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Study of the reversal effect of NF449 on neuromuscular blockade induced by d-tubocurarine.

机译:NF449对d-微管神经素诱导的神经肌肉阻滞作用的逆转作用研究。

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AIMS: The aim of this study was to investigate the mechanism for the reversal effect of NF449 (a suramin analogue) on the neuromuscular block induced by d-tubocurarine (d-TC). MAIN METHODS: Nerve-stimulated muscle contractions and end-plate potentials were performed in mouse phrenic nerve-diaphragm preparations. Acetylcholine (ACh)-induced muscle contractions were performed in the chick biventer cervicis preparations. Presynaptic nerve terminal waveform recordings were performed in mouse triangularis sterni preparations. KEY FINDINGS: Amongst the suramin analogues in this study, only the NF449 and suramin were able to reverse the blockade effect produced by d-TC on nerve-stimulated muscle contractions. Each of these suramin analogues (NF007, NF023, NF279 and NF449) alone has no significant effect on the amplitude of nerve-stimulated muscle contractions. NF449 and suramin also showed the antagonising effects on the inhibition of end-plate potentials induced by d-TC. Furthermore, pre-treatment with NF449 can antagonise the inhibition of d-TC in ACh-induced contractions of chick biventer cervicis muscle. NF449 produced a greater rightward shift of the dose-response inhibition curve for d-TC than did suramin. Because other purinergic 2X (P2X) receptor antagonists, NF023 and NF279, do not have the reverse effects on the neuromuscular blockade of d-TC, the effect of NF449 seems irrelevant to inhibition of P2X receptors. SIGNIFICANCE: These data suggest that NF449 was able to compete with the binding of d-TC on the nicotinic ACh receptors, and the effect of NF449 was more potent than suramin in reducing the inhibition of d-TC. The structure of NF449 may provide useful information for designing potent antidotes against neuromuscular toxins.
机译:目的:本研究的目的是研究NF449(一种苏拉明类似物)对d-微管尿素(d-TC)诱导的神经肌肉阻滞的逆转作用机制。主要方法:在小鼠神经-肌制剂中进行神经刺激的肌肉收缩和终板电位。乙酰胆碱(ACh)诱导的肌肉收缩是在雏鸡biventer宫颈制剂中进行的。突触前神经末梢的波形记录在小鼠三角胸骨准备中进行。主要发现:在本研究的苏拉明类似物中,只有NF449和苏拉明能够逆转d-TC对神经刺激的肌肉收缩产生的阻滞作用。这些单独的苏拉明类似物(NF007,NF023,NF279和NF449)对神经刺激的肌肉收缩幅度均无明显影响。 NF449和苏拉明也显示出对抑制d-TC诱导的终板电位的拮抗作用。此外,用NF449进行的预处理可以拮抗ACh诱导的雏鸡宫颈双头肌肌肉收缩中d-TC的抑制。与苏拉明相比,NF449对d-TC的剂量反应抑制曲线向右移动更大。由于其他嘌呤能2X(P2X)受体拮抗剂NF023和NF279对d-TC的神经肌肉阻滞没有相反的作用,因此NF449的作用似乎与抑制P2X受体无关。意义:这些数据表明,NF449能够与d-TC在烟碱型ACh受体上的结合竞争,并且NF449在降低d-TC抑制方面比苏拉明更有效。 NF449的结构可为设计针对神经肌肉毒素的有效解毒剂提供有用的信息。

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