
Breakthrough Diagnostic Technology
Our proprietary 1copy™ technology represents a revolution in molecular diagnostics, offering unparalleled sensitivity that can detect genetic material down to a single-molecule level.
By integrating advanced scientific principles with practical applications, 1copy™ enables healthcare providers to achieve rapid, accurate, and comprehensive diagnostic results.

1copy™ Product
- 1copy™ 1POT Duo
- 1copy™ BCR-ABL qPCR Kit
- COVID-19 qPCR Kits
- Respiratory Virus Dry RT-PCR Kit Series
1copy™ Molecular Diagnostic Technology
Our core molecular diagnostic technology, 1copy™ Probe, features a unique hybrid structure that incorporates RNA within the probe itself.
To enhance probe degradation efficiency, we developed and integrated a new enzyme, RNaseH, which provides exceptional thermal stability and is optimized for the hot-start technique.
As a result, the probe demonstrates outstanding degradation efficiency, leading to a significant increase in final fluorescence signals.
This enables stable detection of DNA and RNA down to the single-molecule level.

Quantification
1copy™ products utilize a DNA–RNA–DNA hybrid probe and a thermally stable RNaseH enzyme to deliver highly stable and reproducible results, enabling precise quantification of genetic material.
with your customers. Describe a product, share announcements, or welcome customers to your store.

One-Step Reaction
1copy™ allows the detection of target genes in a single-step process, providing a fast and user-friendly workflow for molecular testing.

Open System
1copy™ products are fully compatible with a wide range of PCR instruments widely used around the world, ensuring seamless integration into existing laboratory systems.

Quantification · One-Step · Open System
1copy™ products allow target gene detection in a single-step process, providing a fast and convenient testing experience.
With 1copy™ Probe technology, consistent performance is achieved even at the single-molecule level, making it highly applicable in areas that demand ultra-high sensitivity.