Piskláková Lenka, Skuhrovcová Kristýna, Bártová Tereza, Seidelmannová Julie, Vondrovic Štěpán, Velebný Vladimír
Contipro a.s., Dolní Dobrouč 401, 561 02 Dolní Dobrouč, Czech Republic.
Nanotechnology Centre, Centre for Energy and Environmental Technologies, VŠB-Technical University of Ostrava, 17. Listopadu 2172/15, 708 00 Ostrava, Czech Republic.
Polymers (Basel). 2024 Feb 29;16(5):664. doi: 10.3390/polym16050664.
Nanofibrous materials represent a very promising form of advanced carrier systems that can be used industrially, especially in regenerative medicine as highly functional bandages, or advanced wound dressings. By incorporation of antimicrobial additives directly into the structure of the nanofiber carrier, the functionality of the layer is upgraded, depending on the final requirement-bactericidal, bacteriostatic, antiseptic, or a generally antimicrobial effect. Such highly functional nanofibrous layers can be prepared mostly by electrospinning technology from both synthetic and natural polymers. The presence of a natural polymer in the composition is very advantageous. Especially in medical applications where, due to the presence of the material close to the human body, the healing process is more efficient and without the occurrence of an unwanted inflammatory response. However, converting natural polymers into nanofibrous form, with a homogeneously distributed and stable additive, is a great challenge. Thus, a combination of natural and synthetic materials is often used. This review clearly summarizes the issue of the incorporation and effectiveness of different types of antimicrobial substances, such as nanoparticles, antibiotics, common antiseptics, or substances of natural origin, into electrospun nanofibrous layers made of mostly natural polymer materials. A section describing the problematic aspects of antimicrobial polymers is also included.
纳米纤维材料是一种非常有前景的先进载体系统形式,可用于工业领域,特别是在再生医学中作为高功能绷带或先进的伤口敷料。通过将抗菌添加剂直接掺入纳米纤维载体的结构中,可根据最终要求——杀菌、抑菌、防腐或一般抗菌效果来提升该层的功能。这种高功能纳米纤维层大多可通过静电纺丝技术由合成聚合物和天然聚合物制备而成。组合物中天然聚合物的存在非常有利。特别是在医疗应用中,由于材料靠近人体,愈合过程更高效且不会出现不必要的炎症反应。然而,将天然聚合物转化为具有均匀分布且稳定添加剂的纳米纤维形式是一项巨大挑战。因此,常使用天然材料与合成材料的组合。本综述清晰地总结了不同类型抗菌物质(如纳米颗粒、抗生素、常见防腐剂或天然来源物质)掺入主要由天然聚合物材料制成的静电纺纳米纤维层中的问题及有效性。还包括了描述抗菌聚合物问题方面的章节。