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cAMP EIA Kit

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  • 公司名稱武漢紐斯特生物科技有限公司
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  • 更新時間2024/5/3 8:49:58
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武漢紐斯特生物科技有限公司(Wuhan NewEast Biotechonology Co.Ltd),系美國生命科學(xué)試劑供應(yīng)商美國NewEastBio在中國的子公司。公司位于武漢東湖*開發(fā)區(qū)光谷生物城. 美國NewEastBio專注于生命科學(xué)和生物技術(shù)領(lǐng)域,主要產(chǎn)品有抗體、小分子、ELISA試劑盒、蛋白等,與世界許多高校和研究所、世界大制藥公司、生物科技公司和醫(yī)院等客戶建立了*穩(wěn)定的合作關(guān)系,產(chǎn)品銷往各個國家。 武漢紐斯特生物將攜手美國NewEastBio,負(fù)責(zé)美國品牌NewEastBio(www.neweastbio.com)產(chǎn)品在中國市場的推廣、銷售及售后服務(wù)。致力于為客戶提供一系列高質(zhì)量和有較好價格競爭力的美國NewEastBio*產(chǎn)品。并提供專業(yè)的技術(shù)服務(wù):抗體定制,動物實驗等

cAMP ELISA kit,active抗體,點突變抗體,ELISA試劑盒
cAMP EIA Kit
cAMP EIA Kit 產(chǎn)品信息

Monoclonal Anti-cAMP EIA Kit without Acetylation [80203]
[96 well]


Product Highlight

  • Based on the unique mouse monoclonal Anti-cAMP antibody
    It is the only EIA kit on the market with monoclonal anti-cAMP antibody (all other kits are based on polyclonal anti-cAMP antibodies). 
     

  • No more hazardous chemical () for your cAMP assay 
    The monoclonal Anti-cAMP antibody has similar affinities for non-acetylated cAMP and acetylated cAMP. Thus acetylation with the acetic anhydride is permanently eliminated from the assay.
     

  • Super sensitivity and selectivity 
    The monoclonal Anti-cAMP antibody displays >108 fold of selectivity over cGMP, ATP, and other nucleoside analogues. 
    The Anti-cAMP EIA Kit provides significantly improved sensitivity and selectivity over other kits based on polyclonal anti-cAMP antibodies on the market.
     

  • Shortest assay time and high-throughput format 
    The Anti-cAMP EIA Kit is the best choice for drug screenings.

Product Description

    Adenosine 3', 5'-cyclic monophosphate (cyclic AMP; cAMP) modulates various physiological functions such as cardiovascular biology, learning and memory, olfaction, immune response, asthma and kidney function (1,2). cAMP is produced from ATP by adenylyl cyclases and is degraded by phosphodiesterases. Stimulation of adenylyl cyclases or inhibition of phosphodiesterases can increase cellular cAMP concentrations. Blockers of adenylyl cyclase-activating receptors and inhibitors of the cAMP-specific phosphodiesterases are used for treating human diseases. For example, blocking agents for cAMP-increasing beta-adrenergic receptors (beta-blockers) are used for treating abnormal heart rhythms, high blood pressure (hypertension), myocardial infarction and heart failure. Inhibitors of cAMP specific phosphodiesterase types 2 and 4 are being tested for cognition enhancement.

    To screen for inhibitors or stimulators of cellular cAMP levels, it is essential to have a sensitive, selective and reproducible method to measure the cAMP concentrations. This is especially true for the initial screenings given the possible weaker effects of larger pools of compounds.

    Currently available other ELISA kits measuring cAMP levels are based on the non-affinity-purified polyclonal anti-cAMP antibody. Despite the claimed selectivity, these polyclonal anti-cAMP antibodies display certain cross-reactivity with ATP. Given that ATP is the substrate for the cAMP production, it is very desirable to have an antibody with high specificity towards cAMP over ATP.

    NewEast Biosciences cAMP ELISA kit is based on the unique mouse monoclonal anti-cAMP antibody. This monoclonal anti-cAMP antibody displays >108 fold of selectivity over ATP, cGMP, and other nucleoside analogues. NewEast Biosciences cAMP ELISA kit provides significantly improved sensitivity and selectivity over other kits based on polyclonal anti-cAMP antibodies. Our monoclonal anti-cAMP antibody-based ELISA kit also avoids the batch-to-batch variations associated with polyclonal antibody productions from animals, thus providing the reproducibility in the long run.

    Furthermore, while polyclonal anti-cAMP antibodies used in other ELISA kits have higher affinity for acetylated cAMP than non-acetylated cAMP, NewEast Biosciences monoclonal anti-cAMP antibody has similar affinities to non-acetylated and acetylated cAMP molecules. Therefore, acetylation treatments of samples and standards are not needed in NewEast Biosciences cAMP ELISA kit. This significantly reduces the time for the assay. The avoidance of organic reagents used in the acetylation process provides a safe and healthy work environment.

Principle Outline

    NewEast Biosciences cAMP ELISA Kit is a competitive immunoassay to measure the cAMP levels, either from cell extracts or from in vitro adenylyl cyclase assays. Briefly, multi-well plates are coated with goat-anti-mouse serum. cAMP in cell extracts or in in vitro adenylyl cyclase assays will competitively bind to the monoclonal anti-cAMP antibody in the presence of fixed amounts of cAMP-conjugated horse-radish peroxidase or alkaline phosphatase. Known amounts of cAMP are used as standards to generate the calculation curve. After a short incubation, the excess reagents are washed away and substrate is added. The multiwell plates are then read on a microplate reader at 450 nm or 405 nm. The intensity of the yellow color is inversely proportional to the concentration of cAMP in samples. The measured optical density is used to calculate the concentration of cAMP in samples based on the curve from the cAMP standards.



    Publications:
    1.  
        Pflugers Arch. 2012 Feb;463(2):257-68
    2.  
        Pharmacol Rep. 2012;64(2):351-9
    3.  
        Neuropharmacology. 2013 Apr;67:272-83
    4.  
        Antioxid Redox Signal. 2013 Mar 20;18(9):1009-20
    5.  
        Pflugers Arch. 2012 Feb;463(2):257-68
    6.  
        Biochemical and Biophysical Research Communications Volume 417, Issue 1, 6 January 2012, Pages 324–329
    7.  
        Pflügers Archiv - European Journal of Physiology October 2013, Volume 465, Issue 10, pp 1477-1486
    8.  
        The Journal of Physiology Volume 591, Issue 14, pages 3605–3623, July 2013
    9.  
        Annals of Neurology Volume 75, Issue 2, pages 309–316, February 2014
    10.  
        Pflügers Archiv - European Journal of Physiology October 2014, Volume 466, Issue 10, pp 1921-1932
    11.  
        Food Funct., 2014,5, 2061-2069
    12.  
        FEBS Journal Volume 281, Issue 21, pages 4792–4804, November 2014
    13.  
        British Journal of Pharmacology Volume 171, Issue 23, pages 5361–5375, December 2014
    14.  
        PLoS One. 2014 Oct 24;9(10):e110944
    15.  
        PLoS One. 2014 Feb 27;9(2):e89932


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