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一种通用的压电驱动超声细胞微注射系统。

A universal piezo-driven ultrasonic cell microinjection system.

机构信息

Department of Mechanical and Industrial Engineering, University of Toronto, Toronto, Ontario, Canada.

出版信息

Biomed Microdevices. 2011 Aug;13(4):743-52. doi: 10.1007/s10544-011-9544-4.

Abstract

Over the past decade, the rapid development of biotechnologies such as gene injection, in-vitro fertilization, intracytoplasmic sperm injection (ICSI) and drug development have led to great demand for highly automated, high precision equipment for microinjection. Recently a new cell injection technology using piezo-driven pipettes with a very small mercury column was proposed and successfully applied in ICSI to a variety of mammal species. Although this technique significantly improves the survival rates of the ICSI process, shortcomings due to the toxicity of mercury and damage to the cell membrane due to large lateral tip oscillations of the injector pipette may limit its application. In this paper, a new cell injection system for automatic batch injection of suspended cells is developed. A new design of the piezo-driven cell injector is proposed for automated suspended cell injection. This new piezo-driven cell injector design relocates the piezo oscillation actuator to the injector pipette which eliminates the vibration effect on other parts of the micromanipulator. A small piezo stack is sufficient to perform the cell injection process. Harmful lateral tip oscillations of the injector pipette are reduced substantially without the use of a mercury column. Furthermore, ultrasonic vibration micro-dissection (UVM) theory is utilized to analyze the piezo-driven cell injection process, and the source of the lateral oscillations of the injector pipette is investigated. From preliminary experiments of cell injection of a large number of zebrafish embryos (n = 200), the injector pipette can easily pierce through the cell membrane at a low injection speed and almost no deformation of the cell wall, and with a high success rate(96%) and survival rate(80.7%) This new injection approach shows good potential for precision injection with less damage to the injected cells.

摘要

在过去的十年中,基因注射、体外受精、胞质内精子注射(ICSI)和药物开发等生物技术的快速发展,导致对高度自动化、高精度的微注射设备的需求大增。最近,提出了一种新的细胞注射技术,使用带有非常小汞柱的压电驱动管,成功应用于多种哺乳动物的 ICSI。虽然这项技术显著提高了 ICSI 过程的存活率,但由于汞的毒性和注射器管的大侧向尖端振荡对细胞膜造成的损伤,可能限制了其应用。在本文中,开发了一种用于自动批量悬浮细胞注射的新细胞注射系统。提出了一种新的压电驱动细胞注射器设计,用于自动化悬浮细胞注射。这种新的压电驱动细胞注射器设计将压电振子的驱动机构移到了注射器管上,从而消除了微操作器其他部分的振动效应。一个小的压电堆叠就足以完成细胞注射过程。没有使用汞柱,大大减少了注射器管的有害侧向尖端振荡。此外,利用超声振动微切割(UVM)理论分析了压电驱动细胞注射过程,并研究了注射器管侧向振荡的来源。通过对大量斑马鱼胚胎(n=200)进行细胞注射的初步实验,注射器管可以在低注射速度下轻松刺穿细胞膜,几乎没有细胞壁变形,成功率(96%)和存活率(80.7%)都很高。这种新的注射方法在对注入细胞的损伤较小的情况下,显示出良好的精确注射潜力。

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