02173nas a2200385 4500000000100000008004100001260001300042653001200055653002800067653001200095653002700107653003000134653001100164653002300175653001200198653000900210653002100219653003200240653002400272653001800296653002500314653001900339100001400358700001500372700001600387700001600403700001400419700001300433700001600446245007200462300001100534490000700545520122100552022001401773 2006 d c2006 Jun10aAnimals10aColony Count, Microbial10aDapsone10aDisease Models, Animal10aDrug Therapy, Combination10aHumans10aLeprostatic Agents10aleprosy10aMice10aMice, Inbred CBA10aMicrobial Sensitivity Tests10aMolecular Structure10aMycobacterium10aMycobacterium leprae10aThiocarbamates1 aMakarov V1 aRiabova OB1 aYuschenko A1 aUrlyapova N1 aDaudova A1 aZipfel P1 aMöllmann U00aSynthesis and antileprosy activity of some dialkyldithiocarbamates. a1134-80 v573 a
OBJECTIVES: To investigate the antileprosy potential of a set of original compounds with antimycobacterial activity.
METHODS: We developed a facile synthesis of 2-chloro-3-cyano-5-nitropyridine and synthesized a series of 3-cyano-2-dialkyldithiocarbamoyl-5-nitropyridine derivatives. In vivo therapeutic efficacy against Mycobacterium leprae was assessed in the infected mouse footpad model.
RESULTS: The compounds were active in vitro against Mycobacterium smegmatis, Mycobacterium aurum, Mycobacterium vaccae and Mycobacterium fortuitum, with MICs generally in the range of 0.4-6.25 mg/L. Reduction of the bacterial load in vivo in the mouse footpad and toxic side effects were dependent on the individual structure of the compounds and on the doses applied. Compounds 2a, 3a and 3b reduced the number of M. leprae by two orders of magnitude, comparable to the effect of dapsone. Co-administration of compounds 2a and 3a with dapsone synergistically enhanced the activity. In addition, these compounds were well tolerated over the treatment period of 7.5 months.
CONCLUSIONS: Individual synthetic dithiocarbamate derivatives have promising antileprosy activity.
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