Department of Biosystems Engineering, Faculty of Agricultural and Food Sciences, University of Manitoba, Winnipeg, Manitoba R3T 2N2, Canada.
Biomedical Engineering, Faculty of Engineering, University of Manitoba, Winnipeg, Manitoba R3T 2N2, Canada.
ACS Appl Mater Interfaces. 2020 Oct 14;12(41):45859-45872. doi: 10.1021/acsami.0c14213. Epub 2020 Oct 2.
Bacteria responsive color-changing wound dressings offer a valuable platform for continuous monitoring of the wound bed facilitating early detection of bacterial infections. In this study, we present a highly sensitive electrospun nanofibrous polyurethane wound dressing incorporating a hemicyanine-based chromogenic probe with a labile ester linkage that can be enzymatically cleaved by bacterial lipase released from clinically relevant strains, such as and methicillin-resistant (MRSA). A rapid chromogenic response was achieved by localizing the dye at the surface of core-shell fibers, resulting in a 5x faster response relative to conventional nanofibers. By incorporating polyvinylpyrrolidone (PVP) dopant in the shell, the sensitivity was boosted to enable detection of bacteria at clinically relevant concentrations after 2 h exposure: 2.5 × 10 CFU/cm and 1.0 × 10 CFU/cm MRSA. Introduction of PVP in the shell also boosted the degree of hydrolysis of the chromogenic probe by a factor of 1.2× after a 3 h exposure to a low concentration of (10 CFU/cm). PVP was also found to improve the discernibility of the color change at high bacterial concentrations. The co-operativity between the chromogenic probe, fiber structure, and polymer composition is well-suited for timely in situ detection of wound infection.
细菌响应型变色伤口敷料为连续监测伤口床提供了有价值的平台,有助于早期发现细菌感染。在本研究中,我们提出了一种高度敏感的基于静电纺丝的纳米纤维聚氨酯伤口敷料,其中包含一种基于半花青的显色探针,具有不稳定的酯键,可被临床相关菌株(如 和耐甲氧西林金黄色葡萄球菌(MRSA))释放的细菌脂肪酶酶切。通过将染料定位在核壳纤维的表面,实现了快速显色响应,与传统纳米纤维相比,响应速度提高了 5 倍。通过在壳中掺入聚乙烯吡咯烷酮(PVP)掺杂剂,在 2 小时暴露后,可将灵敏度提高到能够检测到临床相关浓度的细菌:2.5×10 CFU/cm 和 1.0×10 CFU/cm MRSA。在低浓度 (10 CFU/cm) 下暴露 3 小时后,PVP 还将显色探针的水解程度提高了 1.2×。还发现 PVP 提高了在高细菌浓度下颜色变化的可分辨性。显色探针、纤维结构和聚合物组成之间的协同作用非常适合及时原位检测伤口感染。