Literature DB >> 26341100

Technologies That Enable Accurate and Precise Nano- to Milliliter-Scale Liquid Dispensing of Aqueous Reagents Using Acoustic Droplet Ejection.

Eric K Sackmann1, Lars Majlof2, Annett Hahn-Windgassen2, Brent Eaton2, Temo Bandzava2, Jay Daulton2, Arne Vandenbroucke2, Matthew Mock2, Richard G Stearns2, Stephen Hinkson2, Sammy S Datwani2.   

Abstract

Acoustic liquid handling uses high-frequency acoustic signals that are focused on the surface of a fluid to eject droplets with high accuracy and precision for various life science applications. Here we present a multiwell source plate, the Echo Qualified Reservoir (ER), which can acoustically transfer over 2.5 mL of fluid per well in 25-nL increments using an Echo 525 liquid handler. We demonstrate two Labcyte technologies-Dynamic Fluid Analysis (DFA) methods and a high-voltage (HV) grid-that are required to maintain accurate and precise fluid transfers from the ER at this volume scale. DFA methods were employed to dynamically assess the energy requirements of the fluid and adjust the acoustic ejection parameters to maintain a constant velocity droplet. Furthermore, we demonstrate that the HV grid enhances droplet velocity and coalescence at the destination plate. These technologies enabled 5-µL per destination well transfers to a 384-well plate, with accuracy and precision values better than 4%. Last, we used the ER and Echo 525 liquid handler to perform a quantitative polymerase chain reaction (qPCR) assay to demonstrate an application that benefits from the flexibility and larger volume capabilities of the ER.
© 2015 Society for Laboratory Automation and Screening.

Entities:  

Keywords:  acoustic droplet ejection; aqueous; droplet bounce; droplet velocity; reservoir

Mesh:

Substances:

Year:  2015        PMID: 26341100     DOI: 10.1177/2211068215602191

Source DB:  PubMed          Journal:  J Lab Autom        ISSN: 2211-0682


  6 in total

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  6 in total

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