This study was performed to clarify whether the endothelin (ET) rec'/> Analysis of two pharmacologically predicted endothelin B receptor subtypes by using the endothelin B receptor gene knockout mouse
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Analysis of two pharmacologically predicted endothelin B receptor subtypes by using the endothelin B receptor gene knockout mouse

机译:使用内皮素B受体基因敲除小鼠分析两种药理学预测的内皮素B受体亚型

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摘要

class="enumerated" style="list-style-type:decimal">This study was performed to clarify whether the endothelin (ET) receptor subtypes mediating two pharmacologically heterogeneous response to ETB receptor agonists in normal mice are the product(s) of a single ETB receptor gene.Vasodilator responses to sarafotoxin S6c (S6c) in the thoracic aorta and contractile responses to ET-1 and IRL1620 in the stomach were examined in tissues from normal and ETB receptor gene knockout mice, in the absence and presence of an ETA receptor antagonist, BQ-123, or an ETA/ETB receptor antagonist, PD142893.In the normal mouse aorta precontracted with phenylephrine, S6c (0.1100 nM) caused concentration-dependent relaxations (pD2=8.4). BQ-123 had no effect on these responses. However, PD142893 almost abolished the relaxations induced by 0.1300 nM S6c.In aortae taken from ETB receptor gene knockout mice, S6c up to 1 μM failed to cause relaxations, confirming that ETB receptors are involved in mediating this response.In normal mouse gastric fundus, 0.1 nM1 μM ET-1, S6c or IRL1620 caused dose-dependent, BQ-123-insensitive contractions, which were much more resistant to PD142893 than S6c-induced relaxations of the aorta. The pD2 values for S6c in the absence and presence of PD142893 (10 μM) were 8.12±0.11 and 7.70±0.11, respectively.In the gastric fundus of the ETB receptor gene knockout mouse, S6c and IRL1620 caused no contractions. ET-1 (0.1 nM1 μM) caused contractions sensitive to both BQ-123 and PD142893, indicating that only ETA receptors mediate ET-1-induced contractions of the knockout mouse gastric fundus.Since both the PD142893-sensitive vasodilator response of the aorta and the PD142893-resistant contractile response of the gastric fundus to S6c were completely absent in the ETB receptor gene knockout mouse, we conclude that the two pharmacologically heterogeneous responses to S6c are mediated by receptors derived from the same ETB receptor gene.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 进行这项研究是为了阐明在正常小鼠中介导对ETB受体激动剂产生两种药理学异质性反应的内皮素(ET)受体亚型是否是单个ETB受体基因的产物。 血管舒张剂对sarafotoxin的响应在不存在和存在ETA受体拮抗剂,BQ-123或ETA受体拮抗剂的情况下,在正常和ETB受体基因敲除小鼠的组织中检查了胸主动脉中的S6c(S6c)和对胃中ET-1和IRL1620的收缩反应。 ETA / ETB受体拮抗剂PD142893。 在与去氧肾上腺素预收缩的正常小鼠主动脉中,S6c(0.1100 nM)引起浓度依赖性舒张(pD2 = 8.4)。 BQ-123对这些反应没有影响。然而,PD142893几乎消除了0.1300 nM S6c引起的松弛。 在取自ETB受体基因敲除小鼠的主动脉中,高达1μμM的S6c未能引起松弛,这证实了ETB受体参与了介导这种反应。 在正常小鼠胃底中,0.1 nM1μMET-1,S6c或IRL1620引起剂量依赖性BQ-123不敏感的收缩,与S6c引起的舒张性舒张相比,其对PD142893的抵抗力强得多。主动脉。在不存在和存在PD142893(10μM)的情况下,S6c的pD2值分别为8.12±0.11和7.70±0.11。 在ETB受体基因敲除小鼠的胃底中,S6c和IRL1620引起没有宫缩。 ET-1(0.1 nM1μM)引起对BQ-123和PD142893敏感的收缩,表明只有ETA受体介导ET-1诱导的敲除小鼠胃底收缩。 由于PD142893-在ETB受体基因敲除小鼠中,完全不存在主动脉的敏感血管舒张反应和胃底对S6c的PD142893耐药性收缩反应,我们得出结论,对S6c的两种药理学异质性反应是由同一ETB受体衍生的受体介导的基因。

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