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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Phosphorus-nitrogen compounds: Part 19. Syntheses, structural and electrochemical investigations, biological activities, and DNA interactions of new spirocyclic monoferrocenylcyclotriphosphazenes
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Phosphorus-nitrogen compounds: Part 19. Syntheses, structural and electrochemical investigations, biological activities, and DNA interactions of new spirocyclic monoferrocenylcyclotriphosphazenes

机译:磷氮化合物:第19部分。新型螺环单二茂铁基环三磷腈的合成,结构和电化学研究,生物学活性和DNA相互作用

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摘要

The reactions of hexachlorocyclotriphosphazatriene, N_3P _3Cl_6, with N-alkyl-N-ferrocenylmethylethylene diamines, FcCH_2NH(CH_2)_2NHR_1 [R_1 = Me (1) and Et (2)], and sodium [3-(N-ferrocenylmethylamino)-1-propanoxide] (3) produce spirocyclic monoferrocenyl tetrachlorophosphazenes (1a-3a). The tetrapyrrolidinophosphazenes (1b-3b) are prepared from the reactions of corresponding phosphazenes (1a-3a) with excess pyrrolidine. The reaction of 1a with excess morpholine affords geminal-morpholino phosphazene (1c), whilst the reactions of 2a and 3a give diethylaminotrimorpholino (2c) and fully substituted morpholino products (3c), respectively. The structural investigations of the compounds are examined by Fourier transform IR, MS, ~1H, ~(13)C, ~(31)P NMR, DEPT, HETCOR, and HMBC techniques. The crystal structures of 3b and 3c are determined using X-ray crystallography. Cyclic voltammetric and chronoamperometric data show that compounds 1a-3a, 1b-3b, and 1c-3c exhibit electrochemically reversible one-electron oxidation of Fc redox centers which are hardly affected by the substituents on the phosphazene ring. The compounds 1b, 2b, 3b, and 3c are screened for antibacterial activities against Gram-positive and Gram-negative bacteria and for antifungal activities against yeast strains. In addition, the antituberculosis activities (in vitro) of these compounds are evaluated against INH-susceptible reference strain M. tuberculosis H37Rv, and six multi-drug resistant clinical M. tuberculosis isolates. Compound 2b is found to be the most active against the susceptible the reference strain. In addition, 1b, 2b, and 3c are active against all the multidrug-resistant clinical isolates at the highest concentrations. Gel electrophoresis data indicate that the compounds promote the formation of strand breaks in plasmid DNA. Almost all the concentrations lost of supercoiled DNA suggests that the compound 3b is very efficient plasmid-modifier. The compounds inhibit BamHI cleavage of pUC18 DNA while restricting HindIII.
机译:六氯环三磷氮杂三烯N_3P _3Cl_6与N-烷基-N-二茂铁基甲基乙二胺,FcCH_2NH(CH_2)_2NHR_1 [R_1 = Me(1)和Et(2)]和钠[3-(N-二茂铁基甲基氨基)-1-丙氧基丙烷](3)生产螺环单二茂铁基四氯磷腈(1a-3a)。由相应的磷腈(1a-3a)与过量的吡咯烷反应制备四吡咯烷基磷腈(1b-3b)。 1a与过量的吗啉反应生成双-吗啉代磷腈(1c),而2a和3a的反应分别生成二乙基氨基三吗啉代(2c)和完全取代的吗啉代产物(3c)。通过傅里叶变换IR,MS,〜1H,〜(13)C,〜(31)P NMR,DEPT,HETCOR和HMBC技术检查化合物的结构。使用X射线晶体学测定3b和3c的晶体结构。循环伏安法和计时电流法数据表明,化合物1a-3a,1b-3b和1c-3c表现出Fc氧化还原中心的电化学可逆单电子氧化,几乎不受磷腈环上取代基的影响。筛选化合物1b,2b,3b和3c对革兰氏阳性和革兰氏阴性细菌的抗菌活性以及对酵母菌株的抗真菌活性。此外,评估了这些化合物对INH易感参考菌株结核分枝杆菌H37Rv和六种具有多重耐药性的临床结核分枝杆菌的抗结核活性(体外)。发现化合物2b对易感参考菌株最有活性。此外,1b,2b和3c在最高浓度下对所有耐多药临床分离株都有活性。凝胶电泳数据表明该化合物促进质粒DNA中链断裂的形成。几乎所有超螺旋DNA丢失的浓​​度都表明化合物3b是非常有效的质粒修饰剂。这些化合物抑制pUC18 DNA的BamHI切割,同时限制HindIII。

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