抗微管蛋白新药r17934对中性粒细胞运动和定向的体外影响。

N H Valerius
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引用次数: 0

摘要

r17934是一种新的合成抗微管药物,与秋水仙碱在同一位点结合微管蛋白。使用改进的可逆Boyden室和提供直接视觉检测细胞方向的梯度室,研究了这种药物与人类中性粒细胞运动和取向的相互作用。r17934浓度低至5 × 10(-6) M时,在梯度室和Boyden室中发现了相同程度的抑制趋化作用,在棋盘实验中,趋化剂的绝对浓度和浓度梯度是不同的。在较高浓度下(10(-5)M) r17934也能抑制Boyden腔的趋化性。较低浓度的r17934 (10(-7) M)可影响中性粒细胞在梯度室中的定向能力。这一发现可能表明,与玻璃或塑料载玻片相比,过滤器形成了更适合微管缺陷细胞定向伪足形成的底物。总之,本研究提供的证据表明,在没有功能微管的情况下,中性粒细胞仍然可以定向和向浓度梯度源方向迁移,但它们这样做的精度较低。r17934抑制趋化运动的发现表明,这种药物可能干扰了将识别信号转化为运动的机制。先前发现秋水仙碱也有这种作用,支持了这个过程可能是微管依赖的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In vitro effect of R 17934, a new drug with antitubulin activity, on neutrophil granulocyte locomotion and orientation.

R 17934 is a new synthetic antimicrotubule drug, which binds to tubulin at the same site as does colchicine. The interaction of this drug with human neutrophil granulocyte locomotion and orientation was examined, using a modified reversible Boyden chamber and a gradient chamber offering a direct visual assay of cell orientation. R 17934 at concentrations as low as 5 x 10(-6) M was found to inhibit chemokinesis to an equal degree in gradient chambers, and in Boyden chambers using checkerboard experiments, in which the absolute concentrations and the concentration gradients of the chemotactic agent were varied. At higher concentrations (10(-5) M) R 17934 also inhibited chemotaxis in Boyden chambers. Much lower concentrations of R 17934 (10(-7) M) were found to affect the ability of neutrophils to orient in gradient chambers. This finding may show that filters form a more suitable substrate for oriented pseudopod formation of microtubule-deficient cells than do glass or plastic slides. In conclusion this study has provided evidence that in the absence of functioning microtubules neutrophils can still orient and migrate directionally towards the source of a concentration gradient, but that they do so less precisely. The finding that R 17934 inhibited chemokinesis suggests that this drug may interfere with the mechanism translating a recognition signal into locomotion. The previous finding that colchicine also had this effect supports the hypothesis that this process may be microtubule-dependent.

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