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Further development of a robust workup process for solution-phase high-throughput library synthesis to address environmental and sample tracking issues

机译:进一步开发用于解决方案阶段高通量库合成的强大处理流程,以解决环境和样品跟踪问题

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During further improvement of a high-throughput, solution-phase synthesis system, new workup tools and apparatus for parallel liquid-liquid extraction and evaporation have been developed. A combination of in-house design and collaboration with external manufacturers has been used to address (1) environmental issues concerning solvent emissions and ( 2) sample tracking errors arising from manual intervention. A parallel liquid-liquid extraction unit, containing miniature high-speed magnetic stirrers for efficient mixing of organic and aqueous phases, has been developed for use on a multichannel liquid handler. Separation of the phases is achieved by dispensing them into a newly patented filter tube containing a vertical hydrophobic porous membrane, which allows only the organic phase to pass into collection vials positioned below. The vertical positioning of the membrane overcomes the hitherto dependence on the use of heavier-than-water, bottom-phase, organic solvents such as dichloromethane, which are restricted due to environmental concerns. Both small (6-mL) and large (60-mL) filter tubes were developed for parallel phase separation in library and template synthesis, respectively. In addition, an apparatus for parallel solvent evaporation was developed to (1) remove solvent from the above samples with highly efficient recovery and (2) avoid the movement of individual samples between their collection on a liquid handler and registration to prevent sample identification errors. The apparatus uses a diaphragm pump to achieve a dynamic circulating closed system with a heating block for the rack of 96 sample vials and an efficient condenser to trap the solvents. Solvent recovery is typically > 98%, and convenient operation and monitoring has made the apparatus the first choice for removal of volatile solvents.
机译:在进一步改进高通量溶液相合成系统的过程中,开发了用于并行液-液萃取和蒸发的新的后处理工具和设备。内部设计与与外部制造商的合作相结合,已用于解决(1)与溶剂排放有关的环境问题,以及(2)由手动干预引起的样品跟踪错误。已经开发出一种并联液-液萃取装置,该装置包含用于高效混合有机相和水相的微型高速磁力搅拌器,可用于多通道液体处理器。通过将相分配到一个新的专利过滤管中进行分离,该过滤管包含垂直疏水性多孔膜,该过滤管仅允许有机相进入下面的收集瓶中。膜的垂直定位克服了迄今为止对使用比水重的,底部相的有机溶剂(例如二氯甲烷)的依赖性,而这种依赖于环境的考虑而受到限制。分别开发了小型(6-mL)和大型(60mL)过滤管,用于库和模板合成中的平行相分离。另外,开发了一种用于平行溶剂蒸发的设备,以(1)从上述样品中去除溶剂并进行高效回收;(2)避免单个样品在液体处理器上收集和定位之间的移动,以防止样品识别错误。该设备使用隔膜泵来实现动态循环封闭系统,该系统带有用于放置96个样品瓶的加热块和用于捕集溶剂的高效冷凝器。溶剂回收率通常> 98%,便捷的操作和监控使该设备成为去除挥发性溶剂的首选。

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