Functionalization of titanium surface with chitosan via silanation: 3D CLSM imaging of cell biocompatibility behaviour.

G N Attik, M D'Almeida, B Toury, B Grosgogeat
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Abstract

Introduction: Biocompatibility ranks as one of the most important properties of dental materials. One of the criteria for biocompatibility is the absence of material toxicity to cells, according to the ISO 7405 and 10993 recommendations. Among numerous available methods for toxicity assessment; 3-dimensional Confocal Laser Scanning Microscopy (3D CLSM) imaging was chosen because it provides an accurate and sensitive index of living cell behavior in contact with chitosan coated tested implants.

Objectives: The purpose of this study was to investigate the in vitro biocompatibility of functionalized titanium with chitosan via a silanation using sensitive and innovative 3D CLSM imaging as an investigation method for cytotoxicity assessment.

Methods: The biocompatibility of four samples (controls cells, TA6V, TA6V-TESBA and TA6V-TESBAChitosan) was compared in vitro after 24h of exposure. Confocal imaging was performed on cultured human gingival fibroblast (HGF1) like cells using Live/Dead® staining. Image series were obtained with a FV10i confocal biological inverted system and analyzed with FV10-ASW 3.1 Software (Olympus France).

Results: Image analysis showed no cytotoxicity in the presence of the three tested substrates after 24 h of contact. A slight decrease of cell viability was found in contact with TA6V-TESBA with and without chitosan compared to negative control cells.

Conclusion: Our findings highlighted the use of 3D CLSM confocal imaging as a sensitive method to evaluate qualitatively and quantitatively the biocompatibility behavior of functionalized titanium with chitosan via a silanation. The biocompatibility of the new functionalized coating to HGF1 cells is as good as the reference in biomedical device implantation TA6V.

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壳聚糖硅化钛表面功能化:细胞生物相容性行为的三维CLSM成像。
生物相容性是牙科材料最重要的性能之一。根据ISO 7405和10993的建议,生物相容性的标准之一是对细胞没有物质毒性。在众多可用的毒性评估方法中;选择三维共聚焦激光扫描显微镜(3D CLSM)成像,因为它提供了活细胞与壳聚糖涂层的接触行为的准确和敏感的指标。目的:利用灵敏的三维CLSM成像技术,通过硅烷化技术研究功能化钛与壳聚糖的体外生物相容性,并以此作为细胞毒性评价的研究方法。方法:比较对照细胞、TA6V、TA6V- tesba和TA6V- tesbachitosan在体外24h后的生物相容性。使用Live/Dead®染色对培养的人牙龈成纤维细胞(HGF1)样细胞进行共聚焦成像。使用FV10i共聚焦生物倒置系统获得图像序列,并使用FV10-ASW 3.1 Software (Olympus France)进行分析。结果:图像分析显示,接触24小时后,三种被测底物均无细胞毒性。与阴性对照细胞相比,加壳聚糖和不加壳聚糖的TA6V-TESBA细胞活力略有下降。结论:三维CLSM共聚焦成像技术可作为一种灵敏的方法,通过硅烷化评价功能化钛与壳聚糖的生物相容性行为。新型功能化涂层对HGF1细胞的生物相容性与生物医学器械植入TA6V的参考材料一样好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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