54420-79-0Relevant academic research and scientific papers
A green approach for the synthesis of benzazolyl pyrimidinyl carbamothioates under ultrasonication and their antimicrobial activity
Kayathi, Narendra Babu,Panga, Siva Sankar,Adivireddy, Padmaja,Venkatapuram, Padmavathi
, p. 2931 - 2943 (2021/07/26)
A library of benzazolyl pyrimidinyl carbamothioates were prepared by the reaction of benzazolyl carbonothioates with pyrimidinyl-2-amine in the presence of an ionic liquid- 1-butyl-3-methylimidazolium hydroxide ([bmim]OH) under ultrasonication at a frequency of 35?kHz and tested for antimicrobial activity. Chloro- and nitro-substituted benzothiazolyl/benzimidazolyl pyrimidinyl carbamothioates displayed prominent antibacterial activity against Bacillus subtilis, while nitro-substituted benzothiazolyl/benzimidazolyl pyrimidinyl carbamothioates showed excellent antifungal activity against Aspergilus niger. Graphic abstract: [Figure not available: see fulltext.].
Synthesis and structural elucidation of amino acetylenic and thiocarbamates derivatives for 2-mercaptobenzothiazole as antimicrobial agents
Alsarahni, Aseel,Muhi-Eldeen, Zuhair,Al-Kaissi, Elham,Al-Adham, Ibrahim,Al-Muhtaseb, Najah
, p. 192 - 197 (2017/02/15)
Objective: To design and synthesize amino acetylenic and thiocarbonate of 2-mercapto-1,3-benthiazoles as potential antimicrobial agents. Methods: A new series of 2-{[4-(t-amino-1-yl) but-2-yn-1-yl] sulfanyl}-1,3-benzothiazole derivatives (AZ1-AZ6), and S-1,3-benzothiazol-2-yl-O-alkyl carbonothioate derivatives were synthesised, with the aim that the target compounds show new and potential antimicrobial activity. The elemental analysis was indicated by the EuroEA elemental analyzer, and biological characterization was via IR,1H-NMR, [13]C-NMR, DSC were determined with the aid of Bruker FT-IR and Varian 300 MHz spectrometer using DMSO-d6 as a solvent. In vitro antimicrobial activity, evaluation was done for the synthesised compounds, by agar diffusion method and broth dilution test. The minimum inhibitory concentration (MIC) and the minimum bactericidal concentration (MBC) were determined. Results: The IR,1H-NMR,13C-NMR, DSC and elemental analysis were consistent with the assigned structures. Compound of 2-{[4-(4-methylpiperazin-1-yl)but-2-yn-1-yl] sulfanyl}-1,3-benzothiazole (AZ1), 2-{[4-(2-methylpiperidin-1-yl)but-2-yn-1-yl]sulfanyl}-1,3-benzothiazole (AZ2), 2-{[4-(piperidin-1-yl) but-2-yn-1-yl]sulfanyl}-1, 3-benzothiazole (AZ6), S-1,3-benzothiazol-2-yl-O-ethyl carbonothioate (AZ7), and S-1,3- benzothiazol-2-yl-O-(2-methylpropyl) carbonothioate (AZ9) showed the highest antimicrobial activity against Pseudomonas aeruginosa (P. aeruginosa), AZ-9 demonstrated the highest antifungal activity against Candida albicans (C. albicans), with MIC of 31.25 μg/ml. Conclusion: These promising results promoted our interest to investigate other structural analogues for their antimicrobial activity further.
Acylation and alkoxycarbonylation of benzoxazoline-2-thione and benzothiazoline-2-thione
Nishio, Takehiko,Shiwa, Kiyoko
, p. 313 - 324 (2007/10/03)
Acylation of benzoxazoline-2-thione (1) and benzothiazoline-2-thione (2) with acetic anhydride (3) and acyl chlorides (4) gave N-acyl (5, 6) and/or S-acyl (7, 8) derivatives depending on the nature of acylating agents and bases used. Alkoxycarbonylation of 1 with aralkyl chlorocarbonates (9) gave N-alkoxycarbonyl derivatives (10) mainly, while that of 2 with aralkyl chloroccarbonates (9) gave S-alkoxycarbonyl derivatives (12) exclusively. Photolysis of N-acyl derivatives (5 or 6) in the presence of alcohols afforded 1 or 2, respectively, together with esters (16).
