Decreased blood pressure response in mice deficient of the alpha(1b)-adrenergic receptor

被引:249
|
作者
Cavalli, A
Lattion, AL
Hummler, E
Nenniger, M
Pedrazzini, T
Aubert, JF
Michel, MC
Yang, M
Lembo, G
Vecchione, C
Mostardini, M
Schmidt, A
Beermann, F
Cotecchia, S
机构
[1] UNIV LAUSANNE,INST PHARMACOL & TOXICOL,CH-1005 LAUSANNE,SWITZERLAND
[2] CHU VAUDOIS,DIV HYPERTENS & VASC MED,CH-1011 LAUSANNE,SWITZERLAND
[3] UNIV ESSEN GESAMTHSCH,DEPT MED,D-45122 ESSEN,GERMANY
[4] IST NEUROMED,I-86077 POZZILLI,ISERNIA,ITALY
[5] SWISS INST EXPT CANC RES ISREC,CH-1066 EPALINGES,SWITZERLAND
关键词
D O I
10.1073/pnas.94.21.11589
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
To investigate the functional role of different alpha(1)-adrenergic receptor (alpha(1)-AR) subtypes in vivo, we have applied a gene targeting approach to create a mouse model lacking the alpha(1b)-AR (alpha(1b)-/-). Reverse transcription-PCR and ligand binding studies were combined to elucidate the expression of the alpha(1)-AR subtypes in various tissues of alpha(1b) +/+ and -/- mice. Total alpha(1)-AR sites were decreased by 98% in liver, 74% in heart, and 42% in cerebral cortex of the alpha(1b) -/- as compared with +/+ mice. Because of the large decrease of alpha(1)-AR in the heart and the loss of the (alpha(1b)-AR mRNA in the aorta of the alpha(1b) -/- mice, the in vivo blood pressure and in vitro aorta contractile responses to alpha(1) agonists were investigated in alpha(1b) +/+ and -/- mice. Our findings provide strong evidence that the (alpha(1b)-AR is a mediator of the blood pressure and the aorta contractile responses induced alpha(1) agonists. This was demonstrated by the finding that the mean arterial blood pressure response to phenylephrine was decreased by 45% in alpha(1b) -/- as compared with +/+ mice. In addition, phenylephrine-induced contractions of aortic rings also were decreased by 25% in alpha(1b) -/- mice. The alpha(1b)-AR knockout mouse model provides a potentially useful tool to elucidate the functional specificity of different alpha(1)-AR subtypes, to better understand the effects of adrenergic drugs, and to investigate the multiple mechanisms involved in the control of blood pressure.
引用
收藏
页码:11589 / 11594
页数:6
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