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激光增材制造制备的含铜多孔钛合金的抗菌性能

Antibacterial performance of a porous Cu-bearing titanium alloy by laser additive manufacturing.

作者信息

Xu Jiawei, Lu Yanjin, Pan Xiyun, Zhan Desong, Wang Qiang, Zhang Ning

机构信息

School and Hospital of Stomatology, China Medical University, Shenyang, China.

Liaoning Provincial Key Laboratory of Oral Diseases, Shenyang, China.

出版信息

Front Bioeng Biotechnol. 2023 Aug 3;11:1226745. doi: 10.3389/fbioe.2023.1226745. eCollection 2023.

Abstract

is the most common species that causes peri-implantitis. It forms an irreversible dense biofilm and causes inflammation. A novel 3D-printed porous TC4-6Cu alloy was fabricated using selective laser melting (SLM) technology for the dental implant, which is anticipated to inhibit biofilm formation. We attempted to investigate the antibacterial ability and antibacterial mechanism of the 3D-printed porous TC4-6Cu alloy against . This work used scanning electron microscopy (SEM) and laser confocal microscopy (CLSM) to detect the antimicrobial ability of the alloy against sessile . The results indicated that the 3D-printed porous TC4-6Cu alloy could cause bacterial fragmentation and deformation. Plate antimicrobial counting experiments showed that the antibacterial rates of the alloy against adherent bacteria and planktonic bacteria after 24 h were 98.05% and 73.92%, respectively. The minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) of Cu were tested to appraise the antibacterial property of the alloy against planktonic The relationship between the antibacterial mechanism of the alloy with oxidative stress was evaluated through ROS fluorescence intensity and protein leakage concentration. The results revealed that the alloy significantly eliminated adherent bacteria and inhibited biofilm formation. Moreover, 3D-printed porous TC4-6Cu alloy demonstrated significant bactericidal ability by inducing the production of reactive oxygen species (ROS), which could result in protein leakage from the bacterial cell membrane. This research may open a new perspective on the development and biomedical applications for dental implantation.

摘要

是导致种植体周围炎最常见的菌种。它形成不可逆的致密生物膜并引发炎症。采用选择性激光熔化(SLM)技术为牙种植体制备了一种新型3D打印多孔TC4-6Cu合金,预计其可抑制生物膜形成。我们试图研究3D打印多孔TC4-6Cu合金对……的抗菌能力及抗菌机制。这项工作使用扫描电子显微镜(SEM)和激光共聚焦显微镜(CLSM)检测该合金对固着……的抗菌能力。结果表明,3D打印多孔TC4-6Cu合金可导致细菌破碎和变形。平板抗菌计数实验表明,该合金对黏附细菌和浮游细菌24小时后的抗菌率分别为98.05%和73.92%。测试了Cu的最低抑菌浓度(MIC)和最低杀菌浓度(MBC)以评估该合金对浮游……的抗菌性能。通过ROS荧光强度和蛋白质泄漏浓度评估了该合金抗菌机制与氧化应激之间的关系。结果显示,该合金能显著清除黏附细菌并抑制生物膜形成。此外,3D打印多孔TC4-6Cu合金通过诱导活性氧(ROS)的产生表现出显著的杀菌能力,这可能导致细菌细胞膜蛋白质泄漏。这项研究可能为牙种植体的开发和生物医学应用开辟新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf67/10435858/87d4b45a986f/fbioe-11-1226745-g001.jpg

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