qPCR arrays to accelerate your research with AnyGenes®
For nearly two decades, AnyGenes® has been a trusted partner for researchers, offering high-performance qPCR arrays for biomarker and signaling pathway research :
1,000+ experimentally validated qPCR arrays covering a wide range of cell signaling pathways across multiple species
Optimized primers and reagents for reproducible, precise, and reliable gene expression analysis
Complete transcriptomic solutions from sample lysis to qPCR array (SignArrays®) data analysis
Compatible with challenging samples, including low-input RNA, degraded FFPE, LCM samples, GC-rich sequences, or genes with multiple variants
Integrated data analysis tools to streamline visualization, comparison, and interpretation of results
Rigorous quality control, with all products experimentally validated before shipping
Proven reliability, cited in over 100 peer-reviewed publications worldwide
Use optimized primers for any gene and species, ensuring accurate gene expression analysis. Find your specific validated primer sets in our database at competitive prices
Case studies & practical applications of AnyGenes® qPCR arrays
Discover how AnyGenes® qPCR arrays drive discoveries in real-world research projects:
Nature Communications (2021); Garcia P et al.
Researchers leveraged AnyGenes® qPCR arrays to map genome-wide transcriptomic changes in Cornelia de Lange syndrome. Our arrays enabled accurate gene expression profiling even from rare or limited RNA samples, accelerating molecular insights.
Circulation (2015); Ranchoux B et al.
SignArrays® allowed detailed dissection of endothelial signaling pathways in pulmonary hypertension studies. This provided key mechanistic insights and supported translational research toward potential therapeutic targets.
PLoS One (2024); Pan-Lizcano R et al.
Validated lncRNA qPCR assays from AnyGenes® facilitated precise quantification of long non-coding RNAs in acute myocardial infarction patients, enabling faster biomarker discovery and pathway analysis.
AnyGenes® arrays are experimentally validated, customizable, and optimized for reproducibility, ensuring higher reliability than conventional off-the-shelf kits.