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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Suramin inhibits the toxic effects of presynaptic neurotoxins at the mouse motor nerve terminals.
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Suramin inhibits the toxic effects of presynaptic neurotoxins at the mouse motor nerve terminals.

机译:苏拉明抑制小鼠运动神经末梢的突触前神经毒素的毒性作用。

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摘要

Clinically available chemical antagonists of snake neurotoxins still await to be identified. In this study, we demonstrate that an anti-trypanosomiasis agent, suramin, is an effective inhibitor of beta-bungarotoxin isolated from the venom of Formosan Krait snake. Following intraperitoneal injection (12 ng/g) of beta-bungarotoxin in mice, the time to paralysis (loss a limb withdrawal reflex, 21. 8+/-3.4 h, n=4) was significantly prolonged after intravenous injection (16 microg/g) of suramin (35.9+/-4.0 h, n=4, P<0.05). The mechanism of this inhibitory effect of suramin was analyzed at the mouse nerve terminals. beta-Bungarotoxin (1 microg/ml) produces an irreversible blocking effect of nerve-evoked muscle contractions of mouse phrenic nerve-diaphragm (blocking time 135+/-6 min, n=6). Pretreatment with suramin (0.3 mM) significantly prolonged the blocking time by three-fold. This selective inhibitory effect of suramin was further confirmed when suramin was shown to delay the neuromuscular blocking effect of another presynaptic neurotoxin, crotoxin (from American rattlesnake venom), but not that of the postsynaptic neurotoxin, alpha-bungarotoxin. Furthermore, suramin inhibited beta-bungarotoxin in blocking transmitter release as revealed by prolonging the time to abolish the end-plate potential amplitude (with suramin, 391+/-8 min; without treatment, 141+/-5 min). K(+) current was measured in the mouse triangularis sterni preparation; suramin (0.3 mM) had no significant effect on beta-bungarotoxin in inhibiting K(+) current (77+/-3% of control; with suramin 75+/-3% of control, respectively). These findings clearly show that suramin is an inhibitor of presynaptic neurotoxins, mediated by interrupting the toxins in blocking the releasing mechanism of transmitter at the motor nerve terminals. The implication of these findings is that suramin and related compounds can become useful agents in management of snakebites.
机译:蛇神经毒素的临床可用化学拮抗剂仍有待确定。在这项研究中,我们证明了一种抗锥虫病药物苏拉明是一种有效的β-真菌毒素的抑制剂,该毒素是从台湾白mos蛇毒中分离出来的。小鼠腹膜内注射(12 ng / g)β-真菌毒素后,静脉内注射(16 microg / g)后,麻痹时间(肢体退缩反射消失,21。8+/- 3.4 h,n = 4)明显延长。 g)苏拉明(35.9 +/- 4.0 h,n = 4,P <0.05)。在小鼠神经末梢分析了苏拉明这种抑制作用的机制。 β-真菌毒素(1微克/毫升)对小鼠神经-肌的神经诱发的肌肉收缩产生不可逆的阻断作用(阻断时间135 +/- 6分钟,n = 6)。苏拉明(0.3 mM)预处理可将阻断时间显着延长三倍。当显示出苏拉明可延迟另一种突触前神经毒素crotoxin(来自美国响尾蛇毒液)而不是突触后神经毒素α-邦加鲁毒素的神经肌肉阻滞作用时,进一步证实了苏拉明的这种选择性抑制作用。此外,苏拉明通过延长消除终板电位幅度的时间(苏拉明为391 +/- 8分钟;未经处理为141 +/- 5分钟)来揭示,它在阻断递质释放中抑制了β-真菌毒素的释放。在小鼠三角胸骨制备物中测量K(+)电流;苏拉明(0.3 mM)在抑制K(+)电流方面对β-邦加罗毒素没有显着影响(对照为77 +/- 3%;苏拉明分别为对照的75 +/- 3%)。这些发现清楚地表明,苏拉明是突触前神经毒素的抑制剂,其通过阻断毒素来阻止突触前神经毒素在运动神经末梢的递质释放机制。这些发现的暗示是,苏拉明和相关化合物可以成为治疗蛇咬伤的有用药物。

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