Hanani M
Laboratory of Experimental Surgery, Hadassah University Hospital, Jerusalem, Israel.
J Basic Clin Physiol Pharmacol. 1997;8(1-2):57-71. doi: 10.1515/jbcpp.1997.8.1-2.57.
Ejection of drugs from micropipettes by pressure is widely used for chemical stimulation of cells in electrophysiological experiments, but little is known about the dynamics of the processes involved. Several aspects of the formation of liquid droplets were studied by photographing them under a microscope using brief light flashes. The observations led to the following conclusions: 1. The characteristics of the micropipette tip strongly influence both the amount of liquid and the shape of the droplet. Micropipettes were divided according to their tip diameter. Those with a 3-8 microns diameter tip produce small droplets that remain near the tip; those with a tip diameter of 9-15 microns produce conical droplets that extent some distance from the tip; droplets ejected from micropipettes with tip diameter greater than 15 microns are mushroom-shaped and reach distances several hundred microns from the tip. 2. Back-flow of the bath medium, due to capillary force, diminishes the amount of the drug ejected from the micropipette. This effect is very prominent when brief (< 100 ms) pressure pulses are used, and to overcome it priming of the micropipettes several seconds before use is required. 3. Flow of the bath medium can divert the droplet from the expected trajectory. This point was verified during intracellular recordings of responses to pressure-ejected substance P in myenteric neurons. The recommended parameters for optimal use of pressure ejection are: tip diameter of 10-15 microns, pressure of 80-100 kPa, pulse pressure duration over 100 ms and priming by pressure pulse of 1-2 s duration; liquid column of about 5 cm can minimize back-flow.
在电生理实验中,通过压力从微量移液器中喷射药物被广泛用于对细胞进行化学刺激,但对其中涉及过程的动力学了解甚少。通过使用短暂闪光在显微镜下拍摄液滴,研究了液滴形成的几个方面。观察结果得出以下结论:1. 微量移液器尖端的特性强烈影响液体量和液滴形状。微量移液器根据其尖端直径进行分类。尖端直径为3 - 8微米的产生留在尖端附近的小液滴;尖端直径为9 - 15微米的产生从尖端延伸一段距离的锥形液滴;从尖端直径大于15微米的微量移液器中喷出的液滴呈蘑菇形,能到达距尖端几百微米的距离。2. 由于毛细作用力,浴液介质的回流会减少从微量移液器中喷出的药物量。当使用短暂(<100毫秒)压力脉冲时,这种影响非常显著,为克服此影响,需要在使用前几秒对微量移液器进行预充。3. 浴液介质的流动会使液滴偏离预期轨迹。这一点在对肠肌神经元中压力喷射P物质的反应进行细胞内记录时得到了验证。压力喷射最佳使用的推荐参数为:尖端直径10 - 15微米,压力80 - 100千帕,脉冲压力持续时间超过100毫秒,以及持续1 - 2秒的压力脉冲预充;约5厘米的液柱可使回流最小化。