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Modeling of mixing in 96-well microplates observed with fluorescence indicators

机译:用荧光指示剂在96孔微孔板中进行混合建模

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摘要

Mixing in 96-well microplates was studied using soluble pH indicators and a fluorescence pH sensor. Small amounts of alkali were added with the aid of a multichannel pipet, a piston pump, and a piezoelectric actuator. Mixing patterns were observed visually using a video camera. Addition of drops each of about 1 nL with the piezoelectric actuator resulted in umbrella and double-disklike shapes. Convective mixing was mainly observed in the upper part of the well, whereas the lower part was only mixed quickly when using the multichannel pipet and the piston pump with an addition volume of 5 muL or larger. Estimated mixing times were between a few seconds and several minutes. Mixing by liquid dispensing was much more effective than by shaking. A mixing model consisting of 21 elements could describe mixing dynamics observed by the dissolved fluorescence dye and by the optical immobilized pH sensor. This model can be applied for designing pH control in microplates or for design of kinetic experiments with liquid addition.
机译:使用可溶性pH指示剂和荧光pH传感器研究了在96孔微孔板中的混合。借助于多通道移液器,活塞泵和压电致动器添加少量的碱。使用摄像机视觉观察混合模式。用压电致动器添加大约1 nL的液滴,形成伞状和双盘状形状。对流混合主要发生在井的上部,而下部仅在使用添加体积为5μL或更大的多通道移液器和活塞泵时快速混合。估计的混合时间在几秒钟到几分钟之间。通过液体分配的混合比通过摇动更有效。由21个元素组成的混合模型可以描述由溶解的荧光染料和光学固定的pH传感器观察到的混合动力学。该模型可用于设计微孔板中的pH值控制或添加液体的动力学实验。

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