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      A high-throughput AO/PI-based cell concentration and viability detection method using the Celigo image cytometry

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          Abstract

          To ensure cell-based assays are performed properly, both cell concentration and viability have to be determined so that the data can be normalized to generate meaningful and comparable results. Cell-based assays performed in immuno-oncology, toxicology, or bioprocessing research often require measuring of multiple samples and conditions, thus the current automated cell counter that uses single disposable counting slides is not practical for high-throughput screening assays. In the recent years, a plate-based image cytometry system has been developed for high-throughput biomolecular screening assays. In this work, we demonstrate a high-throughput AO/PI-based cell concentration and viability method using the Celigo image cytometer. First, we validate the method by comparing directly to Cellometer automated cell counter. Next, cell concentration dynamic range, viability dynamic range, and consistency are determined. The high-throughput AO/PI method described here allows for 96-well to 384-well plate samples to be analyzed in less than 7 min, which greatly reduces the time required for the single sample-based automated cell counter. In addition, this method can improve the efficiency for high-throughput screening assays, where multiple cell counts and viability measurements are needed prior to performing assays such as flow cytometry, ELISA, or simply plating cells for cell culture.

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          Author and article information

          Contributors
          978-327-5340 , lchan@nexcelom.com
          Journal
          Cytotechnology
          Cytotechnology
          Cytotechnology
          Springer Netherlands (Dordrecht )
          0920-9069
          1573-0778
          3 August 2016
          October 2016
          : 68
          : 5
          : 2015-2025
          Affiliations
          Department of Technology R&D, Nexcelom Bioscience LLC, 360 Merrimack St. Building 9, Lawrence, MA 01843 USA
          Article
          PMC5023569 PMC5023569 5023569 15
          10.1007/s10616-016-0015-x
          5023569
          27488883
          b6e635a3-8049-4eeb-9495-f2f793d6a905
          © Springer Science+Business Media Dordrecht 2016
          History
          : 19 April 2016
          : 25 July 2016
          Categories
          Original Article
          Custom metadata
          © Springer Science+Business Media Dordrecht 2016

          Image cytometry,High-throughput,Screening assay,Viability,Concentration,Acridine orange,Propidium iodide,Celigo

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