Borzenkov Mykola, Pallavicini Piersandro, Taglietti Angelo, D'Alfonso Laura, Collini Maddalena, Chirico Giuseppe
Department of Medicine and Surgery, Nanomedicine Center, University of Milano-Bicocca, piazza dell'Ateneo Nuovo, 20126, Milan, Italy.
Department of Chemistry, University of Pavia, via Taramelli 12, 27100, Pavia, Italy.
Beilstein J Nanotechnol. 2020 Jul 31;11:1134-1146. doi: 10.3762/bjnano.11.98. eCollection 2020.
Bacterial contamination is a severe issue that affects medical devices, hospital tools and surfaces. When microorganisms adhere to a surface (e.g., medical devices or implants) they can develop into a biofilm, thereby becoming more resistant to conventional biocides and disinfectants. Nanoparticles can be used as an antibacterial agent in medical instruments or as a protective coating in implantable devices. In particular, attention is being drawn to photothermally active nanoparticles that are capable of converting absorbed light into heat. These nanoparticles can efficiently eradicate bacteria and biofilms upon light activation (predominantly near the infrared to near-infrared spectral region) due a rapid and pronounced local temperature increase. By using this approach new, protective, antibacterial surfaces and materials can be developed that can be remotely activated on demand. In this review, we summarize the state-of-the art regarding the application of various photothermally active nanoparticles and their corresponding nanocomposites for the light-triggered eradication of bacteria and biofilms.
细菌污染是一个严重问题,会影响医疗设备、医院工具及表面。当微生物附着于表面(如医疗设备或植入物)时,它们会形成生物膜,从而对传统杀菌剂和消毒剂更具抗性。纳米颗粒可在医疗器械中用作抗菌剂,或在可植入设备中用作保护涂层。特别值得关注的是能够将吸收的光转化为热的光热活性纳米颗粒。由于局部温度迅速且显著升高,这些纳米颗粒在光激活(主要在近红外到近红外光谱区域)后能够有效根除细菌和生物膜。通过这种方法,可以开发出新型的、具有保护作用的抗菌表面和材料,这些表面和材料能够根据需要进行远程激活。在本综述中,我们总结了各种光热活性纳米颗粒及其相应纳米复合材料在光触发根除细菌和生物膜方面的应用现状。