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在微流控芯片上结合静电力通过流体静压进行注射。

Injection by hydrostatic pressure in conjunction with electrokinetic force on a microfluidic chip.

作者信息

Gai Hongwei, Yu Linfen, Dai Zhongpeng, Ma Yinfa, Lin Bingcheng

机构信息

Dalian Institute of Chemical Physics, CAS, Dalian, PR China.

出版信息

Electrophoresis. 2004 Jun;25(12):1888-94. doi: 10.1002/elps.200305835.

Abstract

A simple method was developed for injecting a sample on a cross-form microfluidic chip by means of hydrostatic pressure combined with electrokinetic forces. The hydrostatic pressure was generated simply by adjusting the liquid level in different reservoirs without any additional driven equipment such as a pump. Two dispensing strategies using a floating injection and a gated injection, coupled with hydrostatic pressure loading, were tested. The fluorescence observation verified the feasibility of hydrostatic pressure loading in the separation of a mixture of fluorescein sodium salt and fluorescein isothiocyanate. This method was proved to be effective in leading cells to a separation channel for single cell analysis.

摘要

开发了一种简单的方法,通过静水压力与电动驱动力相结合,将样品注入十字形微流控芯片中。静水压力只需通过调节不同储液器中的液位即可产生,无需任何额外的驱动设备,如泵。测试了两种使用浮动注射和门控注射的分配策略,并结合静水压力加载。荧光观察验证了静水压力加载在分离荧光素钠盐和异硫氰酸荧光素混合物中的可行性。该方法被证明在引导细胞进入分离通道进行单细胞分析方面是有效的。

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