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二级和三级聚二烯丙基氯化铵盐:具有高抗菌活性的新型聚合物。

Secondary and tertiary polydiallylammonium salts: novel polymers with high antimicrobial activity.

机构信息

A. V. Topchiev Institute of Petrochemical Synthesis, Russian Academy of Sciences, Leninsky prosp. 29, Moscow, Russia.

出版信息

Biomacromolecules. 2009 Nov 9;10(11):2976-86. doi: 10.1021/bm900435v.

Abstract

Antimicrobial activity of secondary and tertiary poly(diallylammonium) salts (PDAAs) had not been reported before. Due to difficulties with preparation of polymers from the monomers of the diallylamine (DAA) series in the nonquaternary form, up to recently it was not possible to obtain PDAAs with a sufficiently high molecular mass. Here, we describe the investigations of antimicrobial activity of novel water-soluble cationic polyelectrolytes of the PDAA series, namely secondary poly(diallylammonium trifluoroacetate) (PDAATFA) and tertiary poly(diallylmethylammonium trifluoroacetate) (PDAMATFA), in synthesis of which we have recently succeeded, against gram-positive and gram-negative bacteria, and fungi. We have studied the effect of molecular weight (polymeric chain length) and ionic strength of solution on the biocidal efficiency of those polymers; in addition, the concentration dependences of PDAATFA reduced viscosity in salt-free and KCl aqueous solutions have been investigated. The antimicrobial properties of polybase polydiallylamine (BPDAA), which was obtained in an aqueous solution of PDAATFA in presence of alkali, have been also studied as well as biocidal activity of commercial open-chain polybase branched PEI. Those PDAATFA, BPDAA and PEI polymers served as the systems to study the structure-activity relationships. Transmission electronic microscopy study was carried out to characterize the mode of antimicrobial action of PDAATFA using E. coli . It was shown that the synthesized PDAATFA and PDAMATFA exhibit, unlike the quaternary polymers of this series, a rather high biocidal efficiency that is comparable with the activity of known effective cationic polymer biocides or exceeds it. Novel polyelectrolytes exhibit quite strong biocidal properties at different conditions including aqueous solutions of moderate ionic strength (serum, 0.01 M/0.1 M) and aqueous-alkaline solutions (pH 10.5) until the macrochain retains some positive charge, but complete neutralization of the polyelectrolyte in a 1 M salt solution results in the loss of its biocidal activity. The obtained results evidence that the structure of links, which combine the hydrophobic pyrrolidinium rings with the hydrophilic secondary/tertiary ammonium groups, is responsible for the high biocidal activity of the PDAAs. Polymeric nature of the synthesized compounds is one of the most significant factors of their bactericidal efficiency, unlike their high fungicidal activity, which is evidently related to the secondary/tertiary pyrrolidinium cycle.

摘要

先前并未报道过二级和三级聚二烯丙基铵盐(PDAAs)的抗菌活性。由于难以将二烯丙基胺(DAA)系列的单体制备成非季铵形式的聚合物,直到最近才有可能获得具有足够高分子量的 PDAAs。在这里,我们描述了对新型水溶性阳离子聚电解质 PDAA 系列,即二级聚二烯丙基三氟乙酸盐(PDAATFA)和三级聚二烯丙基甲基三氟乙酸盐(PDAMATFA)的抗菌活性的研究,我们最近成功地合成了它们,以对抗革兰氏阳性菌和革兰氏阴性菌和真菌。我们研究了分子量(聚合链长度)和溶液离子强度对这些聚合物杀菌效率的影响;此外,还研究了无盐和 KCl 水溶液中 PDAATFA 减粘浓度依赖性。还研究了在 PDAATFA 的水溶液中存在碱时获得的聚碱二烯丙基胺(BPDAA)的抗菌性质以及商业开链聚碱支化 PEI 的杀菌活性。这些 PDAATFA、BPDAA 和 PEI 聚合物被用作研究结构-活性关系的系统。进行了透射电子显微镜研究,以使用 E. coli 来表征 PDAATFA 的抗菌作用模式。结果表明,与该系列的季铵聚合物不同,所合成的 PDAATFA 和 PDAMATFA 表现出相当高的杀菌效率,可与已知有效阳离子聚合物杀生剂的活性相媲美或超过其活性。新型聚电解质在不同条件下表现出相当强的杀菌性能,包括中等离子强度的水溶液(血清,0.01 M/0.1 M)和碱性水溶液(pH 10.5),直到大分子链保持一定的正电荷,但在 1 M 盐溶液中完全中和聚电解质会导致其杀菌活性丧失。所得结果表明,将疏水性吡咯烷环与亲水性二级/三级铵基团结合的链接结构负责 PDAAs 的高杀菌活性。与它们的高杀菌活性不同,合成化合物的聚合性质是其杀菌效率的最重要因素之一,显然与二级/三级吡咯烷环有关。

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