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通过手持电晕装置对哺乳动物细胞进行片上裂解。

On-chip lysis of mammalian cells through a handheld corona device.

机构信息

Department of Chemical Engineering, Queen's University, Kingston, ON K7L 3N6, Canada.

出版信息

Lab Chip. 2015 Jul 21;15(14):2990-7. doi: 10.1039/c5lc00552c.

Abstract

On-chip lysis is required in many lab-on-chip applications involving cell studies. In these applications, the complete disruption of the cellular membrane and a high lysis yield is essential. Here, we present a novel approach to lyse cells on-chip through the application of electric discharges from a corona handheld device. The method only requires a microfluidic chip and a low-cost corona device. We demonstrate the effective lysis of BHK and eGFP HCT 116 cells in the sub-second time range using an embedded microelectrode. We also show cell lysis of non-adherent K562 leukemia cells without the use of an electrode in the chip. Cell lysis has been assessed through the use of bright-field microscopy, high-speed imaging and cell-viability fluorescence probes. The experimental results show effective cell lysis without any bubble formation or significant heating. Due to the simplicity of both the components involved and the lysis procedure, this technique offers an inexpensive lysis option with the potential for integration into lab-on-a-chip devices.

摘要

在涉及细胞研究的许多芯片实验室应用中,需要在芯片上进行裂解。在这些应用中,完全破坏细胞膜并获得高裂解产率是至关重要的。在这里,我们提出了一种通过使用手持式电晕放电来在芯片上裂解细胞的新方法。该方法仅需要微流控芯片和低成本的电晕设备。我们使用嵌入式微电极证明了 BHK 和 eGFP HCT 116 细胞在亚秒时间范围内的有效裂解。我们还展示了在没有使用芯片内电极的情况下,对非贴壁 K562 白血病细胞的裂解。通过使用明场显微镜、高速成像和细胞活力荧光探针评估了细胞裂解。实验结果表明,在没有任何气泡形成或明显加热的情况下实现了有效的细胞裂解。由于所涉及的组件和裂解过程都很简单,因此该技术提供了一种廉价的裂解选择,具有集成到芯片实验室设备中的潜力。

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