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locus coeruleus

" in MedChemExpress (MCE) Product Catalog:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-108652

    P2X Receptor Inflammation/Immunology
    α,β-Methylene-ATP trisodium is an agonist of P2X1 and P2X3 receptors and can cross the blood-brain barrier. α,β-Methylene-ATP trisodium can trigger a reflex pressor response by activating P2X receptors in peripheral muscles and the central locus coeruleus (LC); this effect can be blocked by the P2X antagonist PPADS (HY-108960). α,β-Methylene-ATP trisodium also activates noradrenergic neurons in the central locus coeruleus, mediating antinociceptive effects; this effect can be attenuated by the locus coeruleus damaging agent DSP-4 (HY-103210/HY-121602). α,β-Methylene-ATP trisodium can be used to study the pathological mechanisms of neuropathic pain, cardiovascular reflex regulation, and antinociceptive effects of the central nervous system .
    α,β-Methylene-ATP trisodium
  • HY-123532

    VUF6002

    Histamine Receptor Neurological Disease
    JNJ10191584 (VUF6002) is an orally active and selective histamine H4 receptor antagonist with a Ki value of 26 nM. JNJ10191584 shows 540-fold selectivity to H4 receptor over H3 receptor with a Ki value of 14.1 μM. JNJ10191584 inhibits chemotaxis of eosinophils and mast cells with IC50 values of 530 nM and 138 nM, respectively .
    JNJ10191584
  • HY-103210
    DSP-4 hydrochloride
    1 Publications Verification

    Neurotoxin DSP 4 hydrochloride

    Adrenergic Receptor Neurological Disease
    DSP-4 hydrochloride is a highly and selective adrenergic neurotoxin. DSP-4 hydrochloride can cross the blood brain barrier. DSP-4 hydrochloride can be used for the temporary selective degradation of the central and peripheral noradrenergic neurons .
    DSP-4 hydrochloride
  • HY-134440A

    P2X Receptor Inflammation/Immunology
    α,β-Methylene-ATP is an agonist of P2X1 and P2X3 receptors and can cross the blood-brain barrier. α,β-Methylene-ATP can trigger a reflex pressor response by activating P2X receptors in peripheral muscles and the central locus coeruleus (LC); this effect can be blocked by the P2X antagonist PPADS (HY-108960). α,β-Methylene-ATP also activates noradrenergic neurons in the central locus coeruleus, mediating antinociceptive effects; this effect can be attenuated by the locus coeruleus damaging agent DSP-4 (HY-103210/HY-121602). α,β-Methylene-ATP can be used to study the pathological mechanisms of neuropathic pain, cardiovascular reflex regulation, and antinociceptive effects of the central nervous system .
    α,β-Methylene-ATP
  • HY-134440

    P2X Receptor Inflammation/Immunology
    α,β-Methylene-ATP dilithium is an agonist of P2X1 and P2X3 receptors and can cross the blood-brain barrier. α,β-Methylene-ATP dilithium can trigger a reflex pressor response by activating P2X receptors in peripheral muscles and the central locus coeruleus (LC); this effect can be blocked by the P2X antagonist PPADS (HY-108960). α,β-Methylene-ATP dilithium also activates noradrenergic neurons in the central locus coeruleus, mediating antinociceptive effects; this effect can be attenuated by the locus coeruleus damaging agent DSP-4 (HY-103210/HY-121602). α,β-Methylene-ATP dilithium can be used to study the pathological mechanisms of neuropathic pain, cardiovascular reflex regulation, and antinociceptive effects of the central nervous system .
    α,β-Methylene-ATP dilithium
  • HY-121602

    Adrenergic Receptor Neurological Disease
    DSP 4 Free base is a selective neurotoxin that targets noradrenergic neurons in the locus coeruleus noradrenergic system. DSP 4 Free base possesses the unique ability to cross the blood–brain barrier. DSP 4 Free base cyclizes to form a reactive aziridinium derivative that accumulates in noradrenergic neurons.
    DSP 4 free base
  • HY-107558

    VUF6002 maleate

    Histamine Receptor Neurological Disease
    JNJ10191584 (VUF6002) maleate (compound 40) is an orally active and selective histamine H4 receptor antagonist with a Ki value of 26 nM. JNJ10191584 maleate shows 540-fold selectivity to H4 receptor over the H3 receptor with a Ki value of 14.1 μM. JNJ10191584 maleate inhibits chemotaxis of eosinophils and mast cells with IC50 values of 530 nM and 138 nM, respectively .
    JNJ10191584 maleate

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