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线性和支化聚乙烯亚胺的膜选择性洞察及其作为高级伤口敷料中生物杀灭剂的潜力。

Insight into membrane selectivity of linear and branched polyethylenimines and their potential as biocides for advanced wound dressings.

机构信息

Bioinformatics Institute, Agency for Science, Technology and Research (A*STAR), Singapore 138671, Singapore.

Lee Kong Chian School of Medicine, Nanyang Technological University, Experimental Medicine Building, Singapore 636921, Singapore.

出版信息

Acta Biomater. 2016 Jun;37:155-64. doi: 10.1016/j.actbio.2016.04.015. Epub 2016 Apr 11.

Abstract

UNLABELLED

We report here structure-property relationship between linear and branched polyethylene imines by examining their antimicrobial activities against wide range of pathogens. Both the polymers target the cytoplasmic membrane of bacteria and yeasts, eliciting rapid microbicidal properties. Using multiscale molecular dynamic simulations, we showed that, in both fully or partially protonated forms LPEI discriminates between mammalian and bacterial model membranes whereas BPEI lacks selectivity for both the model membranes. Simulation results suggest that LPEI forms weak complex with the zwitterionic lipids whereas the side chain amino groups of BPEI sequester the zwitterionic lipids by forming tight complex. Consistent with these observations, label-free cell impedance measurements, cell viability assays and high content analysis indicate that BPEI is cytotoxic to human epithelial and fibroblasts cells. Crosslinking of BPEI onto electrospun gelatin mats attenuate the cytotoxicity for fibroblasts while retaining the antimicrobial activity against Gram-positive and yeasts strains. PEI crosslinked gelatin mats elicit bactericidal activity by contact-mediated killing and durable to leaching for 7days. The potent antimicrobial activity combined with enhanced selectivity of the crosslinked ES gelatin mats would expand the arsenel of biocides in the management of superficial skin infections. The contact-mediated microbicidal properties may avert antimicrobial resistance and expand the diversity of applications to prevent microbial contamination.

STATEMENT OF SIGNIFICANCE

Current commercially available advanced wound dressings are either impregnated with metallic silver or silver salts which have side effects or may not avert antimicrobial resistance. In this article, we have used multidisciplinary approach comprising of computational, chemical and biological methods to understand the antimicrobial properties and biocompatibility of linear (LPEI) and branched (BPEI) polyethylenimines. We then applied this knowledge to develop dual purpose wound dressings containing these polymers, which encourages healing while maintain antimicrobial activity. In addition, the approach can be expanded to rationalize the antimicrobial vs. cytotoxicity of other cationic polymers and the method of crosslinking would enhance their potentials as biocides for advanced materials.

摘要

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我们通过研究线性和支化聚乙烯亚胺的抗微生物活性,来报告其线性和支化聚乙烯亚胺之间的结构-性质关系,这些活性针对广泛的病原体。这两种聚合物都靶向细菌和酵母的细胞质膜,引发快速的杀菌特性。通过多尺度分子动力学模拟,我们表明,在完全或部分质子化形式下,LPEI 区分哺乳动物和细菌模型膜,而 BPEI 对这两种模型膜均无选择性。模拟结果表明,LPEI 与两性离子脂质形成弱复合物,而 BPEI 的侧链氨基通过形成紧密复合物将两性离子脂质隔离。与这些观察结果一致,无标记细胞阻抗测量、细胞活力测定和高内涵分析表明,BPEI 对人上皮和成纤维细胞具有细胞毒性。将 BPEI 交联到电纺明胶垫上可以减轻对成纤维细胞的细胞毒性,同时保留对革兰氏阳性菌和酵母菌株的抗菌活性。PEI 交联的明胶垫通过接触介导的杀伤产生杀菌活性,并且在 7 天内耐洗脱。这种强大的抗菌活性结合交联 ES 明胶垫的增强选择性,将扩大生物杀灭剂在管理浅表皮肤感染中的应用范围。接触介导的杀菌特性可以避免抗菌耐药性,并扩大其应用范围以防止微生物污染。

意义声明

目前市售的先进伤口敷料要么浸渍有金属银或银盐,要么具有副作用,或者可能无法避免抗菌耐药性。在本文中,我们使用了包括计算、化学和生物学方法在内的多学科方法来理解线性(LPEI)和支化(BPEI)聚乙烯亚胺的抗菌特性和生物相容性。然后,我们将这些知识应用于开发含有这些聚合物的双用途伤口敷料,这些敷料既鼓励愈合又保持抗菌活性。此外,该方法可以扩展到合理化其他阳离子聚合物的抗菌性与细胞毒性之间的关系,并且交联方法将提高它们作为高级材料的杀菌剂的潜力。

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