纳米改性钛表面对细菌定植以及成骨细胞和成纤维细胞活力的影响。

IF 3.9 3区 医学 Q2 ENGINEERING, BIOMEDICAL Journal of biomedical materials research. Part A Pub Date : 2024-06-24 DOI:10.1002/jbm.a.37768
Monika Astasov-Frauenhoffer, Laurent Marot, Fabien Sanchez, Roland Steiner, Birgit Lohberger, Michael M. Bornstein, Raphael S. Wagner, Sebastian Kühl, Khaled Mukaddam
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引用次数: 0

摘要

本研究探讨了能促进成骨细胞和成纤维细胞的活力并防止细菌定植的纳米结构钛表面(Ti2尖锥)。研究采用氦离子辐照技术在钛上生成纳米锥形。人类成骨细胞(hFOB)和人类牙龈成纤维细胞(hGF)被用于分析。与表面经喷砂和酸蚀处理(Ti2 SLA)的钛圆盘相比,进行了存活率和细胞毒性试验,以评估乳酸脱氢酶(LDH)活性和细胞损伤情况。对大肠杆菌、变异链球菌、核酸化脓杆菌和牙龈卟啉单胞菌的抗菌活性进行了研究。在培养过程中,hGF 和 hFOB 在 Ti2 尖晶石表面的存活率都明显降低。相比之下,hFOB 在该表面上的细胞毒性有所降低。在 Ti2 尖峰表面,hGF 细胞的 VCL、Src-1 和 ITGα5 基因表达明显减少。然而,整合素亚基 ITGα1 和 ITGα3 在 Ti2 尖晶石表面则表现出上调。几乎所有成骨标记物的表达在 Ti2 尖峰表面都有明显增加。传统培养的结果表明,与对照组相比,Ti2 尖晶石表面上的变异杆菌、F. nucleaum 的存活细胞数明显减少,牙龈球菌的数量也增加了。然而,大肠杆菌的数量却没有减少。种植体的长期成功取决于种植体周围软硬组织的建立和维护。Ti2 尖晶石是增强骨结合和优化生物相容性的一种新颖而有前途的方法。
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Effects of nanomodified titanium surfaces considering bacterial colonization and viability of osteoblasts and fibroblasts

This study investigates nanostructured titanium surfaces (Ti2 spikes) that promote the viability of osteoblasts and fibroblasts and prevent bacterial colonisation. Helium ion irradiation was adopted to produce nanometric-sized cones on titanium. Human osteoblasts (hFOB) and human gingiva fibroblasts (hGF) were used for analysis. A viability and a cytotoxicity assay were conducted to evaluate the lactate dehydrogenase (LDH) activity and assess cell damage in Ti2 spikes compared to titanium discs with a sandblasted and acid-etched (Ti2 SLA) surface. The antibacterial activity was investigated against Escherichia coli, Streptococcus mutans, Fusobacterium nucleatum, and Porphyromonas gingivalis. In the course of the cultivation, both hGF and hFOB demonstrated significantly reduced viability on the Ti2 spikes surface. hGF cells exhibited a slight but significant increase in LDH release. In contrast, hFOB showed reduced cytotoxicity on this surface. On the Ti2 spikes surface, hGF cells exhibited a significant reduction in gene expression of VCL, Src-1, and ITGα5. However, the integrin subunits ITGα1 and ITGα3 showed upregulation on the Ti2 spikes surface. The Ti2 spikes surface significantly increased the expression of almost all osteogenic markers. The results of conventional culturing demonstrated a statistically significant decrease in the number of viable cells for S. mutans, F. nucleaum, and greater quantities of P. gingivalis on Ti2 spikes surface compared to control. However, no such reduction was detected for E. coli. The long-term success of implants relies on establishing and maintaining hard and soft peri-implant tissues. Ti2 spikes represent a novel and promising approach to enhance osseointegration and optimize biocompatibility.

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来源期刊
Journal of biomedical materials research. Part A
Journal of biomedical materials research. Part A 工程技术-材料科学:生物材料
CiteScore
10.40
自引率
2.00%
发文量
135
审稿时长
3.6 months
期刊介绍: The Journal of Biomedical Materials Research Part A is an international, interdisciplinary, English-language publication of original contributions concerning studies of the preparation, performance, and evaluation of biomaterials; the chemical, physical, toxicological, and mechanical behavior of materials in physiological environments; and the response of blood and tissues to biomaterials. The Journal publishes peer-reviewed articles on all relevant biomaterial topics including the science and technology of alloys,polymers, ceramics, and reprocessed animal and human tissues in surgery,dentistry, artificial organs, and other medical devices. The Journal also publishes articles in interdisciplinary areas such as tissue engineering and controlled release technology where biomaterials play a significant role in the performance of the medical device. The Journal of Biomedical Materials Research is the official journal of the Society for Biomaterials (USA), the Japanese Society for Biomaterials, the Australasian Society for Biomaterials, and the Korean Society for Biomaterials. Articles are welcomed from all scientists. Membership in the Society for Biomaterials is not a prerequisite for submission.
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