EARLY ACCESS

Get early access to Countable PCR

Experience the only PCR solution that counts—Countable PCR.

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EARLY ACCESS

Get early access to Countable PCR

Experience the only PCR solution that counts—Countable PCR.

We’re committed to your privacy. Countable Labs uses the information you provide to us to contact you about our relevant content, products and services. You may unsubscribe from these communications at any time. For more information, check out our Privacy Policy.
Thank you! Your submission has been received!
Oops! Something went wrong while submitting the form.
How does the Early Access program work?
  • You send us your samples
  • Our Application Scientists design and run the experiments—at no cost to you!
  • Together we review the results and discuss how Countable PCR transforms your current workflow

Fill out the form, and a product specialist will reach out to you to discuss how Countable PCR will transform your project, and tailor experiments that suit your needs.

Is Countable PCR right for my application?

Early users have seen success with Countable PCR in these applications:

  • Gene therapy—Better data consistency and time savings to count partial and full viral vector genomes in the same reaction reducing the need to correlate data between platforms
  • Validation of gene targets—Detect gene expression changes with NGS-like precision
  • Rare molecule detection—Push the limits of detection to find even the rarest molecules for the monitoring of minimal residual diseaseDevelop multiplexing experiments faster, with less optimization
How is Countable PCR different from legacy methods?
  • Direct counting—With direct counting you get the actual number of DNA molecules, without a standard curve or Poisson correction involved
  • Easier assay setup and optimization—A one-tube protocol means fewer reactions; no standard curve and broad dynamic range remove the need for dilutions.
  • Broad dynamic range—With up to 50uL of loading volume and no microfluidics that limit template addition volume and create dead volume, you analyze a broad range of molecule abundance, from 0 to 1 million.
  • Less variability—Fewer pipetting errors, higher reaction volumes, and no errors from estimations contribute to reducing experimental variability