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| Cat. No. | Product Name | Field of Application | Chemical Structure |
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| DC40205 | TP-238 |
TP-238 is a potent and selective dual CECR2/BPTF probe with pIC50 values of 7.5 and 6.5, respectively. TP-238 also inhibits BRD9 with a pIC50 of 5.9 and is less active against other 338 kinases.
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| DC40204 | Pronase E (Activity≥4000 U/mg) |
Pronase E (Activity≥4000 U/mg) is a mixture of proteolytic enzymes that is obtained from Streptomyces griseus and could digest protein into individual amino acids.
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| DC40203 | Methyl 2,3-O-Isopropylidene-β-L-ribofuranoside |
Methyl 2,3-O-Isopropylidene-β-L-ribofuranoside is an enantiomer of Methyl 2,3-O-Isopropylidene-β-D-ribofuranoside. Methyl 2,3-O-Isopropylidene-β-L-ribofuranoside is a derivative of L-ribose.
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| DC40202 | Methyl 2,3-O-Isopropylidene-β-D-ribofuranoside |
Methyl 2,3-O-Isopropylidene-β-D-ribofuranoside, obtained from D-ribose, is an intermediate for the synthesis of riboside-containing arsenic compound.
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| DC40201 | 1-Naphthyl phosphate potassium salt |
1-Naphthyl phosphate potassium salt is a non-specific phosphatase inhibitor. 1-Naphthyl phosphate potassium salt decreases the splice-correcting effect.
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| DC40200 | RO2959 monohydrochloride |
RO2959 monohydrochloride is a potent and selective CRAC channel inhibitor with an IC50 of 402 nM. RO2959 monohydrochloride is a potent blocker of store operated calcium entry (SOCE) mediated by Orai1/Stim1 channels with an IC50 of 25 nM. RO2959 monohydrochloride is also a potent inhibitor of human IL-2 production, and potently blocks T cell receptor triggered gene expression and T cell functional pathways.
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| DC40199 | Acetyl Coenzyme A trisodium |
Acetyl Coenzyme A trisodium (Acetyl-CoA trisodium) is a central metabolic intermediate. Acetyl Coenzyme A trisodium is the actual molecule through which glycolytic pyruvate enters the tricarboxylic acid (TCA) cycle, is a key precursor of lipid synthesis, and is the sole donor of the acetyl groups for acetylation. Acetyl Coenzyme A trisodium acts as a potent allosteric activator of pyruvate carboxylase (PC).
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| DC40198 | 3-O-Methyldopa D3 |
3-O-Methyldopa D3 (3-Methoxy-L-tyrosine D3) is deuterium labeled 3-O-Methyldopa. 3-O-Methyldopa is a metabolite of L-DOPA which is formed by catechol-O-methyltransferase (COMT). 3-O-Methyldopa competitively inhibits the pharmacodynamics of l-DOPA and dopamine.
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| DC40197 | 3-O-Methyldopa |
3-O-Methyldopa (3-Methoxy-L-tyrosine) is a metabolite of L-DOPA which is formed by catechol-O-methyltransferase (COMT). 3-O-Methyldopa competitively inhibits the pharmacodynamics of l-DOPA and dopamine.
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| DC40196 | Leukotriene E4 |
Leukotriene E4 (LTE4) is produced by the action of dipeptidase on LTD4. Leukotriene E4 is one of the constituents of slow-reacting substance of anaphylaxis (SRS-A). Leukotriene E4 accumulates in both plasma and urine and urinary excretion of Leukotriene E4 is most often used as an indicator of asthma.
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| DC40195 | 11-Oxo etiocholanolone |
11-Oxo etiocholanolone (11-Ketoetiocholanolone) is a metabolite of Etiocholanolone. Etiocholanolone is the excreted metabolite of testosterone and has anticonvulsant activity.
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| DC40194 | Leukotriene D4 |
Leukotriene D4 is one of the constituents of slow-reacting substance of anaphylaxis (SRS-A) produced by the metabolism of LTC4 by γ-glutamyl transpeptidase. Leukotriene D4 is the first cysteinyl-leukotriene metabolite of LTC4. Leukotriene D4-induced bronchoconstriction and enhanced vascular permeability contribute to the pathogenesis of asthma and acute hypersensitivity.
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| DC40193 | Leukotriene C4 D5 |
Leukotriene C4 D5 is the deuterium labeled Leukotriene C4. Leukotriene C4 is the parent cysteinyl leukotriene produced by the LTC4 synthase catalyzed conjugation of glutathione to LTA4.
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| DC40192 | Leukotriene C4 |
Leukotriene C4 is the parent cysteinyl leukotriene produced by the LTC4 synthase catalyzed conjugation of glutathione to LTA4. Leukotriene C4 is produced by neutrophils, macrophages, mast cells, and by transcellular metabolism in platelets. Leukotriene C4 is one of the constituents of slow-reacting substance of anaphylaxis (SRS-A) and exhibits potent smooth muscle contracting activity.
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| DC40191 | L-Glyceric acid sodium |
L-Glyceric acid sodium is a mainly urinary metabolite accumulating in rare inherited metabolic disease L-glyceric aciduria. L-Glyceric acid sodium can be used to diagnose primary hyperoxaluria type 2 (PH2). L-Glyceric acid sodium excretion to distinguish PH1 from PH2.
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| DC40190 | L-Glyceric acid |
L-Glyceric acid is a mainly urinary metabolite accumulating in rare inherited metabolic disease L-glyceric aciduria. L-Glyceric acid can be used to diagnose primary hyperoxaluria type 2 (PH2). L-Glyceric acid excretion to distinguish PH1 from PH2.
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| DC40189 | N1,N12-Diacetylspermine dihydrochloride |
N1,N12-Diacetylspermine dihydrochloride is a diacetylated derivative of spermine. Upregulation of N1,N12-Diacetylspermine dihydrochloride has been linked to the incidence of cancer, making it to be a potential biomarker for cancer detection.
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| DC40188 | 11β-Hydroxyandrosterone |
11β-Hydroxyandrosterone is a 11-oxygenated androgen metabolite of 11β-hydroxyandrostenedione.
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| DC40187 | 2-Furoylglycine |
2-Furoylglycine, a urinary metabolite in human, is a putative biomarker for coffee consumption.
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| DC40186 | Myristoleic acid |
Myristoleic acid, a cytotoxic component in the extract from Serenoa repens, induces apoptosis and necrosis in human prostatic LNCaP cells.
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| DC40185 | Thromboxane B2 |
Thromboxane B2 is a prostaglandin derivative that is released during anaphylaxis. Thromboxane B2 induces arterial contraction and platelet aggregation.
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| DC40184 | Etiocholanolone |
Etiocholanolone (5β-Androsterone) is the excreted metabolite of testosterone and has anticonvulsant activity. Etiocholanolone is a less potent?neurosteroid positive allosteric modulator?(PAM) of the GABAA?receptor than its?enantiomer form.
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| DC40183 | Succinyladenosine |
Succinyladenosine, the metabolic product of dephosphorylation of intracellular adenylosuccinic acid (S-AMP) by cytosolic 5-nucleotidase, is a biochemical marker of adenylosuccinase (ASL) deficiency.
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| DC40182 | Diadenosine pentaphosphate pentalithium |
Diadenosine pentaphosphate pentalithium is an endogenous vasoactive purine dinucleotide which has been isolated from thrombocytes. Diadenosine polyphosphates (ApnA, n=2–7) have been identified as constituents of secretory vesicles such as in platelets, chromaffin cells, Torpedo synaptic terminals and brain synaptosomes.
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| DC40181 | Diadenosine pentaphosphate pentaammonium |
Diadenosine pentaphosphate pentaammonium is an endogenous vasoactive purine dinucleotide which has been isolated from thrombocytes. Diadenosine polyphosphates (ApnA, n=2–7) have been identified as constituents of secretory vesicles such as in platelets, chromaffin cells, Torpedo synaptic terminals and brain synaptosomes.
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| DC40180 | Diadenosine pentaphosphate pentasodium |
Diadenosine pentaphosphate pentasodium is an endogenous vasoactive purine dinucleotide which has been isolated from thrombocytes. Diadenosine polyphosphates (ApnA, n=2–7) have been identified as constituents of secretory vesicles such as in platelets, chromaffin cells, Torpedo synaptic terminals and brain synaptosomes.
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| DC40179 | 8-Isoprostaglandin F2α |
8-Isoprostaglandin F2α is an isoprostane produced by the non-enzymatic peroxidation of arachidonic acid in membrane phospholipids. 8-Isoprostaglandin F2α is present in human plasma in two distinct forms - esterified in phospholipids and as the free acid. 8-Isoprostaglandin F2α is a weak TP receptor agonist in vascular smooth muscle.
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| DC40178 | Isobutyryl-L-carnitine chloride |
Isobutyryl-L-carnitine chloride is a product of the acyl-CoA dehydrogenases.
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| DC40177 | sn-Glycerol 3-phosphate biscyclohexylammonium salt |
sn-Glycerol 3-phosphate biscyclohexylammonium salt is produced by cytosolic glycerol 3-phosphate dehydrogenase pathway through the reduction of dihydroxyacetone phosphate using NADH formed during glycolysis.
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| DC40176 | 3α,7α-Dihydroxycoprostanic acid |
3α,7α-Dihydroxycoprostanic acid is an endogenous metabolite. 3α,7α-Dihydroxycoprostanic acid, a bile acid, is the precursor to chenodeoxycholic acid.
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