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Results for "

A2B

" in MCE Product Catalog:

17

Inhibitors & Agonists

1

Natural
Products

6

Recombinant Proteins

Cat. No. Product Name Target Research Areas
  • HY-139314
    A2B receptor antagonist 2

    Adenosine Receptor Metabolic Disease
    A2B receptor antagonist 2 (compound 18) is an adenosine receptor A2B antagonist, with Ki values of 2.30 μM, 6.8 μM and 3.44 μM for rA1, rA2A and hA2B, respectively.
  • HY-U00321
    A2B receptor antagonist 1

    Adenosine Receptor Inflammation/Immunology Cancer
    A2B receptor antagonist 1 is a potent A2B adenosine receptor antagonist extracted from patent WO 2009157938 A1 EXAMPLE 9B.
  • HY-103166
    PSB-603

    Adenosine Receptor Inflammation/Immunology
    PSB-603 is a potent and selective adenosine A2B receptor antagonist exhibiting a Ki value of 0.553 nM at the human A2B receptor and virtually no affinity for the human and rat A1 and A2A and the human A3 receptors up to a concentration of 10 μM.
  • HY-111767
    BAY-545

    Adenosine Receptor Inflammation/Immunology
    BAY-545 is a potent and selective A2B adenosine receptor antagonist, with an IC50 of 59 nM. BAY-545 also exhibits IC50s of 66, 400, 280 nM for human, mouse, rat A2B adenosine receptor in cells, respectively, and a Ki of 97 nM for human A2B adenosine receptor, with more selectivity over A1, A2A, and A3 adenosine receptor.
  • HY-14390
    LAS101057

    Adenosine Receptor Inflammation/Immunology
    LAS101057 is a potent, selective, and orally efficacious A2B receptor antagonist.
  • HY-131032
    KI-7

    Adenosine Receptor Others
    KI-7 is an A2B adenosine receptor positive allosteric modulator. KI-7 potentiates the cAMP accumulation induced by the non-selective A2B adenosine receptor agonist NECA (EC50=445.8 nM). KI-7 also potentiates the cAMP accumulation induced by the selective A2B adenosine receptor agonist BAY 60-6583 as well as by adenosine with EC50s of 2390 nM and 2550 nM, respectively.
  • HY-103186
    MRS-1706

    Adenosine Receptor Inflammation/Immunology
    MRS-1706 is a potent and selective adenosine A2B receptor inverse agonist. MRS-1706 has Ki values of 1.39, 112, 157, and 230 nM for human A2B, A2A, A1 and A3 receptors respectively.
  • HY-14121
    MRS 1754

    Adenosine Receptor Metabolic Disease Inflammation/Immunology
    MRS 1754 is a selective antagonist radioligand for A2B adenosine receptor with very low affinity for A1 and A3 receptors of both humans and rats.
  • HY-10081
    GS-6201

    CVT-6883

    Adenosine Receptor Inflammation/Immunology
    GS-6201 (CVT-6883) is a selective adenosine A2B receptor antagonist. GS-6201 displays high affinity and selectivity for the human adenosine A2B receptors (Ki=22 nM). GS-6201 reduces caspase-1 activity in the heart, and attenuates cardiac remodeling after acute myocardial infarction (AMI) in the mouse. GS-62013 attenuates the airway reactivity induced by NECA, AMP, or allergen in sensitized mice.
  • HY-100678
    CGS 15943

    Adenosine Receptor PI3K Cancer Inflammation/Immunology
    CGS 15943 is an orally bioavailable non-xanthine Adenosine Receptor antagonist. Its Ki for human A1, A2A, A2B, and A3 Adenosine Receptors are 3.5, 4.2, 16, and 50 nM in transfected CHO cells, respectively. [1].
  • HY-19533
    SCH 58261

    Adenosine Receptor Cancer
    SCH 58261 is a potent, selective and competitive antagonist of adenosine A2A receptor with an IC50 of 15 nM, and displays 323-, 53- and 100-fold more selective for A2A receptor than A1, A2B, and A3 receptors, respectively.
  • HY-B0228
    Adenosine

    Adenine riboside; D-Adenosine

    Nucleoside Antimetabolite/Analog Autophagy Apoptosis Endogenous Metabolite Cancer Metabolic Disease
    Adenosine (Adenine riboside), a ubiquitous endogenous autacoid, acts through the enrollment of four G protein-coupled receptors: A1, A2A, A2B, and A3. Adenosine affects almost all aspects of cellular physiology, including neuronal activity, vascular function, platelet aggregation, and blood cell regulation.
  • HY-103171
    BAY 60-6583

    Adenosine Receptor Inflammation/Immunology Cardiovascular Disease
    BAY 60-6583 is a potent and high-affinity agonist of adenosine A2B receptor (EC50 = 3 nM) over A1, A2A, and A3 receptors. BAY 60-6583 binds to mouse, rabbit, and dog A2BAR with Ki values of 750 nM, 340 nM and 330 nM, respectively. BAY 60-6583 has a cardioprotective effect in a myocardial ischemia model.
  • HY-14873
    Tonapofylline

    BG 9928

    Adenosine Receptor Metabolic Disease Cardiovascular Disease
    Tonapofylline (BG 9928) is an orally active and selective adenosine A1 receptor antagonist with a Ki of 7.4 nM for human adenosine A1 receptor (hA1), which displays 915-fold selectivity versus human adenosine A2A receptor and 12-fold selectivity versus human adenosine A2B receptor and is used in development for the treatment of heart failure.
  • HY-A0168
    Regadenoson

    CVT-3146

    Adenosine Receptor Cardiovascular Disease Cancer
    Regadenoson (CVT-3146) is a potent and selective A2A adenosine receptor agonist, with Kis of 290 and 1120 nM for rat and pig adenosine A2A receptor, respectively. Regadenoson is selective for the adenosine A2A receptor over adenosine A1 and A2B receptors, and shows 13-fold selectivity over the human adenosine A1 receptor. Regadenoson is a vasodilator stress agent has shifted the landscape of vasodilator myocardial perfusion imaging. Regadenoson increases blood-brain barrier (BBB) permeability in rodents.
  • HY-103187
    HEMADO

    Adenosine Receptor Cancer Inflammation/Immunology
    HEMADO is a potent and selective adenosine A3 receptor agonist with a Ki of 1.1 nM at the human A3 subtype.
  • HY-136233
    PSB 0777 ammonium

    Adenosine Receptor Inflammation/Immunology
    PSB 0777 ammonium is a potent and selective adenosine A2A receptor full agonist with Ki values of 44.4 nM, 360 nM for rat and human A2A receptors, respectively. PSB 0777 ammonium has Ki values of ≥10000 nM, 541 nM for rat and human A1 receptors, respectively. PSB 0777 ammonium shows poor brain penetrant and perorally non-absorbable effect. PSB 0777 ammonium has the potential for inflammatory bowel disease (IBS) research research.