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Polyelectrolyte multilayer coatings for short/long-term release of antibacterial agents

机译:聚电解质多层涂层,用于短/长期释放抗菌剂

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摘要

Osteomyelitis caused by orthopedic and cranial implants infection is the principal cause of implant failure, septicemia, and even death; it is an urgent issue with prevalence rates ranging from 4% to 10% in industrialized countries. Bioactive and multifunctional materials such as bioglass, biometal, and biopolymer are commonly used in biomedical fields; however, it is still a challenge to fabricate effective antibacterial coatings. The purpose of this study is to use layer-by-layer technology to develop an antibacterial coating with outer and inner portions for short/long-term release of antibacterial agents. Antibiotics would be released immediately after implant and antibacterial silver ions in the long term. In this study, polyelectrolyte multilayers (PEMs) comprised of collagen as the cationic layers and gamma-poly-glutamic acid as the anionic layers were coated onto the 316L stainless steel substrate via a spin coating technique. A chitosan buffer layer was designed and placed in the middle of the coating. 1 mol% silver additive 58S bioactive glass (SiO2: CaO: P2O5 = 60: 36: 4 in mol%) was introduced into the inner gamma-poly-glutamic acid layers, while gentamicin was added to the outer layer.
机译:骨髓炎由骨科和颅骨植入物感染引起的是植入失败,败血症甚至死亡的主要原因;这是一个紧急问题,流行率在工业化国家的4%至10%范围内。生物和多功能材料如生物制造领域,常用于生物制品,生物素和生物聚合物等生物活性和多功能材料;然而,制造有效的抗菌涂料仍然是一项挑战。本研究的目的是使用层逐层技术,用外部和内部开发抗菌涂层,用于短/长期释放抗菌剂。长期植入物和抗菌银离子后立即释放抗生素。在该研究中,将由胶原层组成的聚电解质多层(PEMS)作为阳离子层和γ-聚谷氨酸作为阴离子层涂覆到316L不锈钢基板上,通过旋涂技术涂覆到316L不锈钢基板上。设计并置于涂层中间的壳聚糖缓冲层。将1mol%银添加剂58S生物活性玻璃(SiO 2:CaO:P2O5 = 60:36:4以摩尔%)引入内γ-聚谷氨酸层,同时将庆大霉素加入到外层中。

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