2946 Results for "

TYR

" in MedChemExpress (MCE) Product Catalog:
Products (2946)

2946 Results for "TYR" in MCE Product Catalog:

Cat. No.: HY-P1363S
Synonyms: Amyloid β-peptide-15N (1-42) (human) TFA
Target:  

Amyloid-β

Research Areas:  

Neurological Disease

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 Alzheimer disease .
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Cat. No.: HY-P1363S1
β-Amyloid (1-42), human, Ala( 13C3, 15N) TFA is the 13C and 15N-labeled β-Amyloid (1-42), human (HY-P1363A). β-Amyloid (1-42) (Amyloid β-peptide (1-42)), human, a 42-amino acid peptide that has not been treated with HFIP, is a brain-penetrant amyloid protein fragment, which can be used in research on Alzheimer's disease and Down’s syndrome. β-Amyloid (1-42), human remaining as a monomer exhibits antioxidant and neuroprotective effects. β-Amyloid (1-42), human, after being monomericized by HFIP and dissolved in DMSO to form the stock solution, on the one hand, can form soluble oligomers (AβOs) when incubated at 4 °C, which have synaptic toxicity and neurotoxicity; on the other hand, it can be incubated at 37 °C to form insoluble fibrils, with lower neurotoxicity, and participating in the oxidative damage process. Aβ42 oligomers bind to various neuronal surface receptors (such as PrPc, mGluR5, NMDA receptors, etc.), triggering oxidative stress, calcium homeostasis imbalance, and synaptic toxicity via activating downstream signaling pathways, leading to neuronal dysfunction and death .
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Cat. No.: HY-P3014
Target:  

Potassium Channel

Research Areas:  

Others

Hongotoxin-1, isolated from venom of Centruroides limbatus, is the inhibitor of potassium channel, with IC50 for? Kv1.1, Kv1.2, Kv1.3, and Kv1.6 of 31 pM, 170 pM, 86 pM,and 6000 pM, respectively .
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Cat. No.: HY-P3111
Target:  

Potassium Channel

Research Areas:  

Others

Slotoxin, a peptide from Centruroides noxius Hoffmann scorpion venom, blocks high conductance calcium-activated potassium channel, with Kd of 1.5 nM[1].
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Cat. No.: HY-P3507
CAS No.: 1081110-69-1
Synonyms: ShK-186
Dalazatide (ShK-186) is a specific Kv1.3 potassium channel peptide inhibitor. Dalazatide can be used in the study of autoimmune diseases such as multiple sclerosis (MS), lupus erythematosus, psoriasis, rheumatoid arthritis, type 1 diabetes and inflammatory bowel disease .
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Cat. No.: HY-P3507A
Synonyms: ShK-186 TFA
Dalazatide (ShK-186) TFA is a specific Kv1.3 potassium channel peptide inhibitor. Dalazatide TFA can be used in the study of autoimmune diseases such as multiple sclerosis (MS), lupus erythematosus, psoriasis, rheumatoid arthritis, type 1 diabetes and inflammatory bowel disease .
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Cat. No.: HY-P4732
CAS No.: 1678414-71-5
Research Areas:  

Others

5-FAM-Amylin (human) is a fluorescently labeled peptide derived from human amylin, which is involved in glucose metabolism. 5-FAM-Amylin (human) is an important tool in biochemical research, especially in studies of amyloid fibril formation .
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Cat. No.: HY-P4742
CAS No.: 1927927-42-1
Synonyms: 6-FAM-AEEAC-SHK
Research Areas:  

Others

6-FAM-AEEAc-Stichodactyla helianthus Neurotoxin (ShK) (6-FAM-AEEAC-SHK) is a polypeptide that can be used as a Biochemical Assay Reagents.
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Cat. No.: HY-P4742A
Synonyms: 6-FAM-AEEAC-SHK TFA
6-FAM-AEEAc-Stichodactyla helianthus Neurotoxin (ShK) TFA (6-FAM-AEEAC-SHK TFA) is a peptide neurotoxin conjugated with a fluorescent marker. 6-FAM-AEEAc-Stichodactyla helianthus Neurotoxin (ShK) TFA can block voltage-gated potassium channels (kv1.1 and kv1.2) to prolong the duration of action potentials, thereby affecting the conduction of neural signals. 6-FAM-AEEAc-Stichodactyla helianthus Neurotoxin (ShK) TFA can be used in neuroscience research .
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Cat. No.: HY-P4861
CAS No.: 1872440-40-8
Target:  

Amyloid-β

Research Areas:  

Others

Biotinyl-Ahx-Amyloid β-Protein (1-42) is abiotinylated β-Amyloid (1-42), human (TFA) (HY-P1363).
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Cat. No.: HY-P5096
CAS No.: 1802087-77-9
Target:  

Amyloid-β

Research Areas:  

Neurological Disease

FITC-β-Ala-Amyloid β-Protein (1-42) is a FITC tagged Aβ1-42 peptide. Aβ1-42 plays a key role in the pathogenesis of Alzheimer’s disease .
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Cat. No.: HY-P5142
CAS No.: 193981-10-1
Synonyms: ω-ACTX-Hv1; ω-Atracotoxin-HV1
ω-Hexatoxin-Hv1a (ω-ACTX-Hv1; ω-Atracotoxin-HV1) is an orally active insecticidal neurotoxin containing an inhibitor cystine knot motif and a selective calcium channel inhibitor. ω-Hexatoxin-Hv1a blocks L-type voltage-dependent Ca 2+ channels and reduces intracellular calcium ion concentration, thereby decreasing apoptosis, necroptosis and oxidative stress, and promoting cell recovery and energy level elevation. ω-Hexatoxin-Hv1a causes larval paralysis and death by impairing neurotransmission in the central nervous system of insects. It shows high injectable toxicity against insects of multiple orders, but exhibits weak oral toxicity. ω-Hexatoxin-Hv1a is widely applicable to studies related to ischemia-reperfusion injury, atopic dermatitis, and ischemic injury of cardiomyocytes and neurons .
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Cat. No.: HY-P5142A
Synonyms: ω-ACTX-Hv1 TFA; ω-Atracotoxin-HV1 TFA
ω-Hexatoxin-Hv1a (ω-ACTX-Hv1; ω-Atracotoxin-HV1) TFA is an orally active insecticidal neurotoxin containing an inhibitor cystine knot motif and a selective calcium channel inhibitor. ω-Hexatoxin-Hv1a TFA blocks L-type voltage-dependent Ca 2+ channels and reduces intracellular calcium ion concentration, thereby decreasing apoptosis, necroptosis and oxidative stress, and promoting cell recovery and energy level elevation. ω-Hexatoxin-Hv1a TFA causes larval paralysis and death by impairing neurotransmission in the central nervous system of insects. It shows high injectable toxicity against insects of multiple orders, but exhibits weak oral toxicity. ω-Hexatoxin-Hv1a TFA is widely applicable to studies related to ischemia-reperfusion injury, atopic dermatitis, and ischemic injury of cardiomyocytes and neurons .
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Cat. No.: HY-P5161
Target:  

GLP Receptor GCGR

Research Areas:  

Metabolic Disease

FC382K10W15 is a glucagon analogue and GLP-1R/GCGR agonist. FC382K10W15 can be used in type 2 diabetes research .
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Cat. No.: HY-P5161A
Target:  

GLP Receptor GCGR

Research Areas:  

Metabolic Disease

FC382K10W15 TFA is a glucagon analogue and GLP-1R/GCGR agonist. FC382K10W15 TFA can be used in type 2 diabetes research .
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Cat. No.: HY-P5182
CAS No.: 201948-00-7
Target:  

Potassium Channel

Research Areas:  

Inflammation/Immunology

HsTX1, from the scorpion Heterometrus spinnifer, is a 34-residue, C-terminally amidated peptide cross-linked by four disulfide bridges. HsTX1, an the inhibitor of potassium channel, with IC50 for Kv1.3 of 12 pM inhibits TEM cell activation and attenuates inflammation in autoimmunity .
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Cat. No.: HY-P5182A
Target:  

Potassium Channel

Research Areas:  

Inflammation/Immunology

HsTX1 (TFA) toxin, from the scorpion Heterometrus spinnifer, is a 34-residue, C-terminally amidated peptide cross-linked by four disulfide bridges. HsTX1 (TFA) is an the inhibitor of potassium channel, with IC50 for Kv1.3 of 12 pM and inhibits TEM cell activation and attenuates inflammation in autoimmunity .
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Cat. No.: HY-P5184
CAS No.: 651782-02-4
Synonyms: HNTX-IV
Target:  

Sodium Channel

Research Areas:  

Neurological Disease

Hainantoxin-IV is a specific antagonist of Sodium Channel, targeting to tetrodotoxin-sensitive (TTX-S) voltage-gated sodium channels. His28 and Lys32 are the key resiudes of Hainantoxin-IV for binding with target, while Hainantoxin-IV adopts an inhibitor cystine knot motif .
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Cat. No.: HY-P5738
CAS No.: 331714-57-9
Target:  

Bacterial

Research Areas:  

Infection

Palicourein is a 37 amino acid cyclic polypeptide. Palicourein inhibits the in vitro cytopathic effects of HIV-1RF infection of CEM-SS cells with an EC50 value of 0.1 μM and an IC50 value of 1.5 μM .
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Cat. No.: HY-P5854
Target:  

Potassium Channel

Research Areas:  

Neurological Disease

Aa1 toxin, a neurotoxic peptide that can be obtained from the venom of Androctonus australis Garzoni, is a specific potassium channel blocker. Aa1 toxin can be used in the study of neurological diseases .
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