The Copper (I) Chelator Neocuproine Inhibits Mouse Bladder Function, but not the Copper (II) Chelator Cuprizone

Nadire Eser, H. S. Büyüknacar, E. Kumcu, C. Göçmen
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Abstract

The aim of this study was to investigate the effect of neocuproine (NC), a selective Cu(I) chelator, on the spontaneous contractions (SC) and basal tension (BT) in isolated mouse bladder tissues. The spontaneous contractions and basal tension in the isolated bladder strips were recorded to evaluate the amplitude and frequency parameters. NC (100 μM) caused a significant inhibition on spontaneous contractions (SC) in the isolated mouse bladder. We also evaluated the effects of cuprizone, a selective Cu(II)-chelator, and various selective or nonselective purinoceptor antagonists on the SC and also on the basal tension (BT). Of them, a non-selective purinergic antagonist suramin, a P2X receptor antagonist PPADS, a P2X3 antagonist NF 110, a P2 receptor activator ATP or a P2Y1 antagonist MRS 2179 significantly reversed NC-induced inhibition on the SC whereas cuprizone was found ineffective. The results showed that both P2X and P2Y receptors are playing role in the inhibitory effect of NC on the mouse bladder function. Ca2+ addition to the organ bath medium also dose-dependently reversed the NC-induced inhibition suggesting the role of myogenic mechanism. These findings suggest that intracellular calcium reduction, purinergic pathway and Cu(I) but not Cu(II) may have an important role in the inhibitory activity of NC on mouse bladder function.
铜(I)螯合剂新根碱对小鼠膀胱功能有抑制作用,而铜(II)螯合剂Cuprizone无抑制作用
本研究旨在探讨选择性Cu(I)螯合剂新根碱(NC)对离体小鼠膀胱组织自发收缩(SC)和基础张力(BT)的影响。记录离体膀胱条的自发收缩和基础张力,评价其振幅和频率参数。NC (100 μM)对离体小鼠膀胱自发收缩(SC)有明显抑制作用。我们还评估了铜酮(一种选择性Cu(II)螯合剂)和各种选择性或非选择性嘌呤受体拮抗剂对SC和基底张力(BT)的影响。其中,非选择性嘌呤能拮抗剂舒拉明、P2X受体拮抗剂PPADS、P2X3拮抗剂NF 110、P2受体激活剂ATP或P2Y1拮抗剂MRS 2179可显著逆转nc诱导的SC抑制,而铜普利酮则无效。结果表明,P2X和P2Y受体均参与了NC对小鼠膀胱功能的抑制作用。Ca2+加入到器官浴培养基中也可以剂量依赖性地逆转nc诱导的抑制,这表明了肌生成机制的作用。上述结果提示,细胞内钙还原、嘌呤能通路和Cu(I)而非Cu(II)可能在NC对小鼠膀胱功能的抑制活性中起重要作用。
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