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首页> 外文期刊>Toxins >Ex Vivo Smooth Muscle Pharmacological Effects of a Novel Bradykinin-Related Peptide, and Its Analogue, from Chinese Large Odorous Frog, Odorrana livida Skin Secretions
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Ex Vivo Smooth Muscle Pharmacological Effects of a Novel Bradykinin-Related Peptide, and Its Analogue, from Chinese Large Odorous Frog, Odorrana livida Skin Secretions

机译:新型缓激肽相关肽及其类似物的离体平滑肌药理作用,其来自中国大臭蛙,淡水鸟皮的皮肤分泌物

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Bradykinin-related peptides (BRPs) are one of the most extensively studied frog secretions-derived peptide families identified from many amphibian species. The diverse primary structures of BRPs have been proven essential for providing valuable information in understanding basic mechanisms associated with drug modification. Here, we isolated, identified and characterized a dodeca-BRP (RAP-L1, T6-BK), with primary structure RAPLPPGFTPFR, from the skin secretions of Chinese large odorous frogs, Odorrana livida . This novel peptide exhibited a dose-dependent contractile property on rat bladder and rat ileum, and increased the contraction frequency on rat uterus ex vivo smooth muscle preparations; it also showed vasorelaxant activity on rat tail artery smooth muscle. In addition, the analogue RAP-L1, T6, L8-BK completely abolished these effects on selected rat smooth muscle tissues, whilst it showed inhibition effect on bradykinin-induced rat tail artery relaxation. By using canonical antagonist for bradykinin B1 or B2 type receptors, we found that RAP-L1, T6-BK -induced relaxation of the arterial smooth muscle was very likely to be modulated by B2 receptors. The analogue RAP-L1, T6, L8-BK further enhanced the bradykinin inhibitory activity only under the condition of co-administration with HOE140 on rat tail artery, suggesting a synergistic inhibition mechanism by which targeting B2 type receptors.
机译:缓激肽相关肽(BRP)是从许多两栖动物物种中鉴定出来的最广泛研究的青蛙分泌物衍生肽家族之一。 BRP的多种主要结构已被证明对于提供有价值的信息,以了解与药物修饰相关的基本机制至关重要。在这里,我们从中国大型臭蛙Odorrana livida的皮肤分泌物中分离,鉴定并鉴定了具有一级结构RAPLPPGFTPFTPFR的十二碳BRP(RAP-L1,T6-BK)。这种新的肽对大鼠膀胱和回肠具有剂量依赖性的收缩特性,并增加了对大鼠子宫离体平滑肌制剂的收缩频率。它还在大鼠尾动脉平滑肌上显示血管舒张活性。此外,类似物RAP-L1,T6,L8-BK完全消除了对选定大鼠平滑肌组织的这些作用,而对缓激肽诱导的大鼠尾动脉松弛表现出抑制作用。通过使用缓激肽B1或B2型受体的经典拮抗剂,我们发现RAP-L1,T6-BK诱导的动脉平滑肌松弛很可能受B2受体调节。仅在与HOE140共同给药于大鼠尾动脉的条件下,类似物RAP-L1,T6,L8-BK才进一步增强了缓激肽的抑制活性,表明了靶向B2型受体的协同抑制机制。

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