Berensmeier Sonja
Forschungszentrum Karlsruhe, Institute for Technical Chemistry, Water Technology and Geotechnology Division, Hermann-v.-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen, Germany.
Appl Microbiol Biotechnol. 2006 Dec;73(3):495-504. doi: 10.1007/s00253-006-0675-0. Epub 2006 Oct 25.
Nucleic acid separation is an increasingly important tool for molecular biology. Before modern technologies could be used, nucleic acid separation had been a time- and work-consuming process based on several extraction and centrifugation steps, often limited by small yields and low purities of the separation products, and not suited for automation and up-scaling. During the last few years, specifically functionalised magnetic particles were developed. Together with an appropriate buffer system, they allow for the quick and efficient purification directly after their extraction from crude cell extracts. Centrifugation steps were avoided. In addition, the new approach provided for an easy automation of the entire process and the isolation of nucleic acids from larger sample volumes. This review describes traditional methods and methods based on magnetic particles for nucleic acid purification. The synthesis of a variety of magnetic particles is presented in more detail. Various suppliers of magnetic particles for nucleic acid separation as well as suppliers offering particle-based kits for a variety of different sample materials are listed. Furthermore, commercially available manual magnetic separators and automated systems for magnetic particle handling and liquid handling are mentioned.
核酸分离是分子生物学中一项日益重要的工具。在现代技术得以应用之前,核酸分离是一个耗时耗力的过程,基于多个提取和离心步骤,分离产物的产量往往较低且纯度不高,还不适合自动化和扩大规模。在过去几年里,开发出了具有特定功能的磁性颗粒。与合适的缓冲系统一起,它们使得从粗细胞提取物中提取后能直接快速高效地纯化。避免了离心步骤。此外,新方法使整个过程易于自动化,并且能够从更大体积的样品中分离核酸。本综述描述了传统方法以及基于磁性颗粒的核酸纯化方法。更详细地介绍了多种磁性颗粒的合成。列出了用于核酸分离的磁性颗粒的各种供应商以及提供适用于多种不同样品材料的基于颗粒的试剂盒的供应商。此外,还提到了市售的手动磁性分离器以及用于磁性颗粒处理和液体处理的自动化系统。