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Is combinatorial chemistry on the right track for drug discovery?

机译:组合化学是否在药物发现的正确轨道上?

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摘要

Critical to the effective implementation of high throughout methods of synthesis is the necessity for a significant supporting level of automation.There are a number of critical issues associated with the successful introduction,and supporting role,of automation of small molecule chemical synthesis,(dearly there are needs for automation to increase drug candidate synthesis throughput.Automation of repetitive and laborious tasks associated with the synthesis process can release skilled chemists to apply their talents to the more challenging investigational aspects of developing new synthetic protocols.This provides continuity in the compound supply pipeline and ensures an optimal use of the automated platform for compound production.The very high fidelity of performing repetitive processes that can be managed through automation also removes some of the limitations and errors associated with more fallible human operators.This can include very difficult tasks associated with tracking data,and general information and inventory management.Taken collectively,these attributes associated with automation can lead to greater efficiencies,throughputs and improved allocation of human resources with concomitant reductions in costs associated with current day and future drug discovery.In our library development/synthesis paradigm,we feel that automation support must be invoked early in the process and that this automation support must continue throughout the project.
机译:有效实施高通量合成方法的关键是要有一个重要的自动化支持水平。成功引入和支持小分子化学合成自动化的工作有很多关键问题,自动化需要增加候选药物的合成通量。与合成过程相关的重复性和繁琐任务的自动化可以释放熟练的化学家的才能,将他们的才能应用于开发新的合成方案的更具挑战性的研究方面。这提供了化合物供应管道的连续性并确保可以最佳地利用自动化平台进行化合物生产。可以通过自动化进行管理的重复过程的极高保真度也消除了与更易犯错误的人工操作员相关的一些限制和错误。追踪数据以及综合信息和库存管理。与自动化相关联的这些属性可以导致更高的效率,吞吐量和更好的人力资源分配,并同时减少与当今和未来药物开发相关的成本。在我们的图书馆开发/合成范例中,我们认为必须在流程的早期就调用自动化支持,并且该自动化支持必须在整个项目中继续进行。

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