%0 Journal Article %T Highly Stable Graphene-Based Nanocomposite (GO每PEI每Ag) with Broad-Spectrum, Long-Term Antimicrobial Activity and Antibiofilm Effects %J - %D 2018 %R https://doi.org/10.1021/acsami.8b03185 %X Various silver nanoparticle (AgNP)-decorated graphene oxide (GO) nanocomposites (GO每Ag) have received increasing attention owing to their antimicrobial activity and biocompatibility; however, their aggregation in physiological solutions and the generally complex synthesis methods warrant improvement. This study aimed to synthesize a polyethyleneimine (PEI)-modified and AgNP-decorated GO nanocomposite (GO每PEI每Ag) through a facile approach through microwave irradiation without any extra reductants and surfactants; its antimicrobial activity was investigated on Gram-negative/-positive bacteria (including drug-resistant bacteria) and fungi. Compared with GO每Ag, GO每PEI每Ag acquired excellent stability in physiological solutions and electropositivity, showing substantially higher antimicrobial efficacy. Moreover, GO每PEI每Ag exhibited particularly excellent long-term effects, presenting no obvious decline in antimicrobial activity after 1 week storage in physiological saline and repeated use for three times and the lasting inhibition of bacterial growth in nutrient-rich culture medium. In contrast, GO每Ag exhibited a >60% decline in antimicrobial activity after storage. Importantly, GO每PEI每Ag effectively eliminated adhered bacteria, thereby preventing biofilm formation. The primary antimicrobial mechanisms of GO每PEI每Ag were evidenced as physical damage to the pathogen structure, causing cytoplasmic leakage. Hence, stable GO每PEI每Ag with robust, long-term antimicrobial activity holds promise in combating public-health threats posed by drug-resistant bacteria and biofilms %U https://pubs.acs.org/doi/10.1021/acsami.8b03185