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金属生物活性填料对聚合物激光粉末床熔覆 PA12 复合材料抗菌性能的影响。

Influence of bioactive metal fillers on antimicrobial properties of PA12 composites produced by laser-based powder bed fusion of polymers.

机构信息

1Faculty of Mechanical Engineering, Department of Laser Technologies, Automation and Production Organization, Wrocław University of Science and Technology, Wrocław, Poland.

2"P.U.M.A.", Platform for Unique Models Application, Department of Pharmaceutical Microbiology and Parasitology, Wrocław Medical University, Wrocław, Poland.

出版信息

Acta Bioeng Biomech. 2023 Dec 31;25(4):11-21. doi: 10.37190/abb-02303-2023-04. Print 2023 Dec 1.

Abstract

: This study investigated the influence of three types of metallic microfillers, spherical silver and spherical, and dendritic copper, on the ability of polyamide 12 (PA12) to inhibit microorganism growth on the surfaces of samples produced using laser-based powder bed fusion of polymers (PBF-LB/P). The aim of this study was to initially characterize these materials regarding their potential applicability for parts dedicated to use in the hospitals, where surfaces are periodically disinfected using chemical and/or physical measures. : Composite powders with filler concentrations of 0.5, 1, 2 and 5% by weight were prepared using the mechanical mixing method and processed using PBF-LB/P. Three common hospital pathogens responsible for healthcare-associated infections: , and were tested. Additionally, the safety of the composites was assessed through tests using human cell lines: keratinocytes and fibroblasts. : The research reveals that addition of copper or silver causes decrease in bacterial colony viability compared to the material without a filler, but an insignificant effect on antifungal properties. There was no significant impact within the tested range of filler's content on the antibacterial properties. Furthermore, a strong effect of the microfillers on tested material's toxicity is observed. : The addition of metallic microfillers enhances the antibacterial response of polymeric materials processed with PBF-LB/P. Nevertheless, the observed varying levels of cytotoxicity toward eukaryotic cell lines underscore the need for further studies on the analysed materials to unequivocally determine their potential applicability as materials for short-term contact with human skin in a hospital setting.

摘要

本研究探讨了三种类型的金属微填料(球形银和球形、树枝状铜)对聚酰胺 12(PA12)抑制聚合物激光粉末床熔合(PBF-LB/P)制造的样品表面微生物生长能力的影响。本研究的目的是初步表征这些材料,以评估它们在医院中使用的潜在适用性,医院定期使用化学和/或物理措施对表面进行消毒。使用机械混合法制备了填充浓度为 0.5%、1%、2%和 5%的复合粉末,并使用 PBF-LB/P 进行加工。测试了三种常见的医院病原体,它们是导致医疗保健相关感染的原因:、和。此外,还通过使用人细胞系(角质细胞和成纤维细胞)进行的测试评估了复合材料的安全性。研究表明,与不含填料的材料相比,添加铜或银会导致细菌菌落活力下降,但对抗真菌性能的影响不大。在测试的填料含量范围内,抗菌性能没有显著影响。此外,还观察到微填料对测试材料毒性有很强的影响。添加金属微填料增强了用 PBF-LB/P 加工的聚合物材料的抗菌反应。然而,观察到对真核细胞系的细胞毒性水平存在差异,这突出表明需要对分析材料进行进一步研究,以明确确定它们在医院环境中与人体皮肤短期接触的潜在适用性。

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