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Synthesis,and biological screening of chloropyrazine conjugated benzothiazepine derivatives as potential antimicrobial,antitubercular and cytotoxic agents
Authors:Afzal B Shaik  Richie R Bhandare  Srinath Nissankararao  Bontha Venkata Subrahmanya Lokesh  Shaik Shahanaaz  M Mukhlesur Rahman
Institution:1. Department of Pharmaceutical Chemistry, Vignan Pharmacy College, Jawaharlal Nehru Technological University, Vadlamudi 522213, Andhra Pradesh, India;2. Department of Pharmaceutical Sciences, College of Pharmacy & Health Sciences, Ajman University, Ajman PO Box 346, United Arab Emirates;3. Montvale, New Jersey, NJ 07645, USA;4. Faculty of Pharmaceutical Sciences, UCSI University, Kuala Lumpur, Malaysia;5. Department of Pharmaceutical Chemistry, Victoria College of Pharmacy, Nallapadu-522001, Guntur District, Andhra Pradesh, India;6. Medicines Research Group, School of Health, Sports and Bioscience, University of East London, Stratford Campus, Water Lane, London E 15 4LZ, United Kingdom;7. Center of Medical and Bio-allied Health Sciences Research, Ajman University, Ajman, United Arab Emirates
Abstract:A series of twenty new chloropyrazine conjugated benzothiazepines (2241) have been synthesized with 58%–95% yields. The compounds were characterized by using different spectroscopic techniques including FT-IR, 1H NMR, 13C NMR spectroscopy and mass spectrometry. The synthesized compounds (2241) and their precursor chalcones (221) were evaluated for antitubercular and cytotoxic activities. Additionally, compounds 2241 were also tested for antimicrobial activity. Among the chalcone series (221), compounds 7 and 14 showed significant antitubercular activities (MICs 25.51 and 23.89 µM, respectively), whereas among benzothiazepines (2241), compounds 27 and 34 displayed significant antimicrobial (MICs 38.02 µM, 19.01 µM) and antitubercular (MIC 18.10 µM) activities. Compounds 7 and 41 displayed cytotoxic activities with IC50 of 46.03 ± 1 and 35.10 ± 2 µM respectively. All the compounds were evaluated for cytotoxic activity on normal human liver cell lines (L02) and found to be relatively less selective towards this cell line. The most active compounds identified through this study could be considered as potential leads for the development of drugs with possible antimicrobial, antitubercular, and cytotoxic activities.
Keywords:Chloropyrazine  Benzothiazepines  Antitubercular  Antimicrobial  Cytotoxic
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