Phosphorus-nitrogen compounds. Part 56. Comparative syntheses and spectral properties of multiheterocyclic 2-cis-4-ansa and spiro-ferrocenyl (N/O)cyclotetraphosphazenes: Antituberculosis and antimicrobial activity and DNA interaction studies
Arzu Binici, Aytuğ Okumuş, M. Yakut, Gamze Elmas, Z. Kılıç, Dila Koyunoğlu, L. Açık, H. Simsek
{"title":"Phosphorus-nitrogen compounds. Part 56. Comparative syntheses and spectral properties of multiheterocyclic 2-cis-4-ansa and spiro-ferrocenyl (N/O)cyclotetraphosphazenes: Antituberculosis and antimicrobial activity and DNA interaction studies","authors":"Arzu Binici, Aytuğ Okumuş, M. Yakut, Gamze Elmas, Z. Kılıç, Dila Koyunoğlu, L. Açık, H. Simsek","doi":"10.1080/10426507.2021.1986502","DOIUrl":null,"url":null,"abstract":"Abstract In the present study, two types of starting compounds; hexachloro(N/O)-cyclotetraphosphazenes containing mono-ferrocenyl-pendant arm, namely, mono-ferrocenyl-2-cis-4-dichloro-ansa-(2,4-ansa; 2) and mono-ferrocenyl-spiro-(spiro; 3) were prepared by the reaction of N4P4Cl8 (1) with sodium 3-(N-ferrocenylmethylamino)-1-propanoxide (L). Reactions of 2,4-ansa (2) with excess benzylamine and n-hexylamine resulted in the formation of partly substituted 2-cis-4-dichloro-ansa-cyclotetraphosphazenes (2a and 2b). In contrast, spiro (3) gave fully substituted mono-ferrocenyl-spiro-cyclotetraphosphazenes (3a and 3b) with excess benzylamine and n-hexylamine. As expected, the 2,4-ansa cyclotetraphosphazenes (2, 2a, and 2b) have two distinct stereogenic P-centers. The structures of cyclotetraphosphazenes were evaluated by elemental analysis, ESI-MS, FTIR, 1H, 13C, and 31P-NMR techniques. The antibacterial and antifungal activities against some selected bacteria and yeast strains, antituberculosis activities against Mycobacterium tuberculosis H37Rv, and DNA cleavage activities of mono-ferrocenyl-cyclotetraphosphazenes were also discussed. Compounds 2b, 3a, and 3b exhibited antifungal activity against C. albicans (MIC= 156.3 µM) higher than reference antibiotic Ketoconazole. Moreover, four compounds displayed antituberculosis activity against the M. tuberculosis H37RV. Compound 2a (20 μg/mL) is the most potent of the four compounds. Graphical abstract","PeriodicalId":20043,"journal":{"name":"Phosphorus Sulfur and Silicon and The Related Elements","volume":"78 1","pages":"18 - 29"},"PeriodicalIF":0.0000,"publicationDate":"2021-10-06","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Phosphorus Sulfur and Silicon and The Related Elements","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1080/10426507.2021.1986502","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 3
Abstract
Abstract In the present study, two types of starting compounds; hexachloro(N/O)-cyclotetraphosphazenes containing mono-ferrocenyl-pendant arm, namely, mono-ferrocenyl-2-cis-4-dichloro-ansa-(2,4-ansa; 2) and mono-ferrocenyl-spiro-(spiro; 3) were prepared by the reaction of N4P4Cl8 (1) with sodium 3-(N-ferrocenylmethylamino)-1-propanoxide (L). Reactions of 2,4-ansa (2) with excess benzylamine and n-hexylamine resulted in the formation of partly substituted 2-cis-4-dichloro-ansa-cyclotetraphosphazenes (2a and 2b). In contrast, spiro (3) gave fully substituted mono-ferrocenyl-spiro-cyclotetraphosphazenes (3a and 3b) with excess benzylamine and n-hexylamine. As expected, the 2,4-ansa cyclotetraphosphazenes (2, 2a, and 2b) have two distinct stereogenic P-centers. The structures of cyclotetraphosphazenes were evaluated by elemental analysis, ESI-MS, FTIR, 1H, 13C, and 31P-NMR techniques. The antibacterial and antifungal activities against some selected bacteria and yeast strains, antituberculosis activities against Mycobacterium tuberculosis H37Rv, and DNA cleavage activities of mono-ferrocenyl-cyclotetraphosphazenes were also discussed. Compounds 2b, 3a, and 3b exhibited antifungal activity against C. albicans (MIC= 156.3 µM) higher than reference antibiotic Ketoconazole. Moreover, four compounds displayed antituberculosis activity against the M. tuberculosis H37RV. Compound 2a (20 μg/mL) is the most potent of the four compounds. Graphical abstract