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Cat. No. Product Name Field of Application Chemical Structure
DC41715 GR 94800 TFA
GR 94800 TFA is a potent and selective NK2 receptor peptide antagonist, with pKB values of 9.6, 6.4 and 6.0 for NK2, NK1 and NK3 receptors, respectively.
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DC41714 GR 94800
GR 94800 is a potent and selective NK2 receptor peptide antagonist, with pKB values of 9.6, 6.4 and 6.0 for NK2, NK1 and NK3 receptors, respectively.
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DC41713 ShK-Dap22 TFA
ShK-Dap22 TFA is a potent Kv1.3-specific immunosuppressive Polypeptide. ShK-Dap22 TFA is a selective Kv1.3 channel blocker with IC50s of 23 pM, 1.8 nM, 10.5 nM, 37 nM, and 39 nM for mKv1.3, mKv1.1, hKv1.6, mKv1.4, and rKv1.2 channels, respectively.
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DC41712 ShK-Dap22
ShK-Dap22 is a potent Kv1.3-specific immunosuppressive Polypeptide. ShK-Dap22 is a selective Kv1.3 channel blocker with IC50s of 23 pM, 1.8 nM, 10.5 nM, 37 nM, and 39 nM for mKv1.3, mKv1.1, hKv1.6, mKv1.4, and rKv1.2 channels, respectively.
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DC41711 Catestatin TFA
Catestatin TFA is a 21-amino acid residue, cationic and hydrophobic peptide. Catestatin TFA is an endogenous peptide that regulates cardiac function and blood pressure. Catestatin TFA is a non-competitive nicotinic antagonist acting through nicotinic acetylcholine receptors (nAChRs) to inhibit catecholamine release.
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DC41710 Catestatin
Catestatin is a 21-amino acid residue, cationic and hydrophobic peptide. Catestatin is an endogenous peptide that regulates cardiac function and blood pressure. Catestatin is a non-competitive nicotinic antagonist acting through nicotinic acetylcholine receptors (nAChRs) to inhibit catecholamine release.
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DC41709 α-Conotoxin AuIB TFA
α-Conotoxin AuIB TFA, a potent and selective α3β4 nicotinic acetylcholine receptor (nAChR) antagonist, blocks α3β4 nAChRs expressed in Xenopus oocytes with an IC50 of 0.75 μM.
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DC41708 α-Conotoxin AuIB
α-Conotoxin AuIB, a potent and selective α3β4 nicotinic acetylcholine receptor (nAChR) antagonist, blocks α3β4 nAChRs expressed in Xenopus oocytes with an IC50 of 0.75 μM.
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DC41707 α-Conotoxin PIA TFA
α-Conotoxin PIA TFA is a nicotinic acetylcholine receptor (nAChR) antagonist isolated from Conus purpurascens that targets nAChR subtypes containing α6 and α3 subunits. α-Conotoxin PIA has the potential for the research of Parkinson’s disease, and schizophrenia。
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DC41706 α-Conotoxin PIA
α-Conotoxin PIA is a nicotinic acetylcholine receptor (nAChR) antagonist isolated from Conus purpurascens that targets nAChR subtypes containing α6 and α3 subunits. α-Conotoxin PIA has the potential for the research of Parkinson’s disease, and schizophrenia。
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DC41705 α-Conotoxin PnIA TFA
α-Conotoxin PnIA TFA, a potent and selective antagonist of the mammalian α7 nAChR, has the potential for the research of neurological conditions such as neuropathic pain and Alzheimer’s disease.
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DC41704 α-Conotoxin PnIA
α-Conotoxin PnIA, a potent and selective antagonist of the mammalian α7 nAChR, has the potential for the research of neurological conditions such as neuropathic pain and Alzheimer’s disease.
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DC41703 α-Bungarotoxin
α-Bungarotoxin is a competitive antagonist at nicotinic acetylcholine receptors (nAChRs). α-Bungarotoxin, a selective α7 receptor blocker, blocks α7 currents with an IC50 of 1.6 nM and has no effects on α3β4 currents at concentrations up to 3 μM.
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DC41702 tcY-NH2 TFA
tcY-NH2 TFA is a selective rat PAR4 antagonist peptide. tcY-NH2 TFA inhibits thrombin- and AY-NH2-induced rat platelet aggregation.
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DC41701 tcY-NH2
tcY-NH2 is a selective rat PAR4 antagonist peptide. tcY-NH2 inhibits thrombin- and AY-NH2-induced rat platelet aggregation.
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DC41698 PR-39 TFA
PR-39 TFA, a natural proline- and arginine-rich antibacterial peptide, is a noncompetitive, reversible and allosteric proteasome inhibitor. PR-39 TFAreversibly binds to the α7 subunit of the proteasome and blocks degradation of NF-κB inhibitor IκBα by the ubiquitin-proteasome pathway. PR-39 TFA stimulates angiogenesis, inhibits inflammatory responses and significant reduces myocardial infarct size in mice.
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DC41697 PR-39
PR-39, a natural proline- and arginine-rich antibacterial peptide, is a noncompetitive, reversible and allosteric proteasome inhibitor. PR-39 reversibly binds to the α7 subunit of the proteasome and blocks degradation of NF-κB inhibitor IκBα by the ubiquitin-proteasome pathway. PR-39 stimulates angiogenesis, inhibits inflammatory responses and significant reduces myocardial infarct size in mice.
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DC41696 Xenin-8 TFA
Xenin-8 TFA, a C-terminal octapeptide, is a biologically active fragment of Xenin. Xenin is a 25-amino acid peptide of the neurotensin/xenopsin family. Xenin-8 TFA stimulates basal insulin secretion and potentiates the insulin response to glucose in a dose-dependent manner (EC50=0.16 nM).
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DC41695 Xenin-8
Xenin-8, a C-terminal octapeptide, is a biologically active fragment of Xenin. Xenin is a 25-amino acid peptide of the neurotensin/xenopsin family. Xenin-8 stimulates basal insulin secretion and potentiates the insulin response to glucose in a dose-dependent manner (EC50=0.16 nM).
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DC41694 JMV 449
JMV 449 is a potent neurotensin receptor agonist. JMV 449 shows an IC50 of 0.5 nM in binding to mouse brain membranes and an EC50 of 1.9 nM in contracting the guinea-pig ileum. JMV 449 has highly potent and long-lasting hypothermic and analgesic effects in the mouse.
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DC41693 Parathyroid Hormone (1-34), bovine TFA
Parathyroid Hormone (1-34), bovine TFA is a potent parathyroid hormone (PTH) receptor agonist. Parathyroid Hormone (1-34), bovine increases calcium and inorganic phosphate levels in vivo. Parathyroid Hormone (1-34), bovine can be used for th reseach of osteoporosis.
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DC41692 Parathyroid Hormone (1-34), bovine
Parathyroid Hormone (1-34), bovine is a potent parathyroid hormone (PTH) receptor agonist. Parathyroid Hormone (1-34), bovine increases calcium and inorganic phosphate levels in vivo. Parathyroid Hormone (1-34), bovine can be used for th reseach of osteoporosis.
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DC41691 RFRP-3(human) TFA
RFRP-3 (Neuropeptide VF(124-131))(human) TFA, a human GnIH peptide homolog, is a potent inhibitor of gonadotropin secretion by inhibiting Ca2+?mobilization. RFRP-3(human) is a NPFF1?receptor agonist, it inhibits forskolin-induced production of cAMP with an IC50 of 0.7 nM.
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DC41690 RFRP-3(human)
RFRP-3 (Neuropeptide VF(124-131))(human), a human GnIH peptide homolog, is a potent inhibitor of gonadotropin secretion by inhibiting Ca2+?mobilization. RFRP-3(human) is a NPFF1?receptor agonist, it inhibits forskolin-induced production of cAMP with an IC50 of 0.7 nM.
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DC41689 Neuropeptide SF(mouse,rat) TFA
Neuropeptide SF (mouse,rat) TFA is a potent neuropeptide FF receptor agonist with Ki values are 48.4 nM and 12.1 nM for NPFF1 and NPFF2, respectively. Neuropeptide SF TFA increases the amplitude of the sustained current of heterologously expressed acid sensing ion channel 3 (ASIC3) .
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DC41688 Neuropeptide SF(mouse,rat)
Neuropeptide SF (mouse,rat) is a potent neuropeptide FF receptor agonist with Ki values are 48.4 nM and 12.1 nM for NPFF1 and NPFF2, respectively. Neuropeptide SF increases the amplitude of the sustained current of heterologously expressed acid sensing ion channel 3 (ASIC3) .
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DC41687 Calcineurin autoinhibitory peptide TFA
Calcineurin autoinhibitory peptide TFA is a selective inhibitor of Ca2+/calmodulin-dependent protein phosphatase (calcineurin), with an IC50 of ~10 μM. Calcineurin autoinhibitory peptide TFA could protect neurons from excitatory neuronal death.
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DC41686 Calcineurin autoinhibitory peptide
Calcineurin autoinhibitory peptide is a selective inhibitor of Ca2+/calmodulin-dependent protein phosphatase (calcineurin), with an IC50 of ~10 μM. Calcineurin autoinhibitory peptide could protect neurons from excitatory neuronal death.
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DC41685 C3bot(154-182) TFA
C3bot(154-182) TFA is a C3 peptide enhances recovery from spinal cord injury by improving regenerative growth of descending fiber tracts. C3bot(154-182) TFA represents a promising tool to foster axonal protection and/or repair, as well as functional recovery after traumatic CNS injury.
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DC41684 C3bot(154-182)
C3bot(154-182) is a C3 peptide enhances recovery from spinal cord injury by improving regenerative growth of descending fiber tracts. C3bot(154-182) represents a promising tool to foster axonal protection and/or repair, as well as functional recovery after traumatic CNS injury.
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