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Synthesis of Amino-ADT Provides Access to Hydrolytically Stable Amide-Coupled Hydrogen Sulfide Releasing Drug Targets.


ABSTRACT: As additional physiological functions of hydrogen sulfide (H2S) are discovered, developing practical methods for exogenous H2S delivery is important. In particular, nonsteroidal anti-inflammatory drugs (NSAIDs) functionalized with H2S-releasing anethole dithiolethione (ADT-OH) through ester bonds are being investigated for their combined anti-inflammatory and antioxidant potential. The chemical robustness of the connection between drug and H2S-delivery components, however, is a key and controllable linkage in these compounds. Because esters are susceptible to hydrolysis, particularly under acidic conditions such as stomach acid in oral drug delivery applications, we report here a simple synthesis of amino-ADT (ADT-NH2 ) and provide conditions for successful ADT-NH2 derivatization with the drugs naproxen and valproic acid. Using UV-vis spectroscopy and HPLC analysis, we demonstrate that amide-functionalized ADT derivatives are significantly more resistant to hydrolysis than ester-functionalized ADT derivatives.

SUBMITTER: Hammers MD 

PROVIDER: S-EPMC4936786 | biostudies-literature | 2016

REPOSITORIES: biostudies-literature

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Synthesis of Amino-ADT Provides Access to Hydrolytically Stable Amide-Coupled Hydrogen Sulfide Releasing Drug Targets.

Hammers Matthew D MD   Singh Loveprit L   Montoya Leticia A LA   Moghaddam Alan D AD   Pluth Michael D MD  

Synlett : accounts and rapid communications in synthetic organic chemistry 20160101 9


As additional physiological functions of hydrogen sulfide (H<sub>2</sub>S) are discovered, developing practical methods for exogenous H<sub>2</sub>S delivery is important. In particular, nonsteroidal anti-inflammatory drugs (NSAIDs) functionalized with H<sub>2</sub>S-releasing anethole dithiolethione (<b>ADT-OH</b>) through ester bonds are being investigated for their combined anti-inflammatory and antioxidant potential. The chemical robustness of the connection between drug and H<sub>2</sub>S-d  ...[more]

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