4.8 Article

Recyclable Escherichia coli-Specific-Killing AuNP-Polymer (ESKAP) Nanocomposites

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 8, Issue 18, Pages 11309-11317

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.6b02074

Keywords

Escherichia coli; gold nanoparticle; specific-killing; glycopolymer; antibacterial polymer

Funding

  1. National Natural Science Foundation of China [21334004, 21374070, 21474072]
  2. Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD)
  3. Project of Scientific and Technologic Infrastructure of Suzhou [SZS201207]

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Escherichia coli plays a crucial role in various inflammatory diseases and infections that pose significant threats to both human health and the global environment. Specifically inhibiting the growth of pathogenic E. coli is of great and urgent concern. By modifying gold nanoparticles (AuNPs) with both poly[2-(methacrylamido)glucopyranose] (pMAG) and; poly[2-(methacryloyloxy)ethyl trimethylammonium iodide] (pMETAI), a novel recyclable E. coli-specific-killing AuNP-polymer (ESKAP) nanocomposite is proposed in this study, which based on both the high affinity of glycopolymers toward E. coli pili and the merits of antibacterial quaternized polymers attached to gold nanoparticles. The properties of nanocomposites with different ratios of pMAG to pMETAI grafted onto AuNPs are studied. With a pMAG:pMETAI feed ratio of 1:3, the nanocomposite appeared to specifically adhere to E. coli and highly inhibit the bacterial cells. After addition of mannose, which possesses higher affinity for the lectin on bacterial pill and has a competitive advantage over pMAG for adhesion to pili, the nanocomposite was able to escape from dead E. coli cells, becoming available for repeat use. The recycled nanocomposite retained good antibacterial activity for at least three cycles. Thus, this novel ESKAP nanocomposite is a promising, highly effective, and readily recyclable antibacterial agent that specifically kills E. coli. This nanocomposite has potential applications in biological sensing, biomedical diagnostics, biomedical imaging, drug delivery, and therapeutics.

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