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Microgram-scale testing of reaction conditions in solution using nanoliter plugs in microfluidics with detection by MALDI-MS

机译:使用微流控中的纳升塞子通过MALDI-MS检测的溶液中反应条件的微克级测试

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摘要

This paper describes a microfluidic system to screen and optimize organic reaction conditions on a submicrogram scale. The system uses discrete droplets (plugs) as microreactors separated and transported by a continuous phase of a fluorinated carrier fluid. Previously, we demonstrated the use of a microfabricated PDMS plug-based microfluidic system to perform assays and crystallization experiments in aqueous solutions with optical detection. Here, we developed an approach that does not require microfabrication of microfluidic devices, is applicable to synthetic reactions in organic solvents, and uses detection by MALDI-MS. As a demonstration, conditions for selective deacetylation of ouabain hexaacetate were tested, and the optimum conditions for mono-, bis-, or trisdeacetylation have been identified. These conditions were validated by scale-up reactions and isolating these potentially neurotoxic products. Mono- and bisdeacetylated products are unstable intermediates in the deacetylation and were isolated for the first time. This system enables no-loss handling of submicroliter volumes containing a few micrograms of a compound of interest. It could become valuable for investigating or optimizing reactions of precious substrates (e.g., products of long synthetic sequences and natural products that can be isolated only in small quantities).
机译:本文介绍了一种微流控系统,用于在亚微克规模上筛选和优化有机反应条件。该系统使用离散液滴(塞子)作为微反应器,并通过连续相的氟化载液进行分离和运输。以前,我们演示了使用微细的PDMS塞式微流控系统通过光学检测在水溶液中进行测定和结晶实验。在这里,我们开发了一种无需微流控装置微加工的方法,该方法适用于有机溶剂中的合成反应,并使用MALDI-MS检测。作为演示,测试了哇巴因六乙酸盐选择性脱乙酰的条件,并确定了单,双或三脱乙酰的最佳条件。这些条件通过放大反应并分离出这些潜在的神经毒性产物得到了验证。单-和双-脱乙酰基产物是脱乙酰基中的不稳定中间体,并且是首次分离。该系统能够无损处理含有几微克目标化合物的亚微升体积。对于研究或优化珍贵底物的反应(例如长合成序列的产物和只能少量分离的天然产物),它可能会变得有价值。

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