首页> 外文会议>ASME International Design Engineering Technical Conferences >DESIGN AND TESTING OF AN AUTOMATED MULTI-CELL NANOINJECTION SYSTEM
【24h】

DESIGN AND TESTING OF AN AUTOMATED MULTI-CELL NANOINJECTION SYSTEM

机译:自动多细胞纳米注射系统的设计与测试

获取原文

摘要

An automated nanoinjection system has been developed and tested for the delivery of propidium iodide into culture cells. Nanoinjection is the process by which molecules are delivered into living cells using a solid needle. Propidium iodide, a dye that fluoresces when bound to nucleic acids, was used as the injection molecule to monitor nanoinjection efficiency. The nanoinjection system uses a programmable microcontroller to manipulate a linear actuator, which presses a silicon lance array into thousands of living culture cells simultaneously. The lances penetrate cell membranes, allowing dye molecules to enter the cell through membrane pores opened by lances. The system was developed to apply the same injection force to each cell sample at the press of a button, eliminating any experimental variability in data due to the operator. Tests were performed at a dye concentration of 0.04 mg/mL for all experiments. Several forces were tested to determine the optimal nanoinjection force needed for maximum dye delivery. We found the optimal force range to be 8.8-14.7 N. The average PI uptake into cells at a force of 8.8 N and 14.7 N is 57.6±7.7% and 60.3±6.6%, respectively. Previous studies with a manual injection force have shown average propidium iodide uptake to be 60.4±18.0%. High cell viability is maintained with the automated nanoinjection system. At all forces applied in this experiment, an average of 78% or greater viability was observed. With the data gathered in this experiment, we conclude that the automated nanoinjection system eliminates much of the uptake efficiency variability inherent to nanoinjections performed with a manual injection force.
机译:已经开发了一种自动纳米注射系统并测试并测试将碘化物丙烷锭剂输送到培养细胞中。纳米射出是使用实心针递送分子在活细胞中的过程。碘化丙锭,用荧光与核酸结合时的染料作为注射分子,以监测纳米注射效率。纳米注射系统使用可编程微控制器来操纵线性致动器,该致动器同时将硅喷枪阵列压入成千上万的生活培养细胞。喷枪穿透细胞膜,允许染料分子通过矛盾打开的膜孔进入细胞。开发系统以在按钮的按钮上向每个电池样品应用相同的喷射力,从而消除了由于操作者引起的数据中的任何实验变异性。对于所有实验,以0.04mg / ml的染料浓度进行试验。测试了几种力以确定最大染料递送所需的最佳纳米注射力。我们发现最佳力范围为8.8-14.7 n。分别为8.8 n和14.7 n以8.8 n和14.7 n的电池的平均pi摄取分别为57.6±7.7%和60.3±6.6%。以前用手动注射力的研究表明,平均碘化物摄取为60.4±18.0%。用自动纳米投影系统保持高电池活力。在本实验中应用的所有力,观察到平均的可生存率为78%或更大的活力。通过在该实验中收集的数据,我们得出结论,自动纳米注射系统消除了用手动注射力进行的纳米射出所固有的大部分摄取效率变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号