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用于医疗器械的具有增强抗生物膜活性的新型铁氧化物基涂层

New FeO-Based Coatings with Enhanced Anti-Biofilm Activity for Medical Devices.

作者信息

Pirușcă Ioana Adelina, Balaure Paul Cătălin, Grumezescu Valentina, Irimiciuc Stefan-Andrei, Oprea Ovidiu-Cristian, Bîrcă Alexandra Cătălina, Vasile Bogdan, Holban Alina Maria, Voinea Ionela C, Stan Miruna S, Trușcă Roxana, Grumezescu Alexandru Mihai, Croitoru George-Alexandru

机构信息

Department of Science and Engineering of Oxide Materials and Nanomaterials, National University of Science and Technology POLITEHNICA Bucharest, 011061 Bucharest, Romania.

Department of Organic Chemistry, National University of Science and Technology POLITEHNICA Bucharest, 011061 Bucharest, Romania.

出版信息

Antibiotics (Basel). 2024 Jul 7;13(7):631. doi: 10.3390/antibiotics13070631.

Abstract

With the increasing use of invasive, interventional, indwelling, and implanted medical devices, healthcare-associated infections caused by pathogenic biofilms have become a major cause of morbidity and mortality. Herein, we present the fabrication, characterization, and evaluation of biocompatibility and anti-biofilm properties of new coatings based on FeO nanoparticles (NPs) loaded with usnic acid (UA) and ceftriaxone (CEF). Sodium lauryl sulfate (SLS) was employed as a stabilizer and modulator of the polarity, dispersibility, shape, and anti-biofilm properties of the magnetite nanoparticles. The resulting FeO functionalized NPs, namely FeO@SLS, FeO@SLS/UA, and FeO@SLS/CEF, respectively, were prepared by co-precipitation method and fully characterized by XRD, TEM, SAED, SEM, FTIR, and TGA. They were further used to produce nanostructured coatings by matrix-assisted pulsed laser evaporation (MAPLE) technique. The biocompatibility of the coatings was assessed by measuring the cell viability, lactate dehydrogenase release, and nitric oxide level in the culture medium and by evaluating the actin cytoskeleton morphology of murine pre-osteoblasts. All prepared nanostructured coatings exhibited good biocompatibility. Biofilm growth inhibition ability was tested at 24 h and 48 h against and as representative models for Gram-positive and Gram-negative bacteria. The coatings demonstrated good biocompatibility, promoting osteoblast adhesion, migration, and growth without significant impact on cell viability or morphology, highlighting their potential for developing safe and effective antibacterial surfaces.

摘要

随着侵入性、介入性、留置性和植入性医疗设备的使用日益增加,由致病性生物膜引起的医疗保健相关感染已成为发病和死亡的主要原因。在此,我们展示了基于负载松萝酸(UA)和头孢曲松(CEF)的FeO纳米颗粒(NPs)的新型涂层的制备、表征以及生物相容性和抗生物膜性能评估。十二烷基硫酸钠(SLS)用作磁铁矿纳米颗粒极性、分散性、形状和抗生物膜性能的稳定剂和调节剂。通过共沉淀法分别制备了所得的FeO功能化纳米颗粒,即FeO@SLS、FeO@SLS/UA和FeO@SLS/CEF,并通过XRD、TEM、SAED、SEM、FTIR和TGA进行了全面表征。它们进一步通过基质辅助脉冲激光蒸发(MAPLE)技术用于制备纳米结构涂层。通过测量细胞活力、培养基中乳酸脱氢酶释放量和一氧化氮水平以及评估小鼠前成骨细胞的肌动蛋白细胞骨架形态来评估涂层的生物相容性。所有制备的纳米结构涂层均表现出良好的生物相容性。以金黄色葡萄球菌和大肠杆菌作为革兰氏阳性和革兰氏阴性细菌的代表性模型,在24小时和48小时测试了生物膜生长抑制能力。这些涂层表现出良好的生物相容性,促进成骨细胞粘附、迁移和生长,而对细胞活力或形态没有显著影响,突出了它们在开发安全有效的抗菌表面方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbfa/11273941/0730956017f0/antibiotics-13-00631-g001.jpg

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