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hsCRP

Quantitative test for hsCRP

Fast and accurate quantitative in vitro diagnostic of high sensitive C-Reactive Protein

KEY FEATURES & BENEFITS
- Quantitative result of  within 3 minutes
- Fast and accurate test result
- Measure human CRP concentration present in human serum
- Allows better immediate clinical management decisions


In-vitro Quantitative Measurement of hsCRP


FREND™ hsCRP is  designed for the quantitative detection of the human C-reactive protein in human serum which may help in the evaluation of infection, tissue injury, inflammatory disorders and associated diseases. It may also aid in the identification of individuals at risk for future cardiovascular disease. In conjunction with traditional evaluation method, FREND™ hsCRP may be useful as a prognostic marker for stable coronary disease or acute coronary syndromes.






Instructions for use

Accurate Quantitative Result in 3 minutes!

With 35μL of sample, you can get a quantitative result of hsCRP in 3 minutes conveniently and immediately to the patient.

The FREND hsCRP is designed for use with the FREND System. The FREND System uses microfluidic and immunofluorescence technology. With a simple 3 step operation and a wide range of disease markers, it supports quick decision-making.








High correlation value

Accuracy and Precision

The FREND hsCRP shows a high correlation compared to a predicate device and provides accurate results.
 









  • Cat. No.

    FRhCR 025

  • AMR

    0.20–100.00 mg / L

  • Specimen

    Serum

  • Volume

    35 μL

  • Time to result

    Cartridge reaction : < 3 min

  • Package

    25 tests

  • Storage temperature

    2–8 °C

  • Expiration date

    12 month

ExTransfection™ Protocol Library

ExTransfection™ provides open protocols that make it easy for users to set up and run experiments. Its 24-well optimization method helps users to optimize transfection protocols easily and quickly.

ExTransfection™ also offers a pre-programmed optimization protocol that helps an easy and quick optimization of electrical parameters for both adherent and suspended cells.