Wang Haibo, Dong Ao, Hu Kun, Sun Weiwei, Wang Jundong, Han Lu, Mo Lixin, Li Luhai, Zhang Wei, Guo Yan, Zhu Li, Cui Fuzhai, Wei Yen
Beijing Engineering Research Center of Printed Electronics, Institute of Printing and Packaging Engineering, Beijing Institute of Graphic Communication, Beijing 102600, People's Republic of China.
State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Biotechnology, No. 20, Dongda Street, Fengtai District, Beijing 100071, People's Republic of China.
Biomed Mater. 2022 Apr 13;17(3). doi: 10.1088/1748-605X/ac62e7.
Poly L-lactic acid (PLLA) is a non-toxic, biocompatible degradable polymer material with excellent mechanical properties after moulding. However, it faces challenges in the use of biomedical materials because of its intolerance to bacteria. Here, we use an easy-to-operate method to prepare a composite multilayer membrane: PLLA membrane was used as substrates to assemble positively charged chitosan and negatively charged Ag@MXene on the surface using the layer-by-layer (LBL) method. The assembly process was detected by fluorescein isothiocyanate-labelled chitosan and the thickness of the coating multilayer was also detected as 210.0 ± 12.1 nm for P-M membrane and 460.5 ± 26.5 nm for P-Ag@M membrane. The surface self-assembled multilayers exhibited 91.27% and 96.11% growth inhibition ratio againstandstrains under 808 nm near-infrared laser radiation with a synergistic photothermal antibacterial effect. Furthermore, best biocompatibility of P-M and P-Ag@M membranes compare to PLLA membrane motivated us to further explore its application in biomedical materials.
聚L-乳酸(PLLA)是一种无毒、生物相容的可降解聚合物材料,成型后具有优异的机械性能。然而,由于其对细菌的不耐受性,在生物医学材料的应用中面临挑战。在此,我们采用一种易于操作的方法制备复合多层膜:以PLLA膜为基底,采用层层(LBL)法在其表面组装带正电荷的壳聚糖和带负电荷的Ag@MXene。通过异硫氰酸荧光素标记的壳聚糖检测组装过程,P-M膜的涂层多层厚度检测为210.0±12.1nm,P-Ag@M膜的涂层多层厚度检测为460.5±26.5nm。表面自组装多层膜在808nm近红外激光辐射下对菌株的生长抑制率分别为91.27%和96.11%,具有协同光热抗菌效果。此外,与PLLA膜相比,P-M和P-Ag@M膜具有最佳的生物相容性,这促使我们进一步探索其在生物医学材料中的应用。