Suppr超能文献

聚电解质多层膜中含嵌入银离子的脂质体:抗菌剂的载药膜

Embedded silver ions-containing liposomes in polyelectrolyte multilayers: cargos films for antibacterial agents.

作者信息

Malcher Marta, Volodkin Dmitry, Heurtault Béatrice, André Philippe, Schaaf Pierre, Möhwald Helmuth, Voegel Jean-Claude, Sokolowski Adam, Ball Vincent, Boulmedais Fouzia, Frisch Benoit

机构信息

Département de Chimie Bioorganique, Institut Gilbert Laustriat, UMR 7175 CNRS/Université Louis Pasteur, Illkirch, France.

出版信息

Langmuir. 2008 Sep 16;24(18):10209-15. doi: 10.1021/la8014755. Epub 2008 Aug 13.

Abstract

A new antibacterial coating made of poly(L-lysine)/hyaluronic acid (PLL/HA) multilayer films and liposome aggregates loaded with silver ions was designed. Liposomes filled with an AgNO 3 solution were first aggregated by the addition of PLL in solution. The obtained micrometer-sized aggregates were then deposited on a PLL/HA multilayer film, playing the role of a spacer with the support. Finally, HA/PLL/HA capping layers were deposited on top of the architecture to form a composite AgNO 3 coating. Release of encapsulated AgNO 3 from this composite coating was followed and triggered upon temperature increase over the transition temperature of vesicles, found to be equal to 34 degrees C. After determination of the minimal inhibitory concentration (MIC) of AgNO 3 in solution, the antibacterial activity of the AgNO 3 coating was investigated against Escherichia coli. A 4-log reduction in the number of viable E. coli cells was observed after contact for 120 min with a 120 ng/cm (2) AgNO 3 coating. In comparison, no bactericidal activity was found for PLL/HA films previously dipped in an AgNO 3 solution and for PLL/HA films with liposome aggregates containing no AgNO 3 solution. The strong bactericidal effect could be linked to the diffusion of silver ions out of the AgNO 3 coating, leading to an important bactericidal concentration close to the membrane of the bacteria. A simple method to prepare antibacterial coatings loaded with a high and controlled amount of AgNO 3 is therefore proposed. This procedure is far superior to that soaking AgNO 3 or Ag nanoparticles into a coating. In principle, other small bactericidal chemicals like antibiotics could be encapsulated by this method. This study opens a new route to modify surfaces with small solutes that are not permeating phospholipid membranes below the phase transition temperature.

摘要

设计了一种由聚(L-赖氨酸)/透明质酸(PLL/HA)多层膜和负载银离子的脂质体聚集体制成的新型抗菌涂层。首先通过在溶液中添加PLL使填充有AgNO₃溶液的脂质体聚集。然后将获得的微米级聚集体沉积在PLL/HA多层膜上,起到支撑间隔物的作用。最后,在该结构顶部沉积HA/PLL/HA封端层以形成复合AgNO₃涂层。跟踪该复合涂层中包封的AgNO₃的释放情况,并在温度升高超过囊泡的转变温度(发现等于34℃)时触发释放。在确定溶液中AgNO₃的最小抑菌浓度(MIC)后,研究了AgNO₃涂层对大肠杆菌的抗菌活性。与120 ng/cm²的AgNO₃涂层接触120分钟后,观察到存活的大肠杆菌细胞数量减少了4个对数级。相比之下,先前浸入AgNO₃溶液中的PLL/HA膜以及含有不含AgNO₃溶液的脂质体聚集体的PLL/HA膜均未发现杀菌活性。强大的杀菌效果可能与银离子从AgNO₃涂层中扩散出来有关,导致在细菌膜附近形成重要的杀菌浓度。因此,提出了一种制备负载高且可控量AgNO₃的抗菌涂层的简单方法。该方法远优于将AgNO₃或Ag纳米颗粒浸泡到涂层中的方法。原则上,其他小的杀菌化学品如抗生素也可以通过这种方法包封。这项研究开辟了一条新途径,可利用在相变温度以下不能渗透磷脂膜的小溶质来修饰表面。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验