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EVE™ HT counting kit

EVE™ HT counting kit

EVE HT counting kit contains the following items: 


- Counting plate (48 channels) x 20 plates

- Mixing well plate (96 wells) x 10 plates

- Trypan blue stain 0.4% (20 mL) x 2 bottles

- Reservoir (5 pcs/pack) x 4 packs




 


EVE™  HT counting kit consists of items necessary for counting cells with EVE™  HT all in one package. 







EVE  HT counting plate has 48 channels of which 48 different samples can be counted at once.
Only 10 μL of sample is required for each channel and yet high accuracy is provided. 



Trypan blue staining solution dyes non-viable cells in blue for viability. 
Trypan blue is an azo dye that is only applied to dead cells to help distinguish live and dead cells.









Using mix well plate, you can thoroughly mix sample and trypan blue solution to dye cells. 
It contains a total of 96 wells which is more than enough for 48 samples. 


Reservoir makes pipetting trypan blue solution much easier especially when using a multi-pipette. 
With wide well size, it allows for faster and more efficient pipetting.










<Related product>

EVE  HT counting kit is specifically designed for EVE   HT automated cell counter.


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FOR RESEARCH USE ONLY.
This product is not approved for diagnostic or therapeutic use.
  • Product name / Cat. No.

    EVE–HT Counting Kit / EVH–020

  • Staining method

    Trypan blue stain

  • Measuring range

    Detectable: 1x10E4–2x10E7 cells/mL & Optimal: 1x10E5–1x10E7 cells/mL

  • Sample loading volume

    10 μL per channel

  • Contents

    Counting plate (48 channels) x 20 plates / Mixing well plate (96 wells) x 10 plates / Trypan blue stain 0.4% (20 mL) x 2 bottles / Reservoir (5 pcs/pack) x 4 packs

ExTransfection™ Protocol Library

ExTransfection™ provides open protocols that make it easy for users to set up and run experiments. Its 24-well optimization method helps users to optimize transfection protocols easily and quickly.

ExTransfection™ also offers a pre-programmed optimization protocol that helps an easy and quick optimization of electrical parameters for both adherent and suspended cells.