Synthesis and Antimicrobial Activity of 1,2-Benzothiazine Derivatives

被引:44
作者
Patel, Chandani [1 ]
Bassin, Jatinder P. [1 ]
Scott, Mark [1 ]
Flye, Jenna [2 ]
Hunter, Ann P. [2 ]
Martin, Lee [3 ]
Goyal, Madhu [1 ]
机构
[1] Univ Hertfordshire, Sch Life & Med Sci, Hatfield AL10 9AB, Herts, England
[2] Swansea Univ, Inst Mass Spectrometry, Sch Med, EPSRC UK Natl Mass Spectrometry, Swansea SA2 8PP, W Glam, Wales
[3] Nottingham Trent Univ, Sch Sci & Technol, Clifton Lane, Nottingham NG11 8NS, England
关键词
1,2-benzothiazines; chalcones; Bacillus subtilis; Staphylococcous aureus; Proteus vulgaris; Salmonella typhimurium; STAPHYLOCOCCUS-AUREUS; HALOGENATED COMPOUNDS; EFFICIENT SYNTHESIS; INHIBITORS; 1,1-DIOXIDES; TUBERCULOSIS; AGENTS; 1,4-BENZOTHIAZINES; HETEROCYCLES; ANALGESICS;
D O I
10.3390/molecules21070861
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A number of 1,2-benzothiazines have been synthesized in a three-step process. Nine chalcones 1-9 bearing methyl, fluoro, chloro and bromo substituents were chlorosulfonated with chlorosulfonic acid to generate the chalcone sulfonyl chlorides 10-18. These were converted to the dibromo compounds 19-27 through reaction with bromine in glacial acetic acid. Compounds 19-27 were reacted with ammonia, methylamine, ethylamine, aniline and benzylamine to generate a library of 45 1,2-benzothiazines 28-72. Compounds 28-72 were evaluated for their antimicrobial activity using broth microdilution techniques against two Gram-positive bacteria (Bacillus subtilis and Staphylococcus aureus) and two Gram-negative bacteria (Proteus vulgaris and Salmonella typhimurium). The results demonstrated that none of the compounds showed any activity against Gram-negative bacteria P. vulgaris and S. typhimurium; however, compounds 31, 33, 38, 43, 45, 50, 53, 55, 58, 60, 63 and 68 showed activity against Gram-positive bacteria Bacillus subtilis and Staphylococcous aureus. The range of minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) was 25-600 mu g/mL, though some of the MIC and MBC concentrations were high, indicating weak activity. Structure activity relationship studies revealed that the compounds with a hydrogen atom or an ethyl group on the nitrogen of the thiazine ring exerted antibacterial activity against Gram-positive bacteria. The results also showed that the compounds where the benzene ring of the benzoyl moiety contained a methyl group or a chlorine or bromine atom in the para position showed higher antimicrobial activity. Similar influences were identified where either a bromine or chlorine atom was in the meta position.
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