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Desmethylanethol trithione

Desmethylanethol trithione
Desmethylanethol trithione (ADT-OH) is a derivative of anethole dithiolethione (ADT) and synthetic hydrogen sulfide (H2S) donor. In the in vitro glucose-oxygen deprivation (OGD) model, Desmethylanethol trithione markedly attenuated tPA-enhanced Akt activation and VEGF expression in brain microvascular endothelial cells. Finally, Desmethylanethol trithione improved functional outcomes in mice subjected to MCAO and tPA infusion. H2S donors reduced tPA-induced cerebral hemorrhage by possibly inhibiting the Akt-VEGF-MMP9 cascade. Administration of H2S donors has potential as a novel modality to improve the safety of tPA following the stroke.
Catalog No. T3560Cas No. 18274-81-2
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Purity:98.19%
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Desmethylanethol trithione

Catalog No. T3560Alias ADT-OHCas No. 18274-81-2

Desmethylanethol trithione (ADT-OH) is a derivative of anethole dithiolethione (ADT) and synthetic hydrogen sulfide (H2S) donor. In the in vitro glucose-oxygen deprivation (OGD) model, Desmethylanethol trithione markedly attenuated tPA-enhanced Akt activation and VEGF expression in brain microvascular endothelial cells. Finally, Desmethylanethol trithione improved functional outcomes in mice subjected to MCAO and tPA infusion. H2S donors reduced tPA-induced cerebral hemorrhage by possibly inhibiting the Akt-VEGF-MMP9 cascade. Administration of H2S donors has potential as a novel modality to improve the safety of tPA following the stroke.
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Pack SizePriceAvailabilityQuantity
10 mg$34In Stock
25 mg$59In Stock
50 mg$98In Stock
100 mg$159In Stock
200 mg$236In Stock
1 mL x 10 mM (in DMSO)$29In Stock
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Product Introduction

Bioactivity
Description
Desmethylanethol trithione (ADT-OH) is a derivative of anethole dithiolethione (ADT) and synthetic hydrogen sulfide (H2S) donor. In the in vitro glucose-oxygen deprivation (OGD) model, Desmethylanethol trithione markedly attenuated tPA-enhanced Akt activation and VEGF expression in brain microvascular endothelial cells. Finally, Desmethylanethol trithione improved functional outcomes in mice subjected to MCAO and tPA infusion. H2S donors reduced tPA-induced cerebral hemorrhage by possibly inhibiting the Akt-VEGF-MMP9 cascade. Administration of H2S donors has potential as a novel modality to improve the safety of tPA following the stroke.
In vitro
In glucose-oxygen deprivation (OGD) model, ADT-OH markedly attenuated tPA-enhanced Akt activation and VEGF expression in brain microvascular endothelial cells. Finally, ADT-OH improved functional outcomes in mice subjected to MCAO and tPA infusion.
AliasADT-OH
Chemical Properties
Molecular Weight226.34
FormulaC9H6OS3
Cas No.18274-81-2
Storage & Solubility Information
StoragePowder: -20°C for 3 years | In solvent: -80°C for 1 year | Shipping with blue ice.
Solubility Information
DMSO: 45 mg/mL (198.82 mM)
Solution Preparation Table
DMSO
1mg5mg10mg50mg
1 mM4.4181 mL22.0907 mL44.1813 mL220.9066 mL
5 mM0.8836 mL4.4181 mL8.8363 mL44.1813 mL
10 mM0.4418 mL2.2091 mL4.4181 mL22.0907 mL
20 mM0.2209 mL1.1045 mL2.2091 mL11.0453 mL
50 mM0.0884 mL0.4418 mL0.8836 mL4.4181 mL
100 mM0.0442 mL0.2209 mL0.4418 mL2.2091 mL

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