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高级共培养模型:跨龈种植体界面软组织细胞与细菌的相互作用。

Advanced co-culture model: Soft tissue cell and bacteria interactions at the transgingival dental implant interface.

机构信息

University Hospital Tübingen, Section Medical Materials Science & Technology, Osianderstr. 2-8, Tübingen D-72076, Germany.

University Hospital Tübingen, Section Medical Materials Science & Technology, Osianderstr. 2-8, Tübingen D-72076, Germany.

出版信息

Dent Mater. 2023 May;39(5):504-512. doi: 10.1016/j.dental.2023.03.018. Epub 2023 Apr 4.

Abstract

OBJECTIVES

To better simulate and understand the clinical situation in which tissue cells and bacteria compete for settlement on an implant surface, the aim was to develop an improved transgingival co-culture model.

METHODS

For this model human gingival fibroblasts (HGF) were seeded on different titanium surfaces in the presence of the early colonizer Streptococcus gordonii or mixed oral bacteria. Subsequently adhesion and viability of HGF cells was analyzed.

RESULTS

Simultaneous co-culture showed no decrease in the viability of HGF cells at early stages compared to the control group. However, a moderate impact on HGF viability (76 ± 23 %) was observed after 4 h of co-culture, which then significantly decreased after 5 h (21 ± 2 %) of co-cultivation, resulting in cell death and detachment from the surface. Further experiments including saliva pre-treatment of smooth and structured titanium surfaces with Streptococcus gordonii or mixed oral bacteria suggested a cell-protective property of saliva.

SIGNIFICANCE

Our study revealed that during simultaneous co-culture of cells and bacteria, which resembles the clinical situation the closest, the viability of gingival cells is considerably high in the early phase, suggesting that increasing initial cell adhesion rather than antibacterial functionality is a major goal and a relevant aspect in the development and testing of transgingival implant and abutment surface modifications.

摘要

目的

为了更好地模拟和理解组织细胞和细菌在植入物表面竞争定居的临床情况,旨在开发一种改良的跨龈共培养模型。

方法

在该模型中,人牙龈成纤维细胞(HGF)在存在早期定植菌戈登链球菌或混合口腔细菌的情况下接种在不同的钛表面上。随后分析 HGF 细胞的粘附和活力。

结果

与对照组相比,同时共培养在早期阶段并未降低 HGF 细胞的活力。然而,在共培养 4 小时后,HGF 活力受到适度影响(76±23%),然后在共培养 5 小时后显著降低(21±2%),导致细胞死亡并从表面脱落。进一步的实验包括用戈登链球菌或混合口腔细菌对光滑和结构钛表面进行唾液预处理,表明唾液具有细胞保护特性。

意义

我们的研究表明,在细胞和细菌同时共培养的情况下,最接近临床情况,牙龈细胞的活力在早期阶段相当高,这表明增加初始细胞粘附而不是抗菌功能是跨龈植入物和基台表面改性的开发和测试的主要目标和相关方面。

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