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首页> 外文期刊>JALA: Journal of the Association for Laboratory Automation >Single-Pot Solution Phase Synthesis Optimization Using Fully Automated Systems for Combinatorial Screening
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Single-Pot Solution Phase Synthesis Optimization Using Fully Automated Systems for Combinatorial Screening

机译:使用全自动系统进行组合筛选的单锅解决方案相合成优化

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摘要

The optimization of synthesis conditions plays an important role in chemistry and life sciences. A wide variety of reaction parameters should be explored to minimize the use of educts and maximize the yields of desired products in high purity. A fully automated system for combinatorial synthesis has been developed and used for the optimization of synthesis conditions of a multicomponent single-pot reaction. In order to explore optimal reaction conditions for the synthesis of pure endo isomer of 3-(2-bromo-benzoylamino)-cyclohex-4-ene-1,2-dicarboxylic acid diethyl ester, an intermediate in the synthesis route of lycorizidine analogues, several hundred experiments were carried out with varying reaction temperature, times, concentrations, and ratios of educts. In this case study, financial aspects also were considered in order to minimize synthesis costs. The system was integrated using a Zymate XP robot as a system integrator. In addition to a GC/MS and an HPLC system, a multicomponent solid dispenser workbench and a liquid handling system are located within this fully automated system.
机译:合成条件的优化在化学和生命科学中起着重要作用。应该探索各种各样的反应参数,以最大程度地减少离析物的使用并最大程度地提高所需产物的高纯度。已经开发了用于组合合成的全自动系统,并将其用于优化多组分单釜反应的合成条件。为了探索合成3-(2-溴-苯甲酰基氨基)-环己-4-烯-1,2-二羧酸二乙酯的纯内聚异构体的最佳反应条件,该异构体是来克唑烷类似物的合成路线,在不同的反应温度,时间,浓度和离析物比例下进行了数百次实验。在本案例研究中,还考虑了财务方面,以最大程度地降低综合成本。该系统使用Zymate XP机器人作为系统集成商进行了集成。除GC / MS和HPLC系统外,该全自动系统内还设有多组分固体分配器工作台和液体处理系统。

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