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Multiple P2Y receptors mediate contraction in guinea pig mesenteric vein.

机译:多个P2Y受体介导豚鼠肠系膜静脉的收缩。

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Vasoconstrictor responses to exogenous adenine and pyrimidine nucleotides were measured in endothelium-denuded segments of guinea pig mesenteric vein and compared with responses in mesenteric artery. The rank order of potency for nucleotides in veins was: 2-MeSADP = 2-MeSATP > UTP > ATPgammaS = alpha,betaMeATP > UDP = ATP > ADP beta,gamma-D-MeATP = beta,gamma-L-MeATP. In contrast 2-MeSADP, UTP, and UDP were inactive in arteries, and the rank order of potency of other nucleotides differed; that is, alpha,betaMeATP > beta, gamma-D-MeATP > beta,gamma-L-MeATP = ATPgammaS = 2-MeSATP > ATP > ADP. In veins, UTP, ATP, and 2-MeSATP were more efficacious contractile agents than alpha,beta MeATP. In addition, the ability to desensitize responses to these nucleotides and inhibit them with various blockers differed. The response to alpha,betaMeATP in veins exhibited rapid desensitization and was inhibited by pyridoxal-phosphate-6-azophenyl-2',4'-disulfonic acid tetrasodium (PPADS) and suramin. The response to 2-MeSATP in veins did not desensitize; nor was it inhibited by prior alpha,betaMeATP desensitization, but it was inhibited by PPADS, suramin, and the selective P2Y(1) receptor antagonist adenosine 3',5'-bisphosphate (ABP, 10-100 microM). Responses to ATP and UTP in veins did not desensitize and were not inhibited by PPADS, suramin, ABP, or alpha, betaMeATP desensitization. In conclusion, our results suggest that venous contraction to a variety of nucleotides is mediated in large part by P2Y receptors including P2Y(1) receptors and an UTP-preferring P2Y receptor. A small component of contraction also appears to be mediated by P2X(1) receptors. This receptor profile differs markedly from that of mesenteric arteries in which P2X(1) receptors predominate.
机译:在豚鼠肠系膜静脉内皮剥除段中测量对外源腺嘌呤和嘧啶核苷酸的血管收缩反应,并将其与肠系膜动脉的反应进行比较。静脉中核苷酸的效价等级顺序为:2-MeSADP = 2-MeSATP> UTP>ATPγS= alpha,betaMeATP> UDP = ATP> ADP beta,γ-D-MeATP= beta,γ-L-MeATP。相比之下,2-MeSADP,UTP和UDP在动脉中没有活性,其他核苷酸的效价等级顺序也不同。即,alpha,betaMeATP> beta,γ-D-MeATP> beta,γ-L-MeATP=ATPγS= 2-MeSATP> ATP> ADP。在静脉中,UTP,ATP和2-MeSATP比α,βMeATP更有效。另外,使对这些核苷酸的反应脱敏并用各种阻断剂抑制它们的能力也有所不同。静脉中对α,βMeATP的反应表现出快速的脱敏作用,并被吡ido醛-磷酸盐-6-偶氮苯基-2',4'-二磺酸四钠(PPADS)和苏拉明抑制。静脉内对2-MeSATP的反应不会降低敏感性。也没有被先前的alpha,betaMeATP脱敏所抑制,但是被PPADS,苏拉明和选择性P2Y(1)受体拮抗剂腺苷3',5'-双磷酸酯(ABP,10-100 microM)所抑制。 PPADS,苏拉明,ABP或α,betaMeATP脱敏不会对静脉中的ATP和UTP产生反应,也不会对其产生抑制作用。总之,我们的结果表明,对多种核苷酸的静脉收缩在很大程度上由P2Y受体介导,包括P2Y(1)受体和UTP优先P2Y受体。收缩的一小部分似乎也由P2X(1)受体介导。该受体曲线与其中P2X(1)受体占主导的肠系膜动脉明显不同。

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