Departament d'Enginyeria Química, IMEM-BRT, EEBE, Universitat Politécnica de Catalunya, C/Eduard Maristany, 10-14, Ed. I, 2nd Floor, 08019 Barcelona, Spain.
Barcelona Research Center in Multiscale Science and Engineering, Universitat Politécnica de Catalunya, C/Eduard Maristany, 10-14, Basement S-1, 08019 Barcelona, Spain.
ACS Appl Bio Mater. 2022 Oct 17;5(10):4803-4813. doi: 10.1021/acsabm.2c00509. Epub 2022 Sep 27.
This work aimed at the antimicrobial functionalization of 3D-printed polymer-infiltrated biomimetic ceramic networks (PICN). The antimicrobial properties of the polymer-ceramic composites were achieved by coating them with human- and environmentally safe silver nanoparticles trapped in a phenolated lignin matrix (Ag@PL NPs). Lignin was enzymatically phenolated and used as a biobased reducing agent to obtain stable Ag@PL NPs, which were then formulated in a silane (γ-MPS) solution and deposited to the PICN surface. The presence of the NPs and their proper attachment to the surface were analyzed with spectroscopic methods (FTIR and Raman) and X-ray photoelectron spectroscopy (XPS). Homogeneous distribution of 13.4 ± 3.2 nm NPs was observed in the transmission electron microscopy (TEM) images. The functionalized samples were tested against Gram-positive () and Gram-negative () bacteria, validating their antimicrobial efficiency in 24 h. The bacterial reduction of was 90% in comparison with the pristine surface of PICN. To confirm that the Ag-functionalized PICN scaffold is a safe material to be used in the biomedical field, its biocompatibility was demonstrated with human fibroblast (BJ-5ta) and keratinocyte (HaCaT) cells, which was higher than 80% in both cell lines.
本工作旨在对 3D 打印聚合物渗透仿生陶瓷网络(PICN)进行抗菌功能化。通过将其涂覆在人及环境安全的银纳米颗粒(Ag@PL NPs)中,使聚合物-陶瓷复合材料具有抗菌性能,这些银纳米颗粒被困在酚化木质素基质中。木质素经酶法酚化,并用作生物基还原剂以获得稳定的 Ag@PL NPs,然后将其配制在硅烷(γ-MPS)溶液中并沉积到 PICN 表面。通过光谱方法(FTIR 和拉曼)和 X 射线光电子能谱(XPS)分析 NPs 的存在及其与表面的适当附着。在透射电子显微镜(TEM)图像中观察到 13.4±3.2nm NPs 的均匀分布。对功能化样品进行革兰氏阳性菌()和革兰氏阴性菌()的测试,验证了其在 24 小时内的抗菌效率。与 PICN 原始表面相比,的细菌减少率为 90%。为了证实 Ag 功能化 PICN 支架是一种可用于生物医学领域的安全材料,用人类成纤维细胞(BJ-5ta)和角质形成细胞(HaCaT)进行了其生物相容性测试,在这两种细胞系中,其生物相容性均高于 80%。