Université de Lorraine, CNRS, LCPME, F-54000 Nancy, France.
Université de Lorraine, CNRS, LIEC, F-54000 Nancy, France.
ACS Appl Bio Mater. 2021 Mar 15;4(3):2614-2627. doi: 10.1021/acsabm.0c01595. Epub 2021 Feb 23.
The elaboration of efficient hydrogel-based materials with antimicrobial properties requires a refined control of defining their physicochemical features, which includes mechanical stiffness, so as to properly mediate their antibacterial activity. In this work, we design hydrogels consisting of polyelectrolyte multilayer films for the loading of T4 and φX174 bacteria-killing viruses, also called bacteriophages. We investigate the antiadhesion and bactericidal performances of this biomaterial against , with a specific focus on the effects of chemical cross-linking of the hydrogel matrix, which, in turn, mediates the hydrogel stiffness. Depending on the latter and on phage replication features, it is found that the hydrogels loaded with the bacteria-killing viruses make both contact killing (targeted bacteria are those adhered at the hydrogel surface) and release killing (planktonic bacteria are the targets) possible with 20-80% efficiency after only 4 h of incubation at 25 °C as compared to cases where hydrogels are free of viruses. We further demonstrate the lack of dependence of virus diffusion within the hydrogel and of the maximal viral storage capacity on the hydrogel mechanical properties. In addition to the evidenced bacteriolytic activity of the phages loaded in the hydrogels, the antimicrobial property of the phage-loaded materials is shown to be partly controlled by the chemistry of the hydrogel skeleton and, more specifically, by the mobility of the peripheral free polycationic components, known for their ability to weaken and permeabilize membranes of bacteria, the latter then becoming "easier" targets for the viruses.
高效水凝胶基材料的研制具有抗菌性能需要对定义其物理化学特性进行精细控制,包括机械刚度,以适当调节其抗菌活性。在这项工作中,我们设计了由聚电解质多层膜组成的水凝胶,用于装载 T4 和 φX174 细菌杀伤病毒,也称为噬菌体。我们研究了这种生物材料对 的抗粘连和杀菌性能,特别关注水凝胶基质的化学交联的影响,这反过来又调节水凝胶的硬度。根据后者和噬菌体复制的特点,发现负载有杀菌病毒的水凝胶可以进行接触杀菌(目标细菌是附着在水凝胶表面的细菌)和释放杀菌(浮游细菌是目标),在 25°C 孵育 4 小时后效率达到 20-80%,而不含病毒的水凝胶则没有这种效果。我们进一步证明了病毒在水凝胶内的扩散以及最大病毒储存容量与水凝胶力学性能无关。除了证明负载在水凝胶中的噬菌体具有明显的溶菌活性外,还表明负载噬菌体的材料的抗菌性能部分受水凝胶骨架化学性质的控制,更具体地说,受外围游离聚阳离子成分的迁移性的控制,众所周知,这些成分能够削弱和渗透细菌的膜,使细菌更容易成为病毒的目标。