3 Catecholamines ELISA kit
Ultra-Sensitive – Any sample
Ref: BA-E-5600R
DatasheetProtocolMSDS
This research Catecholamine ELISA kit enables the ultra-sensitive measurement of Epinephrine, Norepinephrine and Dopamine in any biological sample. Intended for research use only, the assay features a lower limit of detection at 6.6pg/ml and a minimal sample volume as low as 1µl.
Sample type | 1 – 750µl, all biological fluids |
Samples/kit | 40 samples in duplicate |
Sensitivity | Epinephrine, Dopamine: 10pg/ml Norepinephrine: 4pg/ml |
Range | Epinephrine, Dopamine: 0.5 – 80ng/ml; Norepinephrine: 0.2 – 32ng/ml |
Assay time | Sample extraction, acylation and enzymatic conversion (4 h), ELISA overnight |
Reactivity | Reacts with all species |
Citations | Cited in 5 papers |
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Product overview
Product name | Epinephrine-Norepinephrine ELISA kit – Research |
Description | Enzyme immunoassay (ELISA) for the ultra-sensitive determination of epinephrine and norepinephrine in biological samples. Research use only |
Format | 3 x 96-well plate |
Samples | Any sample |
Sample volume | 1 – 750µl |
Reactivity | Reacts with all species |
Standard range | Epinephrine, Dopamine: 0 / 0.5 – 80ng/ml; Norepinephrine: 0 / 0.2 – 32ng/ml |
Sensitivity |
Epinephrine, Dopamine: 10pg/ml |
Specificity | No significant cross-reactivity was observed with Epinephrine, Norepinephrine and Dopamine analogs such as Metanephrine, Normetanephrine, 3-Methoxytyramine, 3-Methoxy-4-hydroxyphenylglycol, Tyramine, Phenylalanine, Caffeinic acid, L-Dopa, Homovanillic acid, Tyrosine and 3-Methoxy-4-hydroxymandelic acid |
Assay time | Sample preparation 4 hours and ELISA overnight |
Storage | Store at 2-8°C for to 6 months |
Datasheets | Instructions for use, Material safety datasheet |
Sample preparation | Sample extraction and acylation (1h45), enzymatic conversion (2h) |
ELISA | Dopamine, Epinephrine, Norepinephrine antisera overnight incubation, revelation and read steps (1h) |
Detailed protocol | Download instructions for use |
Product citation
- Elevated heart rate and decreased muscle endothelial nitric oxide synthase in early development of insulin resistance
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Authors : Blackwood SJ et al., Am J Physiol Endocrinol Metab.
2024-06 - Fine particulate matter (PM2.5)-induced pulmonary oxidative stress contributes to changes in the plasma lipidome and liver transcriptome in mice
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Authors : Kurlawala et al., Toxicological Sciences
2023-04 - Antidepressant- and anxiolytic-like activities of Rosmarinus officinalis extract in rodent models: Involvement of oxytocinergic system
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Authors : Sasaki et al., Biomedicine & Pharmacotherapy
2021-10 - Dietary administration of cumin-derived cuminaldehyde induce neuroprotective and learning and memory enhancement effects to aging mice
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Authors : Omari et al., Aging
2021-01