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Hemolytic and Antimicrobial Activities of a Series of Cationic Amphiphilic Copolymers Comprised of Same Centered Comonomers with Thiazole Moieties and Polyethylene Glycol Derivatives

机译:一系列具有噻唑基团和聚乙二醇衍生物的相同中心共聚单体的阳离子两亲共聚物的溶血和抗菌活性

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摘要

A series of well-defined antimicrobial polymers composed of comonomers bearing thiazole ring (2-(((2-(4-methylthiazol-5-yl)ethoxy)carbonyl)oxy)ethyl methacrylate monomer (MTZ)) and non-hemotoxic poly(ethylene glycol) side chains (poly(ethylene glycol) methyl ether methacrylate (PEGMA)) were synthesized by reversible addition-fragmentation chain transfer (RAFT) polymerization. By post-polymerization functionalization strategy, polymers were quaternized with either butyl or octyl iodides to result in cationic amphiphilic copolymers incorporating thiazolium groups, thus with variable hydrophobic/hydrophilic balance associated to the length of the alkylating agent. Likewise, the molar percentage of PEGMA was modulated in the copolymers, also affecting the amphiphilicity. The antimicrobial activities of these cationic polymers were determined against Gram-positive and Gram-negative bacteria and fungi. Minimum inhibitory concentration (MIC) was found to be dependent on both length of the alkyl hydrophobic chain and the content of PEGMA in the copolymers. More hydrophobic octylated copolymers were found to be more effective against all tested microorganisms. The incorporation of non-ionic hydrophilic units, PEGMA, reduces the hydrophobicity of the system and the activity is markedly reduced. This effect is dramatic in the case of butylated copolymers, in which the hydrophobic/hydrophilic balance is highly affected. The hemolytic properties of polymers analyzed against human red blood cells were greatly affected by the hydrophobic/hydrophilic balance of the copolymers and the content of PEGMA, which drastically reduces the hemotoxicity. The copolymers containing longer hydrophobic chain, octyl, are much more hemotoxic than their corresponding butylated copolymers.
机译:一系列定义明确的抗微生物聚合物,由带有噻唑环的共聚单体(甲基丙烯酸2-((((2-(4-(4-(4-甲基噻唑-5-基)乙氧基)羰基)氧基)甲基丙烯酸乙酯] MTZ)))无毒的聚(通过可逆的加成-断裂链转移(RAFT)聚合反应合成了乙二醇)侧链(聚(乙二醇)甲基醚甲基丙烯酸甲酯(PEGMA))。通过后聚合官能化策略,将聚合物用丁基或辛基碘进行季铵化,以生成结合了噻唑鎓基团的阳离子两亲共聚物,因此具有与烷基化剂的长度相关的可变的疏水/亲水平衡。同样,在共聚物中调节PEGMA的摩尔百分比,也影响两亲性。确定了这些阳离子聚合物对革兰氏阳性和革兰氏阴性细菌和真菌的抗菌活性。发现最小抑制浓度(MIC)既取决于烷基疏水链的长度,又取决于共聚物中PEGMA的含量。发现更多的疏水性辛基化共聚物对所有测试微生物更有效。非离子亲水单元PEGMA的加入降低了系统的疏水性,并且活性明显降低。在丁基化共聚物的情况下,这种作用是显着的,其中疏水/亲水性平衡受到很大影响。共聚物的疏水/亲水平衡和PEGMA的含量极大地影响了聚合物对人红细胞的溶血特性,从而大大降低了血液毒性。含有更长的疏水链辛基的共聚物比其相应的丁基化共聚物具有更大的血液毒性。

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