Nephi Stella

University of Washington, Seattle, Seattle, WA 
Cannabinoid signaling and neuroinflammation
"Nephi Stella"
Mean distance: 13.44 (cluster 6)
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Horne EA, Diaz P, Cimino PJ, et al. (2021) A brain-penetrant microtubule-targeting agent that disrupts hallmarks of glioma tumorigenesis. Neuro-Oncology Advances. 3: vdaa165
Castelli R, Scalvini L, Vacondio F, et al. (2019) Benzisothiazolinone derivatives as potent allosteric monoacylglycerol lipase inhibitors that functionally mimic sulfenylation of regulatory cysteines. Journal of Medicinal Chemistry
Cherry AE, Vicente JJ, Xu C, et al. (2019) GPR124 regulates microtubule assembly, mitotic progression, and glioblastoma cell proliferation. Glia
Diaz P, Horne E, Xu C, et al. (2018) Modified carbazoles destabilize microtubules and kill glioblastoma multiform cells. European Journal of Medicinal Chemistry. 159: 74-89
Harris DA, Park JM, Soon-Lee K, et al. (2017) Label-free dynamic mass redistribution reveals low density, pro-survival α1B-adrenergic receptors in human SW480 colon carcinoma cells. The Journal of Pharmacology and Experimental Therapeutics
Fung S, Xu C, Hamel E, et al. (2016) Novel indole-based compounds that differentiate alkylindole-sensitive receptors from cannabinoid receptors and microtubules: Characterization of their activity on glioma cell migration. Pharmacological Research
Cherry AE, Haas BR, Naydenov AV, et al. (2016) ST-11: a new brain-penetrant microtubule-destabilizing agent with therapeutic potential for glioblastoma multiforme. Molecular Cancer Therapeutics
Camp ND, Lee KS, Cherry A, et al. (2016) Dynamic mass redistribution reveals diverging importance of PDZ-ligands for G protein-coupled receptor pharmacodynamics. Pharmacological Research
Ling X, Zhang S, Shao P, et al. (2015) A novel near-infrared fluorescence imaging probe that preferentially binds to cannabinoid receptors CB2R over CB1R. Biomaterials. 57: 169-78
Fung S, Cherry AE, Xu C, et al. (2015) Alkylindole-sensitive receptors modulate microglial cell migration and proliferation. Glia
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