactivity by activating TRPV3 channels in the brainArieh Moussaieff, Neta Rimmerman, Tatiana Bregman, et al.
Prostaglandins, Leukotrienes, and Essential Fatty Acids|July 3, 2009
The biosynthesis of N-arachidonoyl dopamine (NADA), a putative endocannabinoid and endovanilloid, via conjugation of arachidonic acid with dopamineSherry Shu-Jung Hu, Heather B Bradshaw, Valery M Benton, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 13, 2002
An endogenous capsaicin-like substance with high potency at recombinant and native vanilloid VR1 receptorsSusan M Huang, Tiziana Bisogno, Marcello Trevisani, et al.
Cell|April 21, 2010
TRP channel regulates EGFR signaling in hair morphogenesis and skin barrier formationXiping Cheng, Jie Jin, Lily Hu, et al.
Proceedings of the National Academy of Sciences of the United States of America|October 26, 2007
Loss of Bardet Biedl syndrome proteins causes defects in peripheral sensory innervation and functionPerciliz L Tan, Travis Barr, Peter N Inglis, et al.
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