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Reference: HY-P0188A
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ω-Conotoxin MVIIC TFA is a N- and P/Q-type Ca2+ channel blocker, significantly suppresses the 11-keto-βboswellic acid-mediated inhibition of glutamate release.
Reference: HY-P0188
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ω-Conotoxin MVIIC is a N- and P/Q-type Ca2+ channel blocker, significantly suppresses the 11-keto-βboswellic acid-mediated inhibition of glutamate release.
Reference: HY-P0189A
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ω-Conotoxin GVIA TFA is an inhibitor of the N-type Ca2+ channel.
Reference: HY-P0189
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ω-Conotoxin GVIA is an inhibitor of the N-type Ca2+ channel.
Reference: HY-P1079
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ω-Agatoxin TK, a peptidyl toxin of the venom of Agelenopsis aperta, is a potent and selective P/Q type Ca2+ channel blocker. ω-Agatoxin TK inhibits the high K+ depolarisation-induced rise in internal Ca2+ in cerebral...
Reference: HY-P1080
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ω-Agatoxin IVA is a potent, selective P/Q type Ca2+ (Cav2.1) channel blocker with IC50s of 2 nM and 90 nM for P-type and Q-type Ca2+ channels, respectively. ω-Agatoxin IVA (IC50, 30-225 nM) inhibits glutamate...
Reference: HY-P1501A
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δ-Sleep Inducing Peptide acetate is a neuropeptide, with antioxidant and anxiolytic properties.
Reference: HY-P1501
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δ-Sleep Inducing Peptide is a neuropeptide, with antioxidant and anxiolytic properties.
Reference: HY-P1214A
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γ1-MSH TFA is a melanocortin MC3 receptor agonist, with a Ki of 34 nM for the rat MC3 receptor. γ1-MSH TFA displays ~40-fold selectivity over MC4 (Ki=1318 nM).
Reference: HY-P1214
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γ1-MSH is a melanocortin MC3 receptor agonist, with a Ki of 34 nM for the rat MC3 receptor. γ1-MSH displays ~40-fold selectivity over MC4 (Ki=1318 nM).
Reference: HY-P3069
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γ-Neuropeptide (rabbit) can be isolated from rabbit intestine. γ-Neuropeptide is an endogenous neurokinin peptide that acts as a neurokinin 2 (NK2) receptor agonist. γ-Neuropeptide mediates...
Reference: HY-P5097
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γ-Glutamylhistidine is a polypeptide that can be found by peptide screening. Peptide screening is a research tool that pools active peptides primarily by immunoassay. Peptide screening can be used for protein...
Reference: CS-6416-100
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C14H18N2O5
Reference: CS-6416-50
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C14H18N2O5
Reference: CS-6416-10
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C14H18N2O5
Reference: CS-6416-5
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C14H18N2O5
Reference: HY-P3280A
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γ-Glu-Gly TFA, a γ-glutamyl dipeptide, is a human lipid metabolite.γ-Glu-Gly TFA has a similar structure to GABA (γ-aminobutyric acid) and can act as an antagonist of excitatory amino acids.
Reference: HY-P3280
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γ-Glu-Gly, a γ-glutamyl dipeptide, is a human lipid metabolite.γ-Glu-Gly has a similar structure to GABA (γ-aminobutyric acid) and can act as an antagonist of excitatory amino acids.
Reference: HY-P5121A
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γ-Fibrinogen377-395 TFA is a fibrinogen-derived inhibitory peptide, as well as fibrinogen epitope. γ-Fibrinogen377-395 TFA blocks microglia activation and inhibits fibrin-Mac-1 interactions in vitro, and suppresses...
Reference: HY-P3778
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γ-bag cell peptide is a peptide. γ-bag cell peptide is located near the N-terminus of the egg laying prohormone, the vesicle is released upon insulin stimulation. γ-bag cell peptide can be used for the research of the...
Reference: HY-P1922
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γ-2-MSH (41-58), amide is derived from γ-2-MSH. γ-2-MSH is a twelve amino acid peptide that is derived from the N-terminal fragment of proopiomelanocortin (POMC) and contains the His-Phe-Arg-Trp motif common to all...
Reference: HY-P1531
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γ-1-Melanocyte Stimulating Hormone (MSH), amide is a 11-amino acid peptide. γ-1-Melanocyte Stimulating Hormone (MSH) regulates sodium (Na+) balance and blood pressure through activation of the melanocortin receptor 3...
Reference: HY-P1084A
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β-Pompilidotoxin TFA (β-PMTX TFA), a wasp venom, can slow sodium channel inactivation and increases steady-state sodium current in cells.
Reference: HY-P1084
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β-Pompilidotoxin (β-PMTX), a wasp venom, can slow sodium channel inactivation and increases steady-state sodium current in cells.
Reference: A1132-25
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Slows Na+ channel inactivation
Reference: A1132-10
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Slows Na+ channel inactivation
Reference: 32076-5
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Source: Active recombinant mouse β-NGF expressed in CHO cells • Amino acids: 122-241 • MW: 13.5 kDa
Reference: 32076-20
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Source: Active recombinant mouse β-NGF expressed in CHO cells • Amino acids: 122-241 • MW: 13.5 kDa
Reference: 32076-100
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Source: Active recombinant mouse β-NGF expressed in CHO cells • Amino acids: 122-241 • MW: 13.5 kDa
Reference: 32076-1
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Source: Active recombinant mouse β-NGF expressed in CHO cells • Amino acids: 122-241 • MW: 13.5 kDa
Reference: 32061-500
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Source: Active recombinant human β-NGF expressed in CHO cells • Amino acids: 122-239 • MW: 13.2 kDa
Reference: 32061-20
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Source: Active recombinant human β-NGF expressed in CHO cells • Amino acids: 122-239 • MW: 13.2 kDa
Reference: 32061-100
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Source: Active recombinant human β-NGF expressed in CHO cells • Amino acids: 122-239 • MW: 13.2 kDa
Reference: 32061-1
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Source: Active recombinant human β-NGF expressed in CHO cells • Amino acids: 122-239 • MW: 13.2 kDa
Reference: HY-P3513
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β-Neo-Endorphin is an endogenous opioid peptide. β-Neo-Endorphin is a hypothalamic “big” Leu-enkephalin of porcine origin. β-Neo-Endorphin shows activation of the Erk1/2, MMP-2 and MMP-9.
Reference: HY-P3515
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β-Lipotropin (61-69) is a potent opioid agonist.
Reference: HY-P3550
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β-Lipotropin (60-65) (β-LPH (60-65)), an opioid peptide, is a potent opioid agonist.
Reference: HY-P3831
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β-Interleukin II (44-56) is a 44-56 fragment of beta-interleukin II polypeptide. Interleukin family are a group of cytokines associated with immune system, mainly expressed by leukocytes.
Reference: HY-P2775
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β-Glucosidase is the rate-limiting enzyme of degradation of cellulose. β-Glucosidase is a major group among glycoside hydrolases. β-Glucosidase is involved in the degradation of cellulose in soils and has potential...
Reference: HY-P1866A
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β-Endorphin, equine TFA is an endogenous opioid peptide, which binds at high affinity to both μ/δ opioid receptors. β-Endorphin, equine TFA has analgesic properties.
Reference: HY-P1866
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β-Endorphin, equine is an endogenous opioid peptide, which binds at high affinity to both μ/δ opioid receptors. Analgesic properties.
Reference: HY-P3517
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β-Endorphin, an endogenous opioid neuropeptide, is an opioid receptor agonist. β-Endorphin binds preferentially to μ-opioid receptors and is produced in certain neurons of the central and peripheral nervous system and...
Reference: HY-P3489
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β-Corticotropin (swine) is a synthetic form of the peptide hormone corticotropin (ACTH). β-Corticotropin stimulates steroid release.
Reference: HY-P1548A
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β-CGRP, human TFA (Human β-CGRP TFA) is one of calcitonin peptides, acts via the complex of calcitonin-receptor-like receptor (CRLR) and receptor-activity-modifying protein (RAMP), with IC50s of 1 nM and 300 nM for...
Reference: HY-P1548B
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β-CGRP, human acetate (Human β-CGRP acetate) is one of calcitonin peptides, acts via the complex of calcitonin-receptor-like receptor (CRLR) and receptor-activity-modifying protein (RAMP), with IC50s of 1 nM and 300...
Reference: HY-P1548
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β-CGRP, human (Human β-CGRP) is one of calcitonin peptides, acts via the complex of calcitonin-receptor-like receptor (CRLR) and receptor-activity-modifying protein (RAMP), with IC50s of 1 nM and 300 nM for CRLR/RAMP1...
Reference: HY-P1589
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β-catenin peptide is a 8-aa peptide, and can promote thymocyte positive selection.
Reference: 300013-1
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Peptide Sequence: human β-catenin amino acids 43-62 (APSLSGKGNPEEEDVDTSQV) · To be used in conjunction with Cayman’s β-catenin polyclonal antibody (Catalog No. 100029) to block protein-antibody complex formation...
Reference: 28780-100
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Source: Recombinant N-terminal His-TEV-tagged human β-catenin (138-781) purified from E. coli • Amino acids: 138-781 • MW: 72.4 kDa
Reference: HY-P3777
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β-Bag cell peptide is a neuroactive peptide. β-Bag cell peptide elevates cyclic AMP levels in the bag cell neurons. β-Bag cell peptide decreases the amplitudes of the voltage-dependent potassium currents.
Reference: HY-P1363S
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β-Amyloid-15N (1-42), human (TFA) is the 15N-labledβ-Amyloid (1-42) (TFA). β-Amyloid (1-42), human TFA (Amyloid β-Peptide (1-42) (human) TFA) is a 42-amino acid peptide which plays a key role in the pathogenesis of...

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