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Journal of Cancer|July 30, 2016
Notch Signaling Activation in Cervical Cancer Cells Induces Cell Growth Arrest with the Involvement of the Nuclear Receptor NR4A2Lichun Sun, Mingqiu Liu, Guang-Chun Sun, et al.Peptides|May 5, 2010
Pharmacology of putative selective hBRS-3 receptor agonists for human bombesin receptors (BnR): affinities, potencies and selectivity in multiple native and BnR transfected cellsVeronica Sancho, Terry W Moody, Samuel A Mantey, et al.Peptides|July 20, 2017
Pituitary adenylate cyclase-activating polypeptide (PACAP) protects against mitoxantrone-induced cardiac injury in miceVenkat Subramaniam, Gin Chuang, Huijing Xia, et al.The Journal of Pharmacology and Experimental Therapeutics|July 30, 2013
Comparative pharmacology of bombesin receptor subtype-3, nonpeptide agonist MK-5046, a universal peptide agonist, and peptide antagonist Bantag-1 for human bombesin receptorsPaola Moreno, Samuel A Mantey, Bernardo Nuche-Berenguer, et al.Peptides|May 26, 2009
Characterization of putative GRP- and NMB-receptor antagonist's interaction with human receptorsNieves González, Samuel A Mantey, Tapas K Pradhan, et al.Proceedings of the National Academy of Sciences of the United States of America|September 30, 2010
Calcium-sensing receptor is a physiologic multimodal chemosensor regulating gastric G-cell growth and gastrin secretionJianying Feng, Clark D Petersen, David H Coy, et al.Journal of Drug Targeting|August 12, 2011
Investigation of cancer cell lines for peptide receptor-targeted drug developmentLichun Sun, Jing Luo, L Vienna Mackey, et al.Peptides|July 7, 2011
Pharmacology and selectivity of various natural and synthetic bombesin related peptide agonists for human and rat bombesin receptors differsHirotsugu Uehara, Nieves González, Veronica Sancho, et al.Biochemical Pharmacology|July 26, 2012
The molecular basis for high affinity of a universal ligand for human bombesin receptor (BnR) family membersHirotsugu Uehara, Simon J Hocart, Nieves González, et al.Peptides|September 20, 2011
Vasoactive intestinal peptide reduces oxidative stress in pancreatic acinar cells through the inhibition of NADPH oxidaseNao Fujimori, Takamasa Oono, Hisato Igarashi, et al.Pageof 8