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Thermal Inkjet System to Enable Picoliter Dispense of Pharmaceutical Compounds

机译:热喷墨系统可实现药用化合物的皮升分配

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A system designed to dispense small-molecule compounds dissolved in Dimethyl Sulfoxide (DMSO) into ANSI-standard wellplates has been developed by Hewlett Packard (HP). This system, based on HP's Scalable Printing Technology (SPT), includes a disposable TIJ (thermal Inkjet) dispensehead cassette designed specifically for the jetting of DMSO. Each cassette uses open 7μL reservoirs that allow a researcher to load fluid directly into the dispenseheads. The system also includes an instrument that drives the dispenseheads and moves wellplates below the fixed cassette. The system finally includes software designed to specify the amount of fluid dispensed into each well, rendering complicated experiments to be simple to both design and execute. Picoliter-dispense technology is particularly suited for the creation of direct compound titrations in well plates commonly used for dose-response experiments. Advantages over traditional serial dilution techniques include a reduction of carry over and accumulated error, an improvement in precision, and a reduction in compound usage. Additionally, the HP system enables a simpler workflow and makes finely-spaced dosages practical. This paper describes key features of the HP system and performance data from pharmaceutical beta sites. It also describes the advantages of a TIJ-based compound-dispensing system relative to existing pipette-based or PIJ (piezo inkjet)-based systems. Finally, it describes some of the advantages of using a non-contact Digital Dispenser in this application.
机译:惠普(HP)已开发出一种设计用于将溶于二甲基亚砜(DMSO)的小分子化合物分配到ANSI标准井板上的系统。该系统基于惠普的可扩展打印技术(SPT),包括专门设计用于DMSO喷射的一次性TIJ(热喷墨)分配头盒。每个盒带使用开放的7μL储液器,使研究人员可以将流体直接加载到分配头中。该系统还包括一台仪器,该仪器驱动分配头并将孔板移至固定盒下方。该系统最后包括设计用于指定分配到每个孔中的流体量的软件,从而使复杂的实验变得既易于设计又易于执行。皮升分配技术特别适合在通常用于剂量反应实验的孔板中进行直接化合物滴定。与传统的系列稀释技术相比,优点包括减少残留和累积误差,提高精度以及减少化合物的使用。此外,HP系统使工作流程更简单,使小剂量剂量变得实用。本文介绍了HP系统的关键功能以及来自药物测试版站点的性能数据。它还描述了相对于现有的基于移液器或基于PIJ(压电喷墨)的系统,基于TIJ的化合物分配系统的优势。最后,它描述了在此应用程序中使用非接触式数字点胶机的一些优点。

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