Suppr超能文献

具有实时监测和反馈控制的单细胞电穿孔阵列

Single-cell electroporation arrays with real-time monitoring and feedback control.

作者信息

Khine Michelle, Ionescu-Zanetti Cristian, Blatz Andrew, Wang Lee-Ping, Lee Luke P

机构信息

School of Engineering, University of California, Merced, CA, USA.

出版信息

Lab Chip. 2007 Apr;7(4):457-62. doi: 10.1039/b614356c. Epub 2007 Mar 7.

Abstract

Rapid well-controlled intracellular delivery of drug compounds, RNA, or DNA into a cell--without permanent damage to the cell--is a pervasive challenge in basic cell biology research, drug discovery, and gene delivery. To address this challenge, we have developed a bench-top system comprised of a control interface, that mates to disposable 96-well-formatted microfluidic devices, enabling the individual manipulation, electroporation and real-time monitoring of each cell in suspension. This is the first demonstrated real-time feedback-controlled electroporation of an array of single-cells. Our computer program automatically detects electroporation events and subsequently releases the electric field, precluding continued field-induced damage of the cell, to allow for membrane resealing. Using this novel set-up, we demonstrate the reliable electroporation of an array (n = 15) of individual cells in suspension, using low applied electric fields (<1 V) and the rapid and localized intracellular delivery of otherwise impermeable compounds (Calcein and Orange Green Dextran). Such multiplexed electrical and optical measurements as a function of time are not attainable with typical electroporation setups. This system, which mounts on an inverted microscope, obviates many issues typically associated with prototypical microfluidic chip setups and, more importantly, offers well-controlled and reproducible parallel pressure and electrical application to individual cells for repeatability.

摘要

在基础细胞生物学研究、药物研发和基因传递中,将药物化合物、RNA或DNA快速且可控地导入细胞内,同时不造成细胞永久性损伤,是一个普遍存在的挑战。为应对这一挑战,我们开发了一种台式系统,该系统由一个控制界面组成,该控制界面与一次性96孔格式的微流控装置配合使用,能够对悬浮液中的每个细胞进行单独操作、电穿孔和实时监测。这是首次展示的对单细胞阵列进行实时反馈控制的电穿孔。我们的计算机程序会自动检测电穿孔事件,随后释放电场,防止电场持续对细胞造成损伤,以便细胞膜重新封闭。使用这种新颖的设置,我们展示了在低施加电场(<1 V)下对悬浮液中的单个细胞阵列(n = 15)进行可靠的电穿孔,并实现了原本无法渗透的化合物(钙黄绿素和橙绿葡聚糖)的快速且局部的细胞内递送。典型的电穿孔设置无法实现这种随时间变化的多重电学和光学测量。该系统安装在倒置显微镜上,避免了许多通常与原型微流控芯片设置相关的问题,更重要的是,它为单个细胞提供了可控且可重复的平行压力和电应用,以确保可重复性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验