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A2AAR

" in MedChemExpress (MCE) Product Catalog:

19

Inhibitors & Agonists

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Natural
Products

1

Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-112482
    ABT-702
    3 Publications Verification

    Adenosine Kinase Adenosine Receptor Neurological Disease Inflammation/Immunology
    ABT-702 (Adenosine Kinase Inhibitor) is a potent, orally active, and selective adenosine kinase (AK) inhibitor with an IC50 of 1.7 nM. ABT-702 shows >1300-fold selectivity for AK over other biological targets, including cyclooxygenases-1 and -2. ABT-702 attenuates inflammation in diabetic retinopathy by increasing free adenosine levels. ABT-702 shows analgesic and anti-inflammatory effects in vivo. ABT-702 can be used for diabetic retinopathy research [2] .
    ABT-702
  • HY-107046

    Adenosine Receptor Inflammation/Immunology
    UK-432097 is a highly potent and selective A2AAR agonist with a pKi of 8.4 for human A2AAR. UK-432097 has anti-inflammatory and anti-aggregatory properties. UK-432097 has the potential for COPD (Chronic Obstructive Pulmonary Disease) research [2] .
    UK-432097
  • HY-112482A
    ABT-702 hydrochloride
    3 Publications Verification

    Adenosine Kinase Adenosine Receptor Neurological Disease Inflammation/Immunology
    ABT-702 hydrochloride is a potent, orally active, and selective adenosine kinase (AK) inhibitor with an IC50 of 1.7 nM. ABT-702 hydrochloride shows >1300-fold selectivity for AK over other biological targets, including cyclooxygenases-1 and -2. ABT-702 hydrochloride attenuates inflammation in diabetic retinopathy by increasing free adenosine levels. ABT-702 hydrochloride shows analgesic and anti-inflammatory effects in vivo. ABT-702 hydrochloride can be used for diabetic retinopathy research [2] .
    ABT-702 hydrochloride
  • HY-N12422
    A2AAR antagonist 2
    1 Publications Verification

    Adenosine Receptor Inflammation/Immunology Cancer
    3′-Methoxyfurano[4″,5″:3,4]chalcone (compound 2) is a selective A2AAR antagonist (IC50=33.5 nM) with high affinity. 3′-Methoxyfurano[4″,5″:3,4]chalcone is also a natural product obtained from the bark of Allium cepa L. 3′-Methoxyfurano[4″,5″:3,4]chalcone can promote T cell activation and can be used in cancer immunity research .
    A2AAR antagonist 2
  • HY-147907

    Adenosine Receptor Neurological Disease Inflammation/Immunology Cancer
    Adenosine receptor inhibitor 1 is a potent and selective adenosine receptor (AR) inhibitor with Ki values of >1000, 68.5, >1000, >1000 nM for A1AR, A2AAR, A2BAR, A3AR, respectively. Adenosine receptor inhibitor 1 shows antinociceptive activity, anti-inflammatory effect and peripheral analgesic effect. Adenosine receptor inhibitor 1 has the potential for the research of cancer or neurodegenerative diseases .
    Adenosine receptor inhibitor 1
  • HY-147908

    Xanthine Oxidase Adenosine Receptor Inflammation/Immunology
    Adenosine receptor inhibitor 2 (compound 14b) is a potent AR (adenosine receptor) inhibitor. Adenosine receptor inhibitor 2 shows dual affinity toward A1/A2A ARs with higher affinity for the A1- than the A2AAR. Adenosine receptor inhibitor 2 has Ki values of 52.2 nM for the A1AR and 167 nM for the A2AAR .
    Adenosine receptor inhibitor 2
  • HY-175851

    Adenosine Receptor Neurological Disease
    A2AAR antagonist 5 is a selective A2AAR antagonist. A2AAR antagonist 5 inhibits NECA-stimulated adenylyl cyclase activity in hA2AAR-expressing CHO cells with an IC50 value of 1863 nM. A2AAR antagonist 5 possesses strong free radical scavenging activity, with an EC50 value of 22.21 μM in the DPPH assay. A2AAR antagonist 5 exerts notable neuroprotective effects in in vitro cerebral ischemia models. A2AAR antagonist 5 can be used for the study of cerebral ischemia .
    A2AAR antagonist 5
  • HY-120826

    Monoamine Oxidase Adenosine Receptor Neurological Disease
    A2AAR/hMAO-B-IN-1 (compoudn 17) is a non-xanthine dual-target inhibitor targeting the A2A adenosine receptor (A2AAR) (IC50: 34.9 nM) andMAO-B (Ki: 39.5 nM, human). A2AAR/hMAO-B-IN-1 inhibits A2AAR-induced cAMP accumulation and exhibits competitive, reversible inhibition of MAO-B. A2AAR/hMAO-B-IN-1 can be used in the study of neurodegenerative diseases such as Parkinson's disease (PD) .
    A2AAR/hMAO-B-IN-1
  • HY-151387

    Adenosine Receptor Neurological Disease
    A2AAR antagonist 1 (compound 21a) is an A2AAR (adenosine A2A receptor) antagonist with a Ki value of 20 nM. A2AAR antagonist 1 shows high ligand efficiency, and it can be used for the research of neurodegenerative diseases .
    A2AAR antagonist 1
  • HY-175487

    Adenosine Receptor Cancer
    A2AAR antagonist 4 is an orally active A2A Adenosine receptor antagonist with a Ki of 0.36 nM and a KB of 1 nM at hA2AAR. A2AAR antagonist 4 fully inhibits hA2AAR and hA2bAR at 10 μM. A2AAR antagonist 4 can be used for research of cancer, such as MC38 tiumor .
    A2AAR antagonist 4
  • HY-143325

    HDAC Adenosine Receptor Cancer
    A2AAR/HDAC-IN-2 is a potent A2AAR/HDAC dual inhibitor, with good binding affinity for A2AAR (Ki=10.3 nM) and good inhibitory activity against HDAC1 (IC50=18.5 nM). A2AAR/HDAC-IN-2 can be used in study of antitumor .
    A2AAR/HDAC-IN-2
  • HY-174413

    Adenosine Receptor Cancer
    A2AAR antagonist 3 is a selective and potent A2A adenosine receptor (A2A AR) antagonist with an IC50 of 1.57 nM. A2AAR antagonist 3 demonstrates high and selective binding affinities to the A2A AR. A2AAR antagonist 3 demonstrates favorable stability in rat liver microsomes in vitro and acceptable pharmacokinetic profiles in vivo. A2AAR antagonist 3 can be used in cancer research.
    A2AAR antagonist 3
  • HY-151139

    Adenosine Receptor Neurological Disease Inflammation/Immunology Cancer
    LJ-4517 is a potent A2AAR antagonist, with a Ki of 18.3 nM. LJ-4517 is potent in displacing the binding of [ 3H]ZM241385 (HY-19532) at WT A2AAR . LJ-4517 is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
    LJ-4517
  • HY-143324

    HDAC Adenosine Receptor Cancer
    A2AAR/HDAC-IN-1 (compound 14c) is an orally active, potent and balanced A2AAR/HDAC dual inhibitor, with a Ki of 163.5 nM for A2AAR and an IC50 of 145.3 nM for HDAC1. A2AAR/HDAC-IN-1 shows anticancer activity .
    A2AAR/HDAC-IN-1
  • HY-175195

    Adenosine Receptor Interleukin Related IFNAR Cytochrome P450 Inflammation/Immunology Cancer
    Adenosine receptor antagonist 6 is an orally active and selective A2A adenosine receptor (A2AAR) antagonist, with a Ki of 19.18 nM. Adenosine receptor antagonist 6 inhibits 5’-N-ethylcarboxamide adenosine (NECA) (HY-103173)-mediated cAMP production (IC50 = 0.089 μM) and immunosuppression, while promoting IL-2 and IFN-γ secretion. Adenosine receptor antagonist 6 abolishes the immunosuppressive effects of adenosine on T-cell activation and cytokine release. Adenosine receptor antagonist 6 inhibits tumor growth in a CT26/MC38 xenograft model. Adenosine receptor antagonist 6 can be used for the study of colon cancer .
    Adenosine receptor antagonist 6
  • HY-RS00395

    Small Interfering RNA (siRNA) Others

    Adora2a Mouse Pre-designed siRNA Set A contains three designed siRNAs for Adora2a gene (Mouse), as well as a negative control, a positive control, and a FAM-labeled negative control.

    Adora2a Mouse Pre-designed siRNA Set A
    Adora2a Mouse Pre-designed siRNA Set A
  • HY-165509

    Adenosine Receptor Neurological Disease
    DU172 is a ligand for the adenosine A1 receptor (Adenosine A1 Receptor), with an IC50 of 24.9 nM against A1AR and an IC50 of 0.42 μM against A2AAR [2].
    DU172
  • HY-179605

    Androgen Receptor Others
    AR ligand-49 (Compound 4q) is a dual ligand for the adenosine A2A receptor (A2AAR) and the A3 receptor (A3AR). Its Ki values are 15 and 4.5 nM respectively. AR ligand-49 exhibits reverse agonistic activity at hA2AAR and antagonistic activity at hA3AR. AR ligand-49 can be used for the study of the design and development of adenosine receptor ligands .
    AR ligand-49
  • HY-182687

    Adenosine Receptor Neurological Disease
    MRS7469 is a highly selective A1 adenosine receptor (A1AR) agonist with over 2000-fold selectivity over other adenosine receptor subtypes. MRS7469 stably binds to the orthosteric binding site of A1AR, and exhibits extremely high affinity for both humans and mice (e.g., human pKi is 8.67, mouse pKi is 9.43). By activating central A1AR, MRS7469 significantly induces hypothermia, motor inhibition and psychomotor dysfunction, and can be widely used in research related to depression and other relevant fields [2] .
    MRS7469

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