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Stable and self-healable LbL coating with antibiofilm efficacy based on alkylated polyethyleneimine micelles

  • Qianqian Wang
  • , Lin Wang
  • , Lingling Gao
  • , Luofeng Yu
  • , Wei Feng
  • , Nian Liu
  • , Miao Xu
  • , Xiaozhou Li
  • , Peng Li
  • , Wei Huang
  • Nanjing Tech University
  • Northwest Agriculture and Forestry University

科研成果: 期刊稿件文章同行评审

31 引用 (Scopus)

摘要

Effective solutions are necessary for biomaterial-associated infections caused by bacteria adhesion and subsequent biofilm formation on the surface of biomedical implants/devices. Current antibacterial coatings are usually vulnerable, and their bactericidal efficacy is impaired or even eliminated upon scratching or abrasion. Thus, self-healable coatings capable of repairing defects themselves are highly desirable. In this work, N-decyl polyethyleneimine (DPEI), a cationic amphiphilic polymer able to self-assemble into micelles in water to concentrate the density of cationic charge, exhibited enhanced antibacterial activity towards the Gram-positive methicillin-resistant Staphylococcus aureus (MRSA) and Gram-negative Pseudomonas aeruginosa (P. aeruginosa). A layer-by-layer (LbL) assembled coating was prepared using DPEI micelles and polyacrylic acid (PAA), which could reduce more than 90% bacterial adhesion and prevent biofilm formation. In addition, the DPEI/PAA LbL-assembled coating remained stable even with rinsing in physiological saline for up to three weeks owing to the strong interaction induced by its high charge. More importantly, this antibacterial DPEI/PAA LbL-assembled coating achieved self-healing quickly under wet conditions after being scratched, preventing bacteria from adhering to the damaged areas and forming a biofilm. Importantly, this coating avoids the use of antibiotics, which is less likely to cause drug-resistance. In addition, this coating is also biocompatible with mammalian cells (C2C12 mouse myoblast). All these excellent properties endow this self-healing DPEI/PAA LbL-assembled coating with promising prospects for biomedical application.

源语言英语
页(从-至)3865-3875
页数11
期刊Journal of Materials Chemistry B
7
24
DOI
出版状态已出版 - 2019

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