Olmos Dania, González-Benito Javier
Department of Materials Science and Engineering and Chemical Engineering, Instituto de Química y Materiales Álvaro Alonso Barba (IQMAA), Universidad Carlos III de Madrid, Leganés, 28911 Madrid, Spain.
Polymers (Basel). 2021 Feb 18;13(4):613. doi: 10.3390/polym13040613.
Infections caused by bacteria are one of the main causes of mortality in hospitals all over the world. Bacteria can grow on many different surfaces and when this occurs, and bacteria colonize a surface, biofilms are formed. In this context, one of the main concerns is biofilm formation on medical devices such as urinary catheters, cardiac valves, pacemakers or prothesis. The development of bacteria also occurs on materials used for food packaging, wearable electronics or the textile industry. In all these applications polymeric materials are usually present. Research and development of polymer-based antibacterial materials is crucial to avoid the proliferation of bacteria. In this paper, we present a review about polymeric materials with antibacterial materials. The main strategies to produce materials with antibacterial properties are presented, for instance, the incorporation of inorganic particles, micro or nanostructuration of the surfaces and antifouling strategies are considered. The antibacterial mechanism exerted in each case is discussed. Methods of materials preparation are examined, presenting the main advantages or disadvantages of each one based on their potential uses. Finally, a review of the main characterization techniques and methods used to study polymer based antibacterial materials is carried out, including the use of single force cell spectroscopy, contact angle measurements and surface roughness to evaluate the role of the physicochemical properties and the micro or nanostructure in antibacterial behavior of the materials.
细菌引起的感染是全球医院死亡率的主要原因之一。细菌能在许多不同表面生长,当这种情况发生且细菌在表面定殖时,就会形成生物膜。在这种背景下,主要关注点之一是在诸如导尿管、心脏瓣膜、起搏器或假体等医疗设备上形成生物膜。细菌也会在用于食品包装、可穿戴电子产品或纺织工业的材料上生长。在所有这些应用中通常都存在聚合物材料。基于聚合物的抗菌材料的研发对于避免细菌增殖至关重要。在本文中,我们对具有抗菌性能的聚合物材料进行综述。介绍了制备具有抗菌性能材料的主要策略,例如,考虑了无机颗粒的掺入、表面的微纳结构化以及防污策略。讨论了每种情况下发挥作用的抗菌机制。研究了材料制备方法,并根据其潜在用途阐述了每种方法的主要优缺点。最后,对用于研究基于聚合物的抗菌材料的主要表征技术和方法进行了综述,包括使用单力细胞光谱法、接触角测量和表面粗糙度来评估材料的物理化学性质以及微纳结构在抗菌行为中的作用。