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Recent developments in laboratory automation using magnetic particles for genome analysis

机译:使用磁性粒子进行基因组分析的实验室自动化的最新进展

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The majority of research for genome analysis has shifted from nucleic acid sequencing to the biological functional analysis of each gene. Based on past success, it may not be long before genome diagnostics becomes a widespread tool in human, veterinary and botany research fields. Genome analysis involves the processes of nucleic acid purification, amplification, labeling and signal detection (specific reaction, separation and signal counting). Except for the purification of nucleic acids, the other processes cannot be achieved without instruments, resulting in the advancement of automation processes. Since purification of nucleic acids can be done manually, automating this process has been delayed. However, because the purification of nucleic acids using magnetic particles is suitable for automation, its development has also been accelerated. The need for full automation for other processes is not as great because the majority of genome analysis is to identify the nucleic acid sequence and analyze genome expression. However, once useful diagnostic tools are generated, the desire for full automation will significantly increase. In order to develop realistic and practical automation, various technologies developed for each process in genome analysis have to be evaluated and only a few technologies, useful for automation, selected. The other key factor in automation is the development of methods to manage reagents and reaction mixtures precisely without any risks specifically related to genome handling, such as cross-contamination. Methods using magnetic particles, which have been used for the automation of nucleic acid purification and immunoassay, appear to be the most promising way to automate processes used in biological research.
机译:基因组分析的大多数研究已从核酸测序转移到每个基因的生物学功能分析。基于过去的成功,不久之后,基因组诊断将成为人类,兽医和植物学研究领域的一种广泛工具。基因组分析涉及核酸纯化,扩增,标记和信号检测(特异性反应,分离和信号计数)的过程。除了核酸的纯化以外,没有仪器就无法实现其他过程,导致自动化过程的发展。由于核酸的纯化可以手动完成,因此该过程的自动化已被延迟。然而,因为使用磁性颗粒纯化核酸适合自动化,所以其发展也得到了加速。由于大多数基因组分析都是为了鉴定核酸序列并分析基因组表达,因此对其他过程进行全自动化的需求不是很大。但是,一旦生成了有用的诊断工具,对完全自动化的需求就会大大增加。为了发展现实和实用的自动化,必须评估为基因组分析的每个过程开发的各种技术,并且只选择一些对自动化有用的技术。自动化的另一个关键因素是精确控制试剂和反应混合物的方法的开发,而没有与基因组处理特别相关的任何风险,例如交叉污染。使用磁性颗粒的方法已被用于核酸纯化和免疫测定的自动化,似乎是使生物学研究过程自动化的最有希望的方法。

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