362 Results for "

blocking peptide

" in MedChemExpress (MCE) Product Catalog:
Products (362)

362 Results for "blocking peptide" in MCE Product Catalog:

2185
2185 Publications Verification
Art. -Nr.: HY-13259
CAS. Nr.: 133407-82-6
Reinheit:  99.90%
Synonyms: Z-Leu-Leu-Leu-al; MG132
Forschungsgebiete:  

Cancer

MG-132 (Z-Leu-Leu-Leu-al) is a potent proteasome and calpain inhibitor with IC50s of 100 nM and 1.2 μM, respectively. MG-132 effectively blocks the proteolytic activity of the 26S proteasome complex. MG-132, a peptide aldehyde, also is an autophagy activator. MG-132 also induces apoptosis .
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126
126 Cited Publications
Art. -Nr.: HY-P1410
CAS. Nr.: 1209500-46-8
GsMTx4 is a spider venom peptide that selectively inhibits cationic-permeable mechanosensitive channels (MSCs) belonging to the Piezo and TRP channel families. GsMTx4 also blocks cation-selective stretch-activated channels (SACs) , attenuates lysophosphatidylcholine (LPC)-induced astrocyte toxicity and microglial reactivity. GsMTx4 is an important pharmacological tool for identifying the role of these excitatory MSCs in normal physiology and pathology .
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126
126 Cited Publications
Art. -Nr.: HY-P1410A
GsMTx4 TFA is a spider venom peptide that selectively inhibits cationic-permeable mechanosensitive channels (MSCs) belonging to the Piezo and TRP channel families. GsMTx4 TFA also blocks cation-selective stretch-activated channels (SACs) , attenuates lysophosphatidylcholine (LPC)-induced astrocyte toxicity and microglial reactivity. GsMTx4 TFA is an important pharmacological tool for identifying the role of these excitatory MSCs in normal physiology and pathology .
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31
31 Cited Publications
Art. -Nr.: HY-13749
CAS. Nr.: 486460-32-6
Reinheit:  99.75%
Synonyms: MK-0431
Sitagliptin (MK-0431) is an orally active and highly selective DPP4 inhibitor with an IC50 value of 19 nM. Sitagliptin blocks the degradation of glucagon-like peptide-1 (GLP-1) and glucose-dependent insulinotropic peptide (GIP) by competing inhibition mechanism (Kᵢ = 1 nM), thereby increasing the level of active incretin. Sitagliptin can also directly stimulate the secretion of GLP-1 by intestinal L cells by activating the cAMP/PKA and ERK1/2 pathways, and this effect is independent of DPP-4. Sitagliptin shows protective effects on pancreatic islet grafts in 1-type diabetes models. Sitagliptin can be used for the study of 1-type and 2-type diabetes .
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31
31 Cited Publications
Art. -Nr.: HY-13749A
CAS. Nr.: 654671-78-0
Reinheit:  99.79%
Synonyms: MK-0431 phosphate
Sitagliptin (MK-0431) phosphate is an orally active and highly selective DPP4 inhibitor with an IC50 value of 19 nM. Sitagliptin phosphate blocks the degradation of glucagon-like peptide-1 (GLP-1) and glucose-dependent insulinotropic peptide (GIP) by competing inhibition mechanism (Kᵢ = 1 nM), thereby increasing the level of active incretin. Sitagliptin phosphate can also directly stimulate the secretion of GLP-1 by intestinal L cells by activating the cAMP/PKA and ERK1/2 pathways, and this effect is independent of DPP-4. Sitagliptin phosphate shows protective effects on pancreatic islet grafts in 1-type diabetes models. Sitagliptin phosphate can be used for the study of 1-type and 2-type diabetes .
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31
31 Cited Publications
Art. -Nr.: HY-13749B
CAS. Nr.: 654671-77-9
Reinheit:  99.83%
Synonyms: MK-0431 phosphate monohydrate
Sitagliptin (MK-0431) phosphate monohydrate is an orally active and highly selective DPP4 inhibitor with an IC50 value of 19 nM. Sitagliptin phosphate monohydrate blocks the degradation of glucagon-like peptide-1 (GLP-1) and glucose-dependent insulinotropic peptide (GIP) by competing inhibition mechanism (Kᵢ = 1 nM), thereby increasing the level of active incretin. Sitagliptin phosphate monohydrate can also directly stimulate the secretion of GLP-1 by intestinal L cells by activating the cAMP/PKA and ERK1/2 pathways, and this effect is independent of DPP-4. Sitagliptin phosphate monohydrate shows protective effects on pancreatic islet grafts in 1-type diabetes models. Sitagliptin phosphate monohydrate can be used for the study of 1-type and 2-type diabetes .
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15
15 Cited Publications
Art. -Nr.: HY-16993
CAS. Nr.: 1801787-56-3
Target:  

Apoptosis WDR5

Forschungsgebiete:  

Cancer

OICR-9429, a chemical probe, is high affinity WD repeat domain 5 (WDR5) inhibitor, competitively blocks WDR5 interaction with MLL protein via binding the central peptide-binding pocket of WDR5. OICR-9429 can suppress histone H3K4 trimethylation and can be used for the research of various cancers including non-MLL-rearranged leukaemia, colon, pancreatic, prostate cancer and bladder cancer (BCa) .
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13
13 Cited Publications
Art. -Nr.: HY-P0256
CAS. Nr.: 24345-16-2
Synonyms: Apamine
Apamin (Apamine) is an 18 amino acid peptide neurotoxin found in apitoxin (bee venom), is known as a specifically selective blocker of Ca 2+-activated K + (SK) channels and exhibits anti-inflammatory and anti-fibrotic activity .
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13
13 Cited Publications
Art. -Nr.: HY-P0256A
Synonyms: Apamine TFA
Apamin TFA (Apamine TFA) is an 18 amino acid peptide neurotoxin found in apitoxin (bee venom), is known as a specifically selective blocker of Ca 2+-activated K + (SK) channels and exhibits anti-inflammatory and anti-fibrotic activity .
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10
10 Cited Publications
Art. -Nr.: HY-P2565
Forschungsgebiete:  

Inflammation/Immunology

Pepinh-TRIF (TFA) is a 30 aa peptide that blocks TIR-domain-containing adapter-inducing interferon-β (TRIF) signaling by interfering with TLR-TRIF interaction .
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10
10 Cited Publications
Art. -Nr.: HY-P3212
CAS. Nr.: 3109368-53-5
Forschungsgebiete:  

Cancer

Allo-aca, a leptin peptidomimetic, is a potent, specific leptin receptor antagonist peptide. Allo-aca blocks leptin signaling and action in numerous in vitro and in vivo models .
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10
10 Cited Publications
Art. -Nr.: HY-B1588
CAS. Nr.: 5697-56-3
Carbenoxolone is a blood-brain barrier-permeable Pannexin1 inhibitor, gap junction (Gap junction) blocker, and β-amyloid 42 inhibitor. Carbenoxolone modulates voltage-gated currents of wild-type and mutant Panx1, and inhibits stimulus-activated Panx1 channel function. Carbenoxolone interacts with stable residues of β-amyloid 42 peptides, fibrils and oligomers, thereby inhibiting their aggregation. Carbenoxolone alleviates liver fibrosis. Carbenoxolone exerts neuroprotective and nootropic effects. Carbenoxolone can be used in studies related to Alzheimer's disease and liver fibrosis .
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9
9 Cited Publications
Art. -Nr.: HY-P1082
CAS. Nr.: 197250-15-0
Forschungsgebiete:  

Cardiovascular Disease

Gap 26 is a connexin mimetic peptide, composed of residue numbers 63-75 of the first extracellular loop of connexin 43 (gap junction blocker), containing the SHVR amino acid motif .
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9
9 Cited Publications
Art. -Nr.: HY-P1082A
Forschungsgebiete:  

Cardiovascular Disease

Gap 26 TFA is a connexin mimetic peptide, composed of residue numbers 63-75 of the first extracellular loop of connexin 43 (gap junction blocker), containing the SHVR amino acid motif .
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9
9 Cited Publications
Art. -Nr.: HY-10805
CAS. Nr.: 871224-64-5
Reinheit:  99.46%
Synonyms: ACT 078573
Almorexant (ACT 078573) is an orally active, potent and competitive dual orexin receptor antagonist, with Kd values of 1.3 nM (OX1) and 0.17 nM (OX2), respectively. Almorexant reversibly blocks signaling of orexin-A and orexin-B peptides. Almorexant totally blocked the intracellular Ca 2+ signal pathway. Almorexant stimulates caspase-3 activity in AsPC-1 cells and induces apoptosis .
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9
9 Cited Publications
Art. -Nr.: HY-10805A
CAS. Nr.: 913358-93-7
Reinheit:  99.98%
Synonyms: ACT 078573 hydrochloride
Almorexant (ACT 078573) hydrochloride is an orally active, potent and competitive dual orexin receptor antagonist, with Kd values of 1.3 nM (OX1) and 0.17 nM (OX2), respectively. Almorexant hydrochloride reversibly blocks signaling of orexin-A and orexin-B peptides. Almorexant hydrochloride totally blocked the intracellular Ca 2+ signal pathway. Almorexant hydrochloride stimulates caspase-3 activity in AsPC-1 cells and induces apoptosis .
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8
8 Cited Publications
Art. -Nr.: HY-17417
CAS. Nr.: 357-08-4
Target:  

Opioid Receptor

Forschungsgebiete:  

Neurological Disease

Naloxone hydrochloride is an orally active opioid receptor antagonist. Naloxone hydrochloride attenuates spinal cord stimulation‑associated anti‑hyperalgesic effects, antagonizes physiologic effects of endogenous opioid peptides linked to central nervous system injury sequelae, functions as a pressor agent to induce modest elevations in mean arterial blood pressure, exerts neuroprotective effects to improve post‑traumatic neurologic motor function, blocks opioid receptor‑mediated amnesic pathways, enhances memory consolidation, reverses Adrenocorticotropic hormone (ACTH) (HY-106373)- and epinephrine‑induced amnesia, and potentiates the memory‑facilitatory effects of ACTH and epinephrine .
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8
8 Cited Publications
Art. -Nr.: HY-17417A
CAS. Nr.: 465-65-6
Target:  

Opioid Receptor

Forschungsgebiete:  

Neurological Disease

Naloxone hydrochloride is an orally active opioid receptor antagonist. Naloxone hydrochloride attenuates spinal cord stimulation‑associated anti‑hyperalgesic effects, antagonizes physiologic effects of endogenous opioid peptides linked to central nervous system injury sequelae, functions as a pressor agent to induce modest elevations in mean arterial blood pressure, exerts neuroprotective effects to improve post‑traumatic neurologic motor function, blocks opioid receptor‑mediated amnesic pathways, enhances memory consolidation, reverses Adrenocorticotropic hormone (ACTH) (HY-106373)‑ and epinephrine‑induced amnesia, and potentiates the memory‑facilitatory effects of ACTH and epinephrine .
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7
7 Cited Publications
Art. -Nr.: HY-18962
CAS. Nr.: 20324-87-2
Forschungsgebiete:  

Cancer

AMI-1 is a potent, cell-permeable and reversible inhibitor of protein arginine N-methyltransferases (PRMTs), with IC50s of 8.8 μM and 3.0 μM for human PRMT1 and yeast-Hmt1p, respectively. AMI-1 exerts PRMTs inhibitory effects by blocking peptide-substrate binding .
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7
7 Cited Publications
Art. -Nr.: HY-18962A
CAS. Nr.: 134-47-4
Forschungsgebiete:  

Cancer

AMI-1 free acid is a potent, cell-permeable and reversible inhibitor of protein arginine N-methyltransferases (PRMTs), with IC50s of 8.8 μM and 3.0 μM for human PRMT1 and yeast-Hmt1p, respectively. AMI-1 free acid exerts PRMTs inhibitory effects by blocking peptide-substrate binding .
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