Schober A, Günther R, Schwienhorst A, Döring M, Lindemann B F
Max-Planck-Institut für Biophysikalische Chemie, FRG.
Biotechniques. 1993 Aug;15(2):324-9.
Molecular biology techniques require the accurate pipetting of buffers and solutions with volumes in the microliter range. Traditionally, hand-held pipetting devices are used to fulfill these requirements, but many laboratories have also introduced robotic workstations for the handling of liquids. Piston-operated pumps are commonly used in manually as well as automatically operated pipettors. These devices cannot meet the demands for extremely accurate pipetting of very small volumes at the high speed that would be necessary for certain applications (e.g., in sequencing projects with high throughput). In this paper we describe a technique for the accurate microdispensation of biochemically relevant solutions and suspensions with the aid of a piezoelectric transducer. It is suitable for liquids of a viscosity between 0.5 and 500 milliPascals. The obtainable drop sizes range from 5 picoliters to a few nanoliters with up to 10,000 drops per second. Liquids can be dispensed in single or accumulated drops to handle a wide volume range. The system proved to be excellently suitable for the handling of biological samples. It did not show any detectable negative impact on the biological function of dissolved or suspended molecules or particles.
分子生物学技术需要精确移取微升量级的缓冲液和溶液。传统上,使用手持式移液设备来满足这些要求,但许多实验室也引入了用于液体处理的机器人工作站。活塞式泵通常用于手动和自动操作的移液器中。这些设备无法满足某些应用(例如高通量测序项目)所需的在高速下极其精确地移取非常小体积液体的要求。在本文中,我们描述了一种借助压电换能器精确微量分配生物化学相关溶液和悬浮液的技术。它适用于粘度在0.5至500毫帕斯卡之间的液体。可获得的液滴大小范围从5皮升至几纳升,每秒可达10,000滴。液体可以以单滴或累积滴的形式进行分配,以处理广泛的体积范围。该系统被证明非常适合处理生物样品。它对溶解或悬浮的分子或颗粒的生物学功能没有显示出任何可检测到的负面影响。