MedChem Express
β1-3 Galactosidase is a highly specific exoglycosidase that catalyzes the hydrolysis of terminal β1-3-linked galactose from oligosaccharides and glycoprotein substrates, at a much lower rate, β1-6 linked galactose residues from oligosaccharides[1].
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β1-3,4 Galactosidase is a highly specific exoglycosidase that catalyzes the hydrolysis of terminal β1-3 and β1-4 linked galactose residues from oligosaccharides[1].
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β1-3,4,6 Galactosidase is a broad specificity exoglycosidase that catalyzes the hydrolysis of terminal, non-reducing β1-3 β1-4 and β1-6 linked galactose residues from oligosaccharides, with β1-6 linked galactose residues at a slower rate[1].
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β1-3,4,6 Galactosidase is a broad specificity exoglycosidase that catalyzes the hydrolysis of terminal, non-reducing β1-3 β1-4 and β1-6 linked galactose residues from oligosaccharides, with β1-6 linked galactose residues at a slower rate[1].
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β1-3,4,6 Galactosidase is a broad specificity exoglycosidase that catalyzes the hydrolysis of terminal, non-reducing β1-3 β1-4 and β1-6 linked galactose residues from oligosaccharides, with β1-6 linked galactose residues at a slower rate[1].
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β1-3,6 Galactosidase (EC 3.2.1.23) is a highly specific exoglycosidase that catalyzes the hydrolysis of non-reducing terminal β1-3 and β1-6 linked galactose from complex carbohydrates and glycoproteins[1].
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β1-4 Galactosidase (EC 3.2.1.23) is a highly specific exoglycosidase that catalyzes the hydrolysis of terminal, non-reducing β1-4 linked galactose residues from oligosaccharides[1].
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β2AR agonist 2(compound 8a) is a β2 -Adrenergic receptor (β2AR) agonist. β2AR agonist 2 is a saturated nitrogen ring compound containing 4- to 7-membered heterocycle. β2AR agonist 2 has a chiral structure (the -R form) by carrying carbon containing the essential hydroxyl, thereby enhancing cellular glucose uptake (GU) activity and significantly stimulating glucose uptake by […]
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β2AR agonist 3 (compound 9a) is a β2-adrenergic receptor (β2AR) agonist. β2AR agonist 3 can be used for type 2 diabetes research[1].
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β3-AR agonist 3 is a potent beta-3 adrenoreceptor agonist. β3-AR agonist 3 has the potential for prostatitis research[1].
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β5i-IN-1 is a potent and selective inhibitor of β5i with a IC50 of 8.463 nM. β5i-IN-1 releases TNF-α and IL-6 and influences the transcriptional activity of NF-κB. β5i-IN-1 can be used in study idiopathic pulmonary fibrosis[1].
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γ-Acetylenic GABA (GAG) hydrochloride is an irreversible inhibitor of GABA-transaminase. γ-Acetylenic GABA hydrochloride can increase the concentration of GABA in rat brain[1][2][3]. γ-Acetylenic GABA (hydrochloride) is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
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γ-Aminobutyric acid (Standard) is the analytical standard of γ-Aminobutyric acid. This product is intended for research and analytical applications. γ-Aminobutyric acid (4-Aminobutyric acid) is a major inhibitory neurotransmitter in the adult mammalian brain, binding to the ionotropic GABA receptors (GABAA receptors) and metabotropic receptors (GABAB receptors. γ-Aminobutyric acid shows calming effect by blocking specific signals […]
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γ-CEHC is a γ-tocopherol (HY-N7148) metabolite. γ-CEHC is mainly excreted into the urine rather than into the bile. γ-CEHC is present in conjugated form in human urine, mainly as glucuronide[1].
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γ-Costic acid (compound 13)is a kind of terpenoid. γ-Costic acid can be obtained by chemical transformation. γ-Costic acid has effective antifeedant and cytotoxic doses with EC50 0.5 μg/ml against L. decemlineata[1].
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gamma-Cyclodextrin hydrate Vetec(TM) reagent grade is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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γ-Fibrinogen377-395 is a fibrinogen-derived inhibitory peptide, as well as fibrinogen epitope. γ-Fibrinogen377-395 blocks microglia activation and inhibits fibrin-Mac-1 interactions in vitro, and suppresses experimental autoimmune encephalomyelitis (EAE) in mice in vivo. γ-Fibrinogen377-395 can be used for research in multiple sclerosis (MS), and other neuroinflammatory diseases associated with blood-brain barrier disruption and microglia activation[1].
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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 experimental autoimmune encephalomyelitis (EAE) in mice in vivo. γ-Fibrinogen377-395 TFA can be used for research in multiple sclerosis (MS), and other neuroinflammatory diseases associated with blood-brain barrier disruption and microglia […]
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γ-Glu-Tyr, a competitive inhibitor of dipeptidyl peptidase-IV (DPP-IV) (IC50=6.77 mM), is a potentially functional component of the type 2 diabetes diet[1].
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γ-Glu-Tyr, a competitive inhibitor of dipeptidyl peptidase-IV (DPP-IV) (IC50=6.77 mM), is a potentially functional component of the type 2 diabetes diet[1].
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γ-Glu-Tyr, a competitive inhibitor of dipeptidyl peptidase-IV (DPP-IV) (IC50=6.77 mM), is a potentially functional component of the type 2 diabetes diet[1].
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γ-Glutamyl hydrolase is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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γ-Glutamyl hydrolase is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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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 interaction, functional analysis, epitope screening, especially in the field of agent research and development[1].
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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 interaction, functional analysis, epitope screening, especially in the field of agent research and development[1].
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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 interaction, functional analysis, epitope screening, especially in the field of agent research and development[1].
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γ-Glutamylornithine is the urine excreta of patients with HHH syndrome (hyperuricemia, hyperaminemia, and hypercitrullinuria) and rotary atrophy associated with hyperuricemia. Increased levels of endogenous ornithine increase levels of γ-Glutamylornithine in the urine[1].
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γ-Glutamylornithine is the urine excreta of patients with HHH syndrome (hyperuricemia, hyperaminemia, and hypercitrullinuria) and rotary atrophy associated with hyperuricemia. Increased levels of endogenous ornithine increase levels of γ-Glutamylornithine in the urine[1].
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γ-Glutamylornithine is the urine excreta of patients with HHH syndrome (hyperuricemia, hyperaminemia, and hypercitrullinuria) and rotary atrophy associated with hyperuricemia. Increased levels of endogenous ornithine increase levels of γ-Glutamylornithine in the urine[1].
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γ-Glutamylserine (γ-Glu-Ser) is a calcium receptor activator. γ-Glutamylserine can be used for Parkinson’s disease research, as well as diabetes or obesity study[1][2].
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γ-Glutamylserine (γ-Glu-Ser) is a calcium receptor activator. γ-Glutamylserine can be used for Parkinson’s disease research, as well as diabetes or obesity study[1][2].
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γ-Glutamylserine (γ-Glu-Ser) is a calcium receptor activator. γ-Glutamylserine can be used for Parkinson’s disease research, as well as diabetes or obesity study[1][2].
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γ-Glutamylserine (γ-Glu-Ser) is a calcium receptor activator. γ-Glutamylserine can be used for Parkinson’s disease research, as well as diabetes or obesity study[1][2].
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γ-Glutamylserine TFA (γ-Glu-Ser TFA) is a calcium receptor activator. γ-Glutamylserine TFA can be used for Parkinson’s disease research, as well as diabetes or obesity study[1][2].
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γ-Isofagarine (Iso-γ-fagarine) is an alkaloid that can be isolated from the root bark of Dictamnus angustifolius. Dictamnus angustifolius has been used in the research of rheumatism, bleeding, itching, jaundice, chronic hepatitis, skin diseases, etc[1].
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γ-Methoxyisoeugenol (Compound 5) is an anticoagulant agent that remarkably prolongs the thrombin time with a good dose-effect relationship at concentrations from 6.25 to 100 mM, but shows no significant differences in prothrombin time[1].
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γ-Sanshool can be isolated from Zanthoxylum piperitum. γ-Sanshool inhibits human ACAT-1 and ACAT-2 activities with IC50s of 12.0 and 82.6 μM[1].
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γ-Secretase modulator 14 is a γ-secretase modulator. γ-Secretase modulator 14 has the potenial for Alzheimer’s disease (AD) research (WO2013010904A1; compound 42)[1].
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γ3-MSH is derived from the N-terminal segment of pro-opiomelanocortin (POMC). γ3-MSH stimulates aldosterone secretion by human adrenal tumor cells in culture[1].
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δ-Buthitoxin-Hj1a, a scorpion-venom peptide, is a potent NaV1.1 agonist with an EC50 of 17nM. δ-Buthitoxin-Hj1a can be used for the Dravet syndrome (DS) research[1].
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δ-Buthitoxin-Hj2a, a scorpion-venom peptide, is a potent NaV1.1 agonist with an EC50 of 32 nM. δ-Buthitoxin-Hj2a can be used for the Dravet syndrome (DS) research[1].
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δ-Dendrotoxin is a K+ channel blocker that can be obtained from the venom of the black mamba snake. δ-Dendrotoxin can be used in the study of neurological diseases[1].
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