Grace Bio-Labs protein microarray tools

Wednesday, 15 October, 2025 | Supplied by: Sapphire Bioscience


Microarray technology allows the collection of increasingly larger amounts of biological data at a high level of detail. To help meet the challenges of microarray-based analysis, Grace Bio-Labs has developed state-of-the-art tools to empower scientists in their quest for discovery and innovation. Protein microarray analysis presents a more complex chemistry than genomic arrays, the company says, largely due to the stringent role of protein structure to maintain biological activity.

Grace Bio-Labs is the original inventor of porous nitrocellulose film and has continued to evolve its formulation and manufacture to deliver high performance for the application at hand. The company’s microarray substrates provide high binding capacity and enable high assay sensitivity, while its reagent kits maximise the output of protein microarrays printed on nitrocellulose film slides and reduce experimental set-up time.

Protein microarray tools include microarray substrates, ONCYTE Film slides, PATH Protein Microarray Slides, microarray reagents, 10X PBST Wash Buffer, GBL Protein Array Printing Buffer, QBlock Protein, microarray blocking buffer, Super G Blocking Buffer, Super G Plus Protein Preservative, ProPlate Microtitre Plates, ProPlate Multi-Array Slide System, and silicone isolators. A wide selection of chambers designed to prevent cross-contamination, promote active mixing and reduce evaporation of reagents is also available.

Online: www.sapphirebioscience.com
Phone: 02 9698 2022
Related Products

Cayman Chemical Cellular Metabolism Screening Library

Cayman Chemical's Cellular Metabolism Screening Library consists of two plates and contains...

Navinci Diagnostics NaveniFlex Cell Red proximity ligation assay kit

Optimised for cell samples, the kit enables fluorescence visualisation of protein–protein...

Lonza TheraPEAK AmpliCell Cytokines and TheraPEAK 293-GT Medium

The products provide researchers and manufacturers with high-performance, scalable and...


  • All content Copyright © 2025 Westwick-Farrow Pty Ltd