Desmethylanethol trithione

CAS No. 18274-81-2

Desmethylanethol trithione( ADT-OH | Desmethylanethol trithione | ACS1 )

Catalog No. M17391 CAS No. 18274-81-2

ADT-OH is a derivative of anethole dithiolethione (ADT) and synthetic hydrogen sulfide (H2S) donor.

Purity : >98% (HPLC)

COA Datasheet HNMR HPLC MSDS Handing Instructions
Size Price / USD Stock Quantity
1 mL x 10 mM in DMSO 28 In Stock
10MG 32 In Stock
25MG 56 In Stock
50MG 91 In Stock
100MG 148 In Stock
200MG 219 In Stock
500MG Get Quote In Stock
1G Get Quote In Stock

Biological Information

  • Product Name
    Desmethylanethol trithione
  • Note
    Research use only, not for human use.
  • Brief Description
    ADT-OH is a derivative of anethole dithiolethione (ADT) and synthetic hydrogen sulfide (H2S) donor.
  • Description
    ADT-OH is a derivative of anethole dithiolethione (ADT) and synthetic hydrogen sulfide (H2S) donor. In the in vitro 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. 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 stroke.
  • In Vitro
    ——
  • In Vivo
    ——
  • Synonyms
    ADT-OH | Desmethylanethol trithione | ACS1
  • Pathway
    PI3K/Akt/mTOR signaling
  • Target
    S6 Kinase
  • Recptor
    Akt| VEGFR
  • Research Area
    ——
  • Indication
    ——

Chemical Information

  • CAS Number
    18274-81-2
  • Formula Weight
    226.33
  • Molecular Formula
    C9H6OS3
  • Purity
    >98% (HPLC)
  • Solubility
    In Vitro:?DMSO : 125 mg/mL (552.27 mM)
  • SMILES
    c1cc(O)ccc1c1cc(=S)ss1
  • Chemical Name
    5-(4-hydroxyphenyl)-3H-1,2-dithiole-3-thione

Shipping & Storage Information

  • Storage
    (-20℃)
  • Shipping
    With Ice Pack
  • Stability
    ≥ 2 years

Reference

1. Hasegawa U,et al. Hydrolysis-Sensitive Dithiolethione Prodrug Micelles. Macromol Biosci. 2015 Nov;15(11):1512-22.
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