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用于预防和治疗微生物感染的聚合物生物材料。

Polymeric Biomaterials for Prevention and Therapeutic Intervention of Microbial Infections.

作者信息

Ghosh Sreyan, Mukherjee Sudip, Patra Dipanjana, Haldar Jayanta

出版信息

Biomacromolecules. 2022 Mar 14;23(3):592-608. doi: 10.1021/acs.biomac.1c01528. Epub 2022 Feb 21.

Abstract

The escalating emergence of multidrug-resistant (MDR) pathogens and their ability to colonize into biofilms on a multitude of surfaces have struck global health as a nightmare. The stagnation in the development of antibiotics and the deterioration of clinical pipelines have incited an invigorating search for smart and innovative alternatives in the scientific community. Further, a steep rise in the usage of biomedical devices and implants has resulted in an accelerated occurrence of infections. Toward the goal of mitigation of the aforementioned challenges, antimicrobial polymers have stood out as an astounding option. In this perspective, we highlight our contribution to the field of polymeric biomaterials for tackling antimicrobial resistance (AMR) and infections. Polymers inspired from antimicrobial peptides (AMPs) have been utilized as therapeutic interventions to curb MDR infections and also to rejuvenate obsolete antibiotics. Further, cationic polymers have been used to impart antimicrobial properties to different biomedical surfaces. These cationic polymer-coated surfaces can inactivate pathogens upon contact as well as prevent their biofilm formation. In addition, antimicrobial hydrogels, which are prepared from either inherently antimicrobial polymers or biocide-loaded polymeric hydrogel matrices, have also been engineered. With a brief overview of the progress in the field, detailed elaboration of the polymeric biomaterials for prevention and therapeutic intervention of microbial infections developed by our group is presented. Finally, the challenges in the field of antimicrobial polymers with discussion on the proceedings of polymeric research to alleviate these challenges are discussed.

摘要

多重耐药(MDR)病原体的不断出现及其在多种表面形成生物膜定殖的能力,已成为全球健康的一场噩梦。抗生素研发的停滞以及临床研发渠道的恶化,促使科学界积极寻找智能且创新的替代方案。此外,生物医学设备和植入物使用量的急剧增加,导致感染发生率加速上升。为了缓解上述挑战,抗菌聚合物已成为一个令人瞩目的选择。从这个角度出发,我们强调我们在用于应对抗菌耐药性(AMR)和感染的聚合物生物材料领域所做的贡献。受抗菌肽(AMPs)启发的聚合物已被用作治疗手段,以抑制MDR感染并使过时的抗生素恢复活力。此外,阳离子聚合物已被用于赋予不同生物医学表面抗菌性能。这些阳离子聚合物涂层表面在接触时可使病原体失活,并防止其形成生物膜。此外,还制备了由固有抗菌聚合物或载有杀生剂的聚合物水凝胶基质制成的抗菌水凝胶。在简要概述该领域进展的基础上,详细阐述了我们团队开发的用于预防和治疗微生物感染的聚合物生物材料。最后,讨论了抗菌聚合物领域的挑战以及为缓解这些挑战而进行的聚合物研究进展。

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