| Field | Specification |
|---|---|
| Mfr No | |
| Alternative Names | Rnase3 ELISA Kit; Ear11 ELISA Kit; Rns3 ELISA Kit; Eosinophil cationic protein ELISA Kit; ECP ELISA Kit; EC 3.1.27.- ELISA Kit; Eosinophil secondary granule ribonuclease 11 ELISA Kit; EAR-11 ELISA Kit; Ribonuclease 3 ELISA Kit; RNase 3 ELISA Kit |
| Assay Time | |
| Assay Type | |
| Detection Range | |
| Detection Wavelength | |
| Product Type | |
| Reactivity | |
| Sample Type(s) | serum, plasma, tissue homogenates |
| Sensitivity | |
| Species | |
| Target | |
| UniProt # |
Background
eosinophil cationic protein (RNASE3) is a biological molecule commonly studied in others research. It is commonly used as a molecular readout in mechanistic and biomarker-focused studies.
UniProt: P70709
Biological context
Researchers often monitor eosinophil cationic protein in serum, plasma, and tissue homogenates to better understand themes such as mechanistic biology studies, biomarker-focused profiling, and disease-model research. In many model systems, measured levels can shift with physiology, experimental perturbation, or disease-associated changes, making careful biological interpretation important.
Interpreting changes in measured levels
Depending on sample matrix and study design, increases or decreases in eosinophil cationic protein may reflect differences in expression, secretion, turnover, or compartmentalization rather than a single mechanism. Interpretation is typically strengthened by evaluating related molecules (for example, complementary pathway markers and controls appropriate to the biological model) and by keeping pre-analytical variables consistent across groups.
Nomenclature
In publications and databases, eosinophil cationic protein may also appear under names such as Rnase3 and Ear11. When comparing studies, confirm that the reported analyte refers to the same molecule and species context.
Why ELISA data are widely used
ELISA is a common approach for quantitative measurement of proteins and biomarkers in complex samples, enabling comparisons across experimental groups and time points. When integrating results with other readouts, consider species biology, sample type, and the broader pathway context that eosinophil cationic protein participates in.
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Pulmonary toxicity of instilled silver nanoparticles: influence of size, coating and rat strain.
Seiffert J et al,PLoS One,2015