Short Description
Quantitatively detects mouse FMO1 protein in tissues, plasma, or cell extracts using a sensitive sandwich ELISA assay.
ADME Research Domain
Metabolism
Description
MetaVital™ Mouse Dimethylaniline monooxygenase [N-oxide-forming] 1 (FMO1) ELISA Kit enables accurate measurement of FMO1 protein in mouse biological samples. Utilizing high-specificity antibodies in a sandwich ELISA format, this kit supports preclinical studies in drug metabolism, toxicology, and xenobiotic biotransformation research, providing reliable and reproducible quantification of this Phase I metabolic enzyme.
Features
High-affinity, mouse-specific antibody pairs ensure selective detection of FMO1 with minimal cross-reactivity to other flavin-containing monooxygenase isoforms.
Sensitive microplate-based sandwich ELISA enables accurate measurement of low-abundance FMO1 across diverse tissue, plasma, and cellular samples.
Pre-optimized reagents and standardized protocol enhance reproducibility and minimize inter-assay variability in pharmacological and metabolic studies.
Designed for integration into high-throughput preclinical workflows for drug metabolism, enzymology, and toxicology applications.
Process Relevance
Quantifies FMO1 levels to assess Phase I metabolic activity and xenobiotic detoxification in mouse models.
Application Stage
Preclinical pharmacokinetic studies, drug metabolism analysis, toxicology assessment, and metabolic enzyme characterization in mouse models.
Applications
Measurement of FMO1 protein in mouse tissues, plasma, or cultured cells for metabolic enzyme profiling, xenobiotic biotransformation studies, ADME profiling studies, and drug metabolism research.
Qualified With
Internal performance validation using reference standards under defined assay conditions.
Target
Mouse flavin-containing monooxygenase 1 (FMO1)
Detection Method
Colorimetric
Sample Type
Tissue homogenates, cell lysates and other biological fluids.
Assay Measures
Quantitative
Research Areas
Drug metabolism & pharmacokinetics (ADME), toxicology, pharmacology, enzymology, preclinical biomarker research, xenobiotic metabolism, etc.