Australian Centre for NanoMedicine, School of Chemical Engineering, The University of New South Wales, Sydney, NSW, 2052, Australia.
Institute for Tropical Technology, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Cau Giay, Hanoi, 10000, Vietnam.
Macromol Rapid Commun. 2022 Nov;43(21):e2200377. doi: 10.1002/marc.202200377. Epub 2022 Aug 2.
Antimicrobial polymers (AMPs) have emerged as a promising approach to combat multidrug-resistant pathogens. Developed from binary polymers, which contain cationic and hydrophobic groups, ternary polymers are enhanced by adding neutral hydrophilic monomers to improve their biocompatibility. Cationic groups have attracted significant attention owing to their pivotal role in AMPs. Although many studies have investigated the effect of cationic groups on antimicrobial activity of binary AMPs, there is a lack of comprehensive and systematic evaluation for ternary AMPs. Therefore, a library of 31 statistical amphiphilic ternary polymers containing different cationic groups, including primary amine, guanidine, and sulfonium groups is prepared to investigate the impact of cationic groups on antimicrobial activity and biocompatibility. It is shown that the cationic balance appears to be a critical factor influencing polymers' antibacterial activity and selectivity. The results reveal that the polymers that have the ratio of the cationic groups ranging between 50% and 60%, coupled with a cationic/hydrophobic ratio in the range of [1.4-2] and an appropriate neutral hydrophilic/hydrophobic balance, exhibited the highest selectivity toward mammalian cells. This study elucidates a structure-property-performance relationship for ternary AMPs, which contributes to the development of AMPs capable of selectively targeting gram-negative pathogens.
抗菌聚合物(AMPs)作为一种对抗多药耐药病原体的有前途的方法已经出现。从包含阳离子和疏水性基团的二元聚合物发展而来,通过添加中性亲水性单体来提高其生物相容性来增强三元聚合物。阳离子基团因其在 AMPs 中的关键作用而引起了极大的关注。尽管许多研究已经研究了阳离子基团对二元 AMPs 的抗菌活性的影响,但对于三元 AMPs 缺乏全面和系统的评估。因此,制备了包含不同阳离子基团(包括伯胺、胍和𬭸基团)的 31 种统计两亲性三元聚合物库,以研究阳离子基团对抗菌活性和生物相容性的影响。结果表明,阳离子平衡似乎是影响聚合物抗菌活性和选择性的关键因素。结果表明,具有阳离子基团比例在 50%至 60%之间,阳离子/疏水性比例在[1.4-2]范围内以及适当的中性亲水性/疏水性平衡的聚合物对哺乳动物细胞表现出最高的选择性。本研究阐明了三元 AMPs 的结构-性能-性能关系,这有助于开发能够选择性靶向革兰氏阴性病原体的 AMPs。