Dopamine ELISA kit
Any sample

Ref: BA-E-5300R
NeuromediatorsCatecholaminesResearch ELISA kits (RUO)ELISA
DatasheetMSDSProtocol

This research Dopamine ELISA kit enables the ultra-sensitive measurement of Dopamine (DA) in any biological sample. Highly flexible, the assay features a minimal sample volume as low as 1 µl, with a limit of detection at 3.3 pg/ml.

Sample type 1 – 750µl, all biological fluids
Samples/kit 40 samples in duplicate
Sensitivity 3.3pg/ml
Range 0.5 – 80ng/ml
Assay time Extraction, acylation and enzymatic conversion (4 hours), ELISA overnight
Reactivity Reacts with all species
Citations Over 20
Size

1 x 96 wells

462.00

84 in stock

Quantity
Total

462.00

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Product overview

Product name Dopamine ELISA kit – Research
Description Enzyme immunoassay (ELISA) for the ultra-sensitive determination of Dopamine in biological samples. Research use only
Format 96-well plate
Samples Any sample
Sample volume 1 – 750µl
Reactivity Reacts with all species
Standard range 0 / 0.5 – 80ng/ml
Sensitivity

3.3pg/ml

Specificity No significant cross-reactivity was observed with Dopamine analogs such as Adrenaline, Noradrenaline, Metanephrine, Normetanephrine, 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 antiserum overnight incubation, revelation and read steps (1h).
Detailed protocol Download instructions for use

Product citation

  • Microalgae extract induces antidepressant-like activity via neuroinflammation regulation and enhances the neurotransmitter system
    Check the article
    Authors : Sasaki et al., Food & Chemical Toxicology
    2022-11
  • Dopamine Negatively Regulates Insulin Secretion Through Activation of D1-D2 Receptor Heteromer
    Check the article
    Authors : Uefune et al., Diabetes
    2022-06
  • Mepirapim, a Novel Synthetic Cannabinoid, Induces Addiction-Related Behaviors through Neurochemical Maladaptation in the Brain of Rodents
    Check the article
    Authors : Hur et al., Pharmaceuticals
    2022-06
  • Circulating Human Serum Metabolites Derived from the Intake of a Saffron Extract (Safr’InsideTM) Protect Neurons from Oxidative Stress: Consideration for Depressive Disorders
    Check the article
    Authors : Wauquier et al., Immunity
    2022-04
  • Nicotinic acetylcholine receptors expressed by striatal interneurons inhibit striatal activity and control striatal-dependent behaviors
    Check the article
    Authors : Abbondanza et al., The journal of Neuroscience
    2022-02
  • Loss of physical contact in space alters the dopamine system in C. elegans
    Check the article
    Authors : Sudevan et al., iScience
    2022-01
  • Ninjin’yoeito, a traditional Japanese medicine, increases dopamine content in PC12 cells
    Check the article
    Authors : Miyazaki et al., Bioscience, Biotechnology & Biochemistry
    2021-10
  • Neurobehavioral effects of acute low-dose whole-body irradiation
    Check the article
    Authors : Bekal et al., Journal of radiation research
    2021-09
  • Luteolin Modulates Neural Stem Cells Fate Determination: In vitro Study on Human Neural Stem Cells, and in vivo Study on LPS-Induced Depression Mice Model
    Check the article
    Authors : Achour et al., Frontiers in cell & developmental biology
    2021-08
  • Improvement of loperamide-induced slow transit constipation by Bifidobacterium bifidum G9-1 is mediated by the correction of butyrate production and neurotransmitter profile due to improvement in dysbiosis
    Check the article
    Authors : Makizaki et al., PloS one
    2021-03
  • Photoperiodic regulation of dopamine signaling regulates seasonal changes in retinal photosensitivity in mice
    Check the article
    Authors : Okimura et al., Scientific reports
    2021-01
  • Novel Drosophila model for parkinsonism by targeting phosphoglycerate kinase
    Check the article
    Authors : Shimizu et al., Neurochemistry International
    2020-08
  • The neuroprotective effect of fullerenols on a model of Parkinson’s disease in Drosophila melanogaster
    Check the article
    Authors : Golomidov et al., Biochemical & Biophysical Research Communications
    2020-03
  • Elucidation of the Molecular Mechanism Underlying Lippia citriodora(Lim.)-Induced Relaxation and Anti-Depression
    Check the article
    Authors : Sabti et al., International Journal of Molecular Sciences
    2019-07
  • Pharmacological evaluation of SN79, a sigma (σ) receptor ligand, against methamphetamine-induced neurotoxicity in vivo
    Check the article
    Authors : Kaushal et al., European Neuropsychopharmacology
    2013-08
  • The evaluation of AZ66, an optimized sigma receptor antagonist, against methamphetamine-induced dopaminergic neurotoxicity and memory impairment in mice
    Check the article
    Authors : Seminerio et al., International journal of Neuropsycopharmacology
    2013-06
  • Cyperi Rhizoma inhibits the 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine-induced reduction in nigrostriatal dopaminergenic neurons in estrogen-deprived mice
    Check the article
    Authors : Kim et al., Journal of Ethnopharmacology
    2013-06
  • σ Receptor antagonist attenuation of methamphetamine-induced neurotoxicity is correlated to body temperature modulation
    Check the article
    Authors : Robson et al., Pharmalogical Reports
    2013-01
  • Dopaminergic-like cells from epigenetically reprogrammed mesenchymal stem cells
    Check the article
    Authors : Zhang et al., Journal of cellular and molecular medicine
    2012-11
  • Neuroprotective effects of extremely low-frequency electromagnetic fields on a Huntington’s disease rat model: effects on neurotrophic factors and neuronal density
    Check the article
    Authors : Tasset et al., Neuroscience
    2012-05
  • Mast cells express tyrosine hydroxylase and store dopamine in a serglycin-dependent manner
    Check the article
    Authors : Rönnberg et al., Biological Chemistry
    2012-01

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