no scripts enabled
Medikabazaar
Cart
MediLytic Biomedicals Lipase - 10ml (RBC102)
MediLytic Biomedicals Lipase - 10ml (RBC102): Image 1
MediLytic Biomedicals Lipase - 10ml (RBC102): Image 2
MediLytic Biomedicals Lipase - 10ml (RBC102): Image 3
MediLytic Biomedicals Lipase - 10ml (RBC102): Image 4

Your Advantages

Brand Medilytic Biomedicals

The MediLytic Biomedicals Lipase - 10ml (RBC102) is a high-performance reagent kit designed for the quantitative determination of lipase activity in human serum. Lipase is a critical pancreatic enzyme, and its accurate estimation is essential for the diagnosis and monitoring of pancreatic disorders, including acute pancreatitis. This kit utilizes a kinetic enzymatic method to deliver precise and reproducible results.

This reagent kit is compatible with both automated and semi-automated analyzers, making it suitable for various laboratory settings performing moderate to low volumes of lipase testing. It is supplied in a convenient 10ml pack, ideal for regular clinical use.

Manufactured under strict quality standards for diagnostic use, the MediLytic Biomedicals Lipase reagent is stable when stored at 2 – 8°C, ensuring long-term usability. It is intended for in vitro diagnostic use by healthcare professionals.

Key Features : 

Quantitative determination of lipase activity in human serum for diagnosing pancreatic disorders
Compatible with automated and semi-automated analyzers
Stable when stored at 2 – 8°C
Intended for in vitro diagnostic use

Compatible Analyser Platform(s)Automated and semi-automated analyzers
Analytes / Parameters TestedLipase activity
Storage Conditions2 – 8°C
Regulatory ApprovalFor In Vitro Diagnostic Use
Calibration RequirementsRequires calibration; repeat with reagent lot variation or after major analyzer maintenance
Stability After Opening30 days on-board stability if contamination is avoided

Product Insights

Guides and articles about Biochemistry Reagent.

twitterlinkedinfacebookinstagramyoutube
@Copyright Boston Ivy Healthcare Solutions Private Limited