Applied MicroArrays

Processing Kits


Simple-to-use tools lower setup investment, shorten start-up time, eliminate user-to-user variability, and increase confidence in the results obtained. An integrated Flex Chamber on the CodeLink whole genome bioarrays in combination with easy-to-use Parallel Processing Kits allow parallel processing of up to 48 bioarrays per day with minimal investment, training, and laboratory space. As throughput increases, the system can easily be scaled up.

Bioarray Processing

CodeLink whole genome bioarrays are pre-assembled with a Flex Chamber, forming an integrated hybridization chamber on the slide. The Flex Chamber has several major advantages:

  • allows you loading and viewing of the target, without obstruction, onto the array surface
  • requires only one standard pipette tip and comes with a built-in vent for smooth loading
  • keeps volumes to a minimum

Hybridization occurs overnight for 18-24 hours in an orbital-moving incubator. When coupled with the non-rigid Flex Chamber, a wave-like effect is created for optimal target movement resulting in efficient hybridization.

After hybridization, the Flex Chamber is removed, and after an optimized stringency wash for high specificity, the array surface is exposed to a Cy5-Streptavidin or Alexa-Streptavidin dye conjugate for sensitive signal capture. A set of fixtures, the 12-slide parallel processing kit, is used to maximize repeatability in signal amplification. The parallel processing kit can process 12 whole genome arrays simultaneously and are easily scalable to specific throughput needs.

CodeLink Bioarrays System - easy to set up, easy to use


CodeLink Bioarray Processing Steps

Step 1
Total RNA (0.2-2 µg)
First-strand DNA
Second-strand DNA
Purify dsDNA

 Step 2
In Vitro Transcription reaction
Purify and fragment cRNA

Step 3
Each whole genome CodeLink Bioarray comes with a unique Flex Chamber that allows simple setup, easy loading of target, and keeps volumes to a minimum. The 3-D polyacrylamide aqueous gel slide surface allows greater target access to probes and better sensitivity.

Step 4
Load 10 µg of cRNA

Step 5
Hybridize overnight with shaking

Step 6
Remove Flex Chamber

Step 7
Stringency wash, stain and wash, spin dry

Step 8
Scan
Bioarray analysis