Product Introduction
The fluorecare® AMH Test Kit (Anti-Müllerian Hormone) developed by Microprofit is a quantitative immunofluorescence assay (FIA) designed for the accurate detection of AMH levels in human serum and plasma. As part of the fluorecare® POCT diagnostic platform, this test kit enables rapid and reliable quantitative analysis, supporting efficient clinical decision-making in laboratories, hospitals, and point-of-care testing environments.
Detection Principle
The fluorecare® AMH test kit utilizes fluorescence immunochromatographic assay technology. AMH in the sample binds with fluorescent-labeled antibodies to form antigen-antibody complexes, which are captured on the test line. The fluorescence signal is detected and analyzed by the fluorecare® immunofluorescence analyzer, enabling accurate and quantitative measurement of AMH concentration.
Clinical Applications
• Assessment of ovarian reserve and reproductive potential
• Prediction of ovarian response in IVF/assisted reproduction
• Auxiliary diagnosis of polycystic ovary syndrome (PCOS)
• Evaluation of reproductive aging and menopausal timing
• Clinical laboratory and decentralized POCT testing
Frequently Asked Questions
Q: What is the fluorecare® AMH test kit used for?
A: The fluorecare® AMH test kit is used for quantitative detection of anti-Müllerian hormone to assess ovarian reserve and reproductive potential.
Q: How fast is the fluorecare® AMH test?
A: The test provides accurate results within 15 minutes using the fluorecare® immunofluorescence analyzer.
Q: What samples can be used for this test?
A: Serum and plasma samples are suitable for testing with the fluorecare® AMH test kit.
Q: Is the fluorecare® AMH test suitable for POCT use?
A: Yes, it is specifically designed for point-of-care testing environments.
Compatible Analyzer
The fluorecare® AMH test kit is specifically designed to work with the fluorecare® immunofluorescence analyzer, providing fast, accurate, and quantitative results. This integrated POCT solution ensures efficient workflow and reliable performance for laboratories, clinics, and decentralized healthcare settings.