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Home > Product > ELISA Kit > Human Cannabinoid Receptor 1, CNR1 ELISA Kit

Human Cannabinoid Receptor 1, CNR1 ELISA Kit

Human Cannabinoid Receptor 1, CNR1 ELISA Kit

Product Summary

Size: 48T,96T

Sensitivity: 0.14ng/ml

Detection range: 0.3-90ng/ml

Sample type: Serum, plasma, cell culture supernates

Reactive with: Human

Product Summary

Size: 48T,96T

Sensitivity: 0.14ng/ml

Detection range: 0.3-90ng/ml

Sample type: Serum, plasma, cell culture supernates

Reactive with: Human

Product overview

Full product name

Cannabinoid Receptor 1

Code

E6806Hu

Assay type

Sandwich

Size

48T,96T

Sensitivity

0.14ng/ml

Detection range

0.3-90ng/ml

Sample type

Serum, plasma, cell culture supernates

Species

Human

Storage

2-8ºC

Assay time

1h 30m

Background

G-protein coupled receptor for endogenous cannabinoids (eCBs), including N-arachidonoylethanolamide (also called anandamide or AEA) and 2-arachidonoylglycerol (2-AG), as well as phytocannabinoids, such as delta(9)-tetrahydrocannabinol (THC) (PubMed: 15620723, PubMed: 27768894, PubMed: 27851727). Mediates many cannabinoid-induced effects, acting, among others, on food intake, memory loss, gastrointestinal motility, catalepsy, ambulatory activity, anxiety, chronic pain. Signaling typically involves reduction in cyclic AMP (PubMed: 1718258, PubMed: 21895628, PubMed: 27768894). In the hypothalamus, may have a dual effect on mitochondrial respiration depending upon the agonist dose and possibly upon the cell type. Increases respiration at low doses, while decreases respiration at high doses. At high doses, CNR1 signal transduction involves G-protein alpha-i protein activation and subsequent inhibition of mitochondrial soluble adenylate cyclase, decrease in cyclic AMP concentration, inhibition of protein kinase A (PKA)-dependent phosphorylation of specific subunits of the mitochondrial electron transport system, including NDUFS2. In the hypothalamus, inhibits leptin-induced reactive oxygen species (ROS) formation and mediates cannabinoid-induced increase in SREBF1 and FASN gene expression. In response to cannabinoids, drives the release of orexigenic beta-endorphin, but not that of melanocyte-stimulating hormone alpha/alpha-MSH, from hypothalamic POMC neurons, hence promoting food intake. In the hippocampus, regulates cellular respiration and energy production in response to cannabinoids. Involved in cannabinoid-dependent depolarization-induced suppression of inhibition (DSI), a process in which depolarization of CA1 postsynaptic pyramidal neurons mobilizes eCBs, which retrogradely activate presynaptic CB1 receptors, transiently decreasing GABAergic inhibitory neurotransmission. Also reduces excitatory synaptic transmission (By similarity). In superior cervical ganglions and cerebral vascular smooth muscle cells, inhibits voltage-gated Ca(2+) Channels in a constitutive, as well as agonist-dependent manner (PubMed: 17895407). In cerebral vascular smooth muscle cells, cannabinoid-induced inhibition of voltage-gated Ca(2+) Channels leads to vasodilation and decreased vascular tone (By similarity). Induces leptin production in adipocytes and reduces LRP2-mediated leptin clearance in the kidney, hence participating in hyperleptinemia. In adipose tissue, CNR1 signaling leads to increased expression of SREBF1, ACACA and FASN genes (By similarity). In the liver, activation by endocannabinoids leads to increased de novo lipogenesis and reduced fatty acid catabolism, associated with increased expression of SREBF1/SREBP-1, GCK, ACACA, ACACB and FASN genes. May also affect de novo cholesterol synthesis and HDL-cholesteryl ether uptake. Peripherally modulates energy metabolism (By similarity). In high carbohydrate diet-induced obesity, may decrease the expression of mitochondrial dihydrolipoyl dehydrogenase/DLD in striated muscles, as well as that of selected glucose/ pyruvate metabolic enzymes, hence affecting energy expenditure through mitochondrial metabolism (By similarity). In response to cannabinoid anandamide, elicits a proinflammatory response in macrophages, which involves NLRP3 inflammasome activation and IL1B and IL18 secretion (By similarity). In macrophages infiltrating pancreatic islets, this process may participate in the progression of type-2 diabetes and associated loss of pancreatic beta-cells (PubMed: 23955712). [Isoform 1]: Binds both 2-AG and anandamide. [Isoform 2]: Only binds 2-AG with high affinity. Contrary to its effect on isoform 1, 2-AG behaves as an inverse agonist on isoform 2 in assays measuring GTP binding to membranes. [Isoform 3]: Only binds 2-AG with high affinity. Contrary to its effect on isoform 1, 2-AG behaves as an inverse agonist on isoform 3 in assays measuring GTP binding to membranes.

UniProt accession

MASS(Da)

52,858

GeneID

1268

Synonyms

CANN6;Cannabinoid receptor 1;CB1;CB-R;CNR 1;CNR1

Gene names

CNR1

Research area

Neuroscience

Target protein

CNR1

Components

Components Quantity
Pre-coated ELISA Plate 12 * 8 well strips x1
Standard solution 0.5ml x1
Standard diluent 3ml x1
Streptavidin-HRP 6ml x1
Stop solution 6ml x1
Substrate solution A 6ml x1
Substrate solution B 6ml x1
Wash buffer concentrate (25x) 20ml x1
Biotinylated antibody 1ml x1

Protocol data

These standard curves of E6806Hu are provided for demonstration only. A standard curve should be generated for each set of samples assayed.

Concentration O.D. Average Corrected
48ng/ml 2.304 2.223 2.187
2.143
24ng/ml 1.538 1.432 1.395
1.325
12ng/ml 0.873 0.799 0.762
0.724
6ng/ml 0.526 0.513 0.476
0.501
3ng/ml 0.279 0.287 0.25
0.295
0ng/ml 0.037 0.037 0
0.036

Precision

We measured random samples of E6806Hu within the same batch/lot to ensure the consistency of the kits' performances.

Intra/Inter-Assay Sample n Mean Standard Deviation CV%
Intra-Assay 1 18 7.7 0.5 6.5
Intra-Assay 2 18 23.9 0.95 4
Intra-Assay 3 18 19.1 1.2 6.3

Protocols

References

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  • Size

    Code

    Price

  • 48T

    E6806Hu

    $320.00

  • 96T

    E6806Hu

    $458.00

Add to Cart

Lead time: Within two weeks

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