首页> 外文期刊>American Journal of Physiology >Interaction between muscarinic receptor subtype signal transduction pathways mediating bladder contraction.
【24h】

Interaction between muscarinic receptor subtype signal transduction pathways mediating bladder contraction.

机译:毒蕈碱性受体亚型信号传导途径之间的相互作用介导膀胱收缩。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

M(3) muscarinic receptors mediate cholinergic-induced contraction in most smooth muscles. However, in the denervated rat bladder, M(2) receptors participate in contraction because M(3)-selective antagonists [para-fluoro-hexahydro-sila-diphenidol (p-F-HHSiD) and 4-DAMP] have low affinities. However, the affinity of the M(2)-selective antagonist methoctramine in the denervated bladder is consistent with M(3) receptor mediating contraction. It is possible that two pathways interact to mediate contraction: one mediated by the M(2) receptor and one by the M(3) receptor. To determine whether an interaction exists, the inhibitory potencies of combinations of methoctramine and p-F-HHSiD for reversing cholinergic contractions were measured. In normal bladders, all combinations gave additive effects. In denervated bladders, synergistic effects were seen with the 10:1 and 1:1 (methoctramine:p-F-HHSiD wt/wt) combinations. After application of the sarcoplasmic reticulum ATPase inhibitor thapsigargin to normal tissue, the 10:1 and 1:1 ratios became synergistic, mimicking denervated tissue. Thus in normal bladders both M(2) and M(3) receptors can induce contraction. In the denervated bladder, the M(2) and the M(3) receptors interact in a facilitatory manner to mediate contraction.
机译:M(3)毒蕈碱受体介导胆碱能诱导的大多数平滑肌收缩。但是,在失神经的大鼠膀胱中,M(2)受体参与了收缩,因为M(3)-选择性拮抗剂[对氟-六氢-硅-联苯二酚(p-F-HHSiD)和4-DAMP]具有较低的亲和力。但是,M(2)选择性拮抗剂甲基辛特拉明在失神经的膀胱中的亲和力与M(3)受体介导的收缩一致。可能有两种途径相互作用来介导收缩:一种是由M(2)受体介导的,另一种是由M(3)受体介导的。为了确定是否存在相互作用,测量了甲辛曲明和p-F-HHSiD组合对逆转胆碱能收缩的抑制能力。在正常膀胱中,所有组合均可产生加和作用。在神经支配的膀胱中,以10:1和1:1(甲基辛特拉明:p-F-HHSiD wt / wt)组合观察到协同作用。将肌浆网ATPase抑制剂thapsigargin应用于正常组织后,10:1和1:1的比例具有协同作用,模仿了神经支配的组织。因此,在正常膀胱中,M(2)和M(3)受体均可诱导收缩。在失神经的膀胱中,M(2)和M(3)受体以促进方式相互作用来介导收缩。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号