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Page 1
Pharmacological characterization of kinin-induced relaxation of human corpus cavernosum.
Teixeira CE, Moreno RA, Ferreira U, Rodrigues Netto N Jr, Fregonesi A, Antunes E, De Nucci G. Teixeira CE, et al. Br J Urol. 1998 Mar;81(3):432-6. doi: 10.1046/j.1464-410x.1998.00533.x. Br J Urol. 1998. PMID: 9523665
OBJECTIVE: To characterize the kinin receptor subtype involved in the relaxation of human isolated corpus cavernosum (HCC) induced by bradykinin (BK), Lys-bradykinin (Lys-BK), Met-Lys-bradykinin (Met-Lys-BK) and des-Arg9-bradykinin, and to investigate whether …
OBJECTIVE: To characterize the kinin receptor subtype involved in the relaxation of human isolated corpus cavernosum (HCC) induced by bradyk …
Tissue distribution and kininogen gene expression after acute-phase inflammation.
Chao J, Swain C, Chao S, Xiong W, Chao L. Chao J, et al. Biochim Biophys Acta. 1988 Mar 17;964(3):329-39. doi: 10.1016/0304-4165(88)90033-5. Biochim Biophys Acta. 1988. PMID: 3126819
Ascitic fluids were produced and purified by a bradykinin-agarose affinity column. The monoclonal antibody (IgG1) bound to bradykinin, Lys-bradykinin, Met-Lys-bradykinin, and kininogens in ELISA. Further, this target-directed monoclonal antibody recognized pu …
Ascitic fluids were produced and purified by a bradykinin-agarose affinity column. The monoclonal antibody (IgG1) bound to bradykinin, Lys- …
36 results