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含苄基侧链的(N/O)单螺和双螺环三磷腈衍生物的合成与光谱性质:生物活性研究

Synthesis and spectroscopic properties of (N/O) mono- and dispirocyclotriphosphazene derivatives with benzyl pendant arms: study of biological activity.

作者信息

İŞcan Özlem, CemaloĞlu Reşit, Asmafİlİz Nuran, KiliÇ Zeynel, AÇik Leyla, Özbeden Pelin, HÖkelek Tuncer

机构信息

Department of Chemistry, Faculty of Science, Ankara University, Ankara Turkey.

Department of Biology, Faculty of Science, Gazi University, Ankara Turkey.

出版信息

Turk J Chem. 2020 Feb 11;44(1):15-30. doi: 10.3906/kim-1908-17. eCollection 2020.

Abstract

The Cl replacement reactions of hexachlorocyclotriphosphazene (trimer; N P Cl ) with sodium (N-benzyl)- aminopropanoxides (1 and 2) produced monospiro- (3 and 4), cis-, and trans-dispirocyclotriphosphazenes (13-16). The monospiro tetrakis-aminocyclotriphosphazenes (5-12) were obtained by the Cl substitutions of 3 and 4 with different secondary amines. The cis- (13 and 14) and trans-dispirophosphazenes (15 and 16) possessed 2 chiral P centers, and they were able to present meso and racemic forms, respectively. Moreover, the structures of compounds 5 and 14 were designated using X-ray data. The absolute configuration of compound 14 was found as SR in the solid state. Analytical and spectroscopic data of the phosphazenes were consistent with their suggested structures. Antimicrobial activities of the benzyl-pendant-armed cyclotriphosphazenes were scrutinized against G(+) and G(-) bacteria and yeast strains. The bacterium most affected by the synthesized compounds was . Minimum inhibitory concentrations and minimal bacterial concentrations were in the range of 125-500 μM. Interactions between the phosphazenes (3-12 and 15) and plasmid DNA were studied with agarose gel electrophoresis. The phosphazene- DNA interaction studies of the cyclotriphosphazenes revealed that phosphazenes 3, 4, and 15 had a substantial effect on supercoiled DNA by cleavage of the double helix.

摘要

六氯环三磷腈(三聚体;N₃P₃Cl₆)与钠(N-苄基)-氨基丙醇盐(1和2)的氯取代反应生成了单螺环(3和4)、顺式和反式双螺环三磷腈(13 - 16)。通过用不同的仲胺对3和4进行氯取代得到了单螺环四氨基环三磷腈(5 - 12)。顺式(13和14)和反式双螺环磷腈(15和16)具有2个手性磷中心,它们分别能够呈现内消旋体和外消旋体形式。此外,使用X射线数据确定了化合物5和14的结构。发现化合物14在固态下的绝对构型为SR。磷腈的分析和光谱数据与其推测结构一致。研究了苄基侧链环三磷腈对革兰氏阳性菌、革兰氏阴性菌和酵母菌株的抗菌活性。受合成化合物影响最大的细菌是 。最低抑菌浓度和最低杀菌浓度在125 - 500 μM范围内。用琼脂糖凝胶电泳研究了磷腈(3 - 12和15)与质粒DNA之间的相互作用。环三磷腈的磷腈 - DNA相互作用研究表明,磷腈3、4和15通过切割双螺旋对超螺旋DNA有显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d59/7751824/d855dcb17643/turkjchem-44-15-sch001.jpg

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