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    1. 產(chǎn)品中心您現(xiàn)在的位置:首頁(yè) > 產(chǎn)品展示 > > 特色試劑盒 > cAMP complete ELISA kit

      cAMP complete ELISA kit

      更新時(shí)間:2022-01-28

      簡(jiǎn)要描述:

      cAMP complete ELISA kit
      Most sensitive (0.006 pmol/ml and 0.027 pmol/ml) and complete colorimetric kit for intra- and extracellular cAMP quantification.

      型號(hào):廠商性質(zhì):代理商瀏覽量:866
      • Versatile and convenient kit used to assay both intracellular and extracellular cAMP

      • Highy sensitive measurement of cAMP with an optional acetylation protocol increasing sensitivity >10-fold (0.006 pmol/ml and 0.027 pmol/ml) for intra- and extracellular cAMP, respectively

      • Simple, efficient and well-established sample handling protocols

      • Widely cited in peer-reviewed publications

      • Higher throughput format with results in 3 hours for up to 39 samples in duplicate

      • Reliable and consistent lot-to-lot performance

      This is a colorimetric competitive immunoassay kit for the quantitative determination of extracellular cAMP diluted in buffer or intracellular cAMP in cells or tissues lysed in 0.1M HCl. 0.1M HCl is used to stop endogenous phosphodiesterase activity and stabilize the released cyclic AMP. The 0.1M HCl treated samples are then analyzed directly in a microtiter plate without extraction, drying and reconstitution. Sensitivity is increased >10-fold by acetylation (reagents included). Absorbance is read at 405 nm. The large signal-to-background ratio offers superior sensitivity compared to competitors. This kit lets you easily assess adenylyl cyclase activation by GPCRs.
      Complete cAMP ELISA kit Standard curve - Non-Acetylated in AB2
      Typical standard curve used to calculate cAMP concentrations in Assay Buffer 2 for Non-acetylated assay format.
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      Complete cAMP ELISA kit Standard curve - Acetylated in AB2Complete cAMP ELISA kit Standard curve - Acetylated HClComplete cAMP ELISA kit Standard curve - Non-Acetylated in AB2Complete cAMP ELISA kit Standard curve - Non-acetylated in HCl


      Product Details

      Alternative Name:cyclic AMP

      Sensitivity:Non-acetylated: 0.49 pmol/ml (assay buffer) / 1.18 pmol/ml (HCl) (range (non-acetylated) 0.78 - 200 pmol/ml)
      Acetlylated: 0.027 pmol/ml (assay buffer) / 0.006 pmol/ml (HCl) (range (acetylated) 0.078 - 20 pmol/ml)

      Assay Time:3 hours

      Applications:ELISA, Colorimetric detection

      Application Notes:For the quantitative determination of cAMP in cell lysates, culture supernatants, serum, saliva, and tissue from any species.

      Wavelength:405 nm

      Species reactivity:Species independent

      Crossreactivity:cyclic AMP (100%)
      AMP, ATP, cyclic GMP, GMP, GTP, cyclic UMP, CTP (<0.001%)

      Use/Stability:Store all components at +4°C, except standard and conjugate at -20°C.

      Shipping:Shipped on Blue Ice

      Contents:GxR IgG Microtiter plate, Conjugate, Antibody, 0.1M HCl, Assay buffer 2, Neutralizing reagent, Wash buffer concentrate, Standard, pNpp Substrate, Stop solution, Triethylamine, Acetic anhydride

      Scientific Background:Cyclic AMP (cAMP) is one of the most important “second messengers" involved as a modulator of physiological processes. A number of hormones are known to activate cAMP through the action of the enzyme Adenylate cyclase which converts ATP to cAMP. cAMP has been shown to be involved in the cardiovascular and nervous systems, immune mechanisms, cell growth and differentiation, and general metabolism.

      Regulatory Status:RUO - Research Use Only

      Product Literature References

      Inhibition of relaxin autocrine signaling confers therapeutic vulnerability in ovarian cancer: H.E. Burston, et al.; J. Clin. Invest. 131, e142677 (2021), Abstract;
      Coupling of melanocyte signaling and mechanics by caveolae is required for human skin pigmentation: L. Domingues, et al.; Nat. Commun. 11, 2988 (2020), Application(s): cAMP quantification in human melanocytes, Abstract; Full Text
      Increased salt intake does not worsen the progression of renal cystic disease in high water-loaded PCK rats: S. Nagao, et al.; PLoS One 14, e0207461 (2019), Application(s): ELISA using rat kidney, Abstract; Full Text
      Leucine-rich repeat kinase 2 controls protein kinase A activation state through phosphodiesterase 4: I. Russo, et al.; J. Neuroinflammation 15, 297 (2018), Abstract; Full Text
      Prostanoid EP2 Receptors Are Up-Regulated in Human Pulmonary Arterial Hypertension: A Key Anti-Proliferative Target for Treprostinil in Smooth Muscle Cells: J.A. Patel, et al.; Int. J. Mol. Sci. 18, 2372 (2018), Abstract; Full Text
      Biventricular differences in β-adrenergic receptor signaling following burn injury: A.N. Guillory, et al.; PLoS One 12, e0189527 (2017), Abstract; Full Text
      Donor variability may mask dimethyl fumarate's effects on nuclear factor E2-related factor 2 in human peripheral blood mononuclear cells: S.E. Fiedler, et al.; BMC Res. Notes 10, 553 (2017), Abstract; Full Text
      First mutation in the FSHR cytoplasmic tail identified in a non-pregnant woman with spontaneous ovarian hyperstimulation syndrome: J. Hugon-Rodin, et al.; BMC Med. Genet. 18, 44 (2017), Application(s): ELISA using COS-7 cell lysates, Abstract; Full Text
      Gαs regulates Glucagon-Like Peptide 1 Receptor-mediated cyclic AMP generation at Rab5 endosomal compartment: S.B. Girada, et al.; Mol. Metab. 6, 1173 (2017), Application(s): Lysates of BRIN-BD11 pancreatic beta cells, Abstract; Full Text
      Narciclasine attenuates diet-induced obesity by promoting oxidative metabolism in skeletal muscle: S.G. Julien, et al.; PLoS Biol. 15, e1002597 (2017), Abstract; Full Text
      Semi-microbiological synthesis of an active lysinoalanine-bridged analog of glucagon-like-peptide-1: A. Kuipers, et al.; Peptides 91, 33 (2017), Abstract;
      Supplement of cilostamide in growth medium improves oocyte maturation and developmental competence of embryos derived from small antral follicles in pigs: H. Lee, et al.; Theriogenology 91, 1 (2017), Abstract;
      Astemizole-Histamine induces Beclin-1-independent autophagy by targeting p53-dependent crosstalk between autophagy and apoptosis: R. Jakhar, et al.; Cancer Lett. 372, 89 (2016), Application(s): cAMP assay using cell-conditioned media, Abstract;
      Cilostamide and forskolin treatment during pre-IVM improves preimplantation development of cloned embryos by influencing meiotic progression and gap junction communication in pigs: B. Park, et al.; Theriogenology 86, 757 (2016), Application(s): Measurement of cAMP levels in oocytes, Abstract;
      Dimethyl fumarate activates the prostaglandin EP2 receptor and stimulates cAMP signaling in human peripheral blood mononuclear cells: S.E. Fiedler, et al.; Biochem. Biophys. Res. Commun. 475, 19 (2016), Application(s): PBMCs, Abstract;
      Discovery of LRE1 as a specific and allosteric inhibitor of soluble adenylyl cyclase: L. Ramos-Espiritu, et al.; Nat. Chem. Biol. 12, 838 (2016), Application(s): Measurement of intracellular cAMP; Assessing reproducibility and concentration dependency, Abstract;
      Modulation of breast cancer cell viability by a cannabinoid receptor 2 agonist, JWH-015, is calcium dependent: K.E. Hanlon, et al.; Breast Cancer (Dove Med. Press.) 8, 59 (2016), Application(s): Used to measure forskolin-induced cAMP formation in vitro in response to JWH-015, Abstract; Full Text


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