A 2ND GENERATION OF CENTRALLY ACTING ANTIHYPERTENSIVE AGENTS ACT ON PUTATIVE I(1)-IMIDAZOLINE RECEPTORS

被引:190
作者
ERNSBERGER, PR
WESTBROOKS, KL
CHRISTEN, MO
SCHAFER, SG
机构
[1] CASE WESTERN RESERVE UNIV, SCH MED, DEPT NEUROSCI, CLEVELAND, OH 44106 USA
[2] LABS THERAPEUT MODERNE SA, DEPT RES & DEV, SURESNES, FRANCE
[3] SOLVAY PHARMA DEUTSCHLAND GMBH, CLIN RES & DEV, HANNOVER, GERMANY
关键词
ADRENAL MEDULLA; BLOOD PRESSURE; CARDIOVASCULAR REGULATION; H-3]CLONIDINE; HYPERTENSION; IMIDAZOLES; IMIDAZOLINE-BINDING SITE; I-125]PARA-IODOCLONIDINE; MEDULLA OBLONGATA; MOXONIDINE; RADIOLIGAND BINDING;
D O I
10.1097/00005344-199220004-00002
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Both the hypotension and the sedation elicited by centrally acting antihypertensive agents traditionally are ascribed to activation of alpha2-adrenergic receptors. However, second-generation centrally acting antihypertensive agents such as moxonidine and rilmenidine are less sedating but retain antihypertensive efficacy. The vasodepressor action of clonidine within its brainstem site of action in the ventrolateral medulla has been linked to a novel receptor that recognizes imidazoles and related compounds. We sought to characterize the interactions of moxonidine with these putative I1-imidazoline receptors. Moxonidine showed 40- to 70-fold selectivity for I1-imidazoline over alpha2-sites in the ventrolateral medulla, as shown by nonlinear curve-fitting and by masking studies using epinephrine and imidazole-4-acetic acid to block alpha2-receptors and I1-imidazoline sites, respectively. In the rat renal medulla, moxonidine showed greater than 600-fold selectivity for renal imidazoline sites relative to the alpha2B-adrenergic subtype. The high affinity of moxonidine for I1-imidazoline binding sites was confirmed by using membranes prepared from bovine adrenomedullary chromaffin cells, which lack alpha2-adrenergic receptors. In comparison with rilmenidine. another second-generation agent, moxonidine, showed higher affinity at I1-imidazoline receptors and higher selectivity relative to alpha2-adrenergic receptors. Binding studies using [H-3]moxonidine support the conclusion that moxonidine is a selective high-affinity ligand for the putative I1-imidazoline receptor. Moxonidine exhibits a unique combination of high affinity and selectivity toward the I1-imidazoline receptor and may be a useful pharmacological probe for further studies of imidazole receptor function as well as a promising new therapeutic agent.
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页码:S1 / S10
页数:10
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