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MARS:将小分子生物分析样品制备的自动化带入新领域。

MARS: bringing the automation of small-molecule bioanalytical sample preparations to a new frontier.

作者信息

Li Ming, Chou Judy, Jing Jing, Xu Hui, Costa Aldo, Caputo Robin, Mikkilineni Rajesh, Flannelly-King Shane, Rohde Ellen, Gan Lawrence, Klunk Lewis, Yang Liyu

机构信息

Biogen Idec, 14 Cambridge Center, Cambridge, MA 02142, USA.

出版信息

Bioanalysis. 2012 Jun;4(11):1311-26. doi: 10.4155/bio.12.77.

Abstract

BACKGROUND

In recent years, there has been a growing interest in automating small-molecule bioanalytical sample preparations specifically using the Hamilton MicroLab(®) STAR liquid-handling platform. In the most extensive work reported thus far, multiple small-molecule sample preparation assay types (protein precipitation extraction, SPE and liquid-liquid extraction) have been integrated into a suite that is composed of graphical user interfaces and Hamilton scripts. Using that suite, bioanalytical scientists have been able to automate various sample preparation methods to a great extent. However, there are still areas that could benefit from further automation, specifically, the full integration of analytical standard and QC sample preparation with study sample extraction in one continuous run, real-time 2D barcode scanning on the Hamilton deck and direct Laboratory Information Management System database connectivity.

RESULTS

We developed a new small-molecule sample-preparation automation system that improves in all of the aforementioned areas.

CONCLUSION

The improved system presented herein further streamlines the bioanalytical workflow, simplifies batch run design, reduces analyst intervention and eliminates sample-handling error.

摘要

背景

近年来,人们对使用Hamilton MicroLab(®) STAR液体处理平台实现小分子生物分析样品制备的自动化越来越感兴趣。在迄今为止报道的最全面的工作中,多种小分子样品制备分析类型(蛋白质沉淀萃取、固相萃取和液液萃取)已被整合到一个由图形用户界面和Hamilton脚本组成的套件中。利用该套件,生物分析科学家已能够在很大程度上实现各种样品制备方法的自动化。然而,仍有一些领域可从进一步的自动化中受益,具体而言,分析标准品和质控样品制备与研究样品萃取在一次连续运行中的完全整合、在Hamilton平台上进行实时二维条形码扫描以及与实验室信息管理系统数据库的直接连接。

结果

我们开发了一种新的小分子样品制备自动化系统,在上述所有领域均有改进。

结论

本文介绍的改进系统进一步简化了生物分析工作流程,简化了批次运行设计,减少了分析人员的干预并消除了样品处理误差。

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