Title of article :
Synthesis and biological evaluation of novel benzyl piperazine derivatives of 5-(5-nitroaryl)-1,3,4-thiadiazoles as Anti-Helicobacter pylori agents
Author/Authors :
Mohammadhosseini, Negar tehran university of medical sciences tums - Faculty of Pharmacy and Pharmaceutical Sciences Research Center - Department of Medicinal Chemistry, تهران, ايران , Saniee, Parastoo university of tehran - Faculty ofSciences - Department of Microbiology, تهران, ايران , Ghamaripour, Ameneh golestan university - Faculty of Science - Department of Biology, گرگان, ايران , Aryapour, Hassan golestan university - Faculty of Science - Department of Biology, گرگان, ايران , Afshar, Farzaneh Islamic AzadUniversity,Science and Research Branch - Department of Chemistry, ايران , Edraki, Najmeh tehran university of medical sciences tums - Faculty of Pharmacy and Pharmaceutical Sciences Research Center - Department of Medicinal Chemistry, تهران, ايران , Siavoshi, Farideh university of tehran - Department of Microbiology, تهران, ايران , Foroumadi, Alireza tehran university of medical sciences tums - Faculty of Pharmacy and Pharmaceutical Sciences Research Center - Department of Medicinal Chemistry, تهران, ايران , Shafiee, Abbas tehran university of medical sciences tums - Faculty of Pharmacy and Pharmaceutical Sciences Research Center - Department of Medicinal Chemistry, تهران, ايران
Abstract :
Background and the purpose of the study: Helicobacter pylori is recognized as the main cause of gastritis and gastroduodenal ulcers and classified as class 1 carcinogen pathogen. Different 1,3,4-thiadiazole derivatives bearing 5-nitroaryl moiety have been shown considerable anti- H. pylori activity. In attempt to find new and potent derivatives of described scaffold, a new series of 1-(substituted benzyl)-4-(5-(5-nitroaryl-2-yl)-1,3,4-thiadiazol-2-yl) piperazine derivatives were synthesized and evaluated against three metronidazole-resistant isolates of H. pylori using paper disk diffusion bioassay test. Methods: The title compounds were prepared through the reaction of 1-(5-(5-nitroaryl-2-yl)-1,3,4-thiadiazol-2-yl) piperazine 5a-b and substituted benzyl chloride in DMF. The inhibitory activity of the new derivatives 6a-q against three metronidazole-resistant isolates of H. pylori was evaluated by the disc diffusion method and compared with the commercially available standard drug metronidazole. Results and discussion: The results of SAR study indicated that the potency and anti-H. pylori activity profile of synthesized derivatives is mainly attributed to the substituted nitroaryl moiety at the C-5 position of 1,3,4-thiadiazole ring. Most of 1,3,4-thiadiazole derivatives bearing 5-nitrofuran moiety at C-5 position of central thiadiazole ring, demonstrated more promising anti-H. pylori than the 5-nitrothiophen counterpart. Conclusion: The most potent nitrofuran derivative containing 3-methoxybenzyl piperazine pendant at the C-2 position of 1,3,4-thiadiazole ring (compound 6i), demonstrated strong anti-H. pylori potential at studied concentrations 100-25 μg/disk (IZD 20 mm) against all studied metronidazole- resistant isolates of H. pylori.
Keywords :
Anti , Helicobacter pylori activity , 1 , 3 , 4 , Thiadiazole , Nitrofuran , Nitrothiophen