The Osteogenetic Potential of Chitosan Coated Implant: An In Vitro Study.

IF 1.6 Q4 CELL & TISSUE ENGINEERING Journal of Stem Cells & Regenerative Medicine Pub Date : 2020-12-11 eCollection Date: 2020-01-01 DOI:10.46582/jsrm.1602008
Banna M Alnufaiy, Rhodanne Nicole A Lambarte, Khalid S Al-Hamdan
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引用次数: 13

Abstract

Objective: Chitosan is a promising polymer that has been used for coating dental implants. However, research concerning coatings with implant surfaces other than commercially pure titanium is limited. Therefore, this study aims to clarify the chitosan material's effect with two degrees of deacetylation (DDA) as coatings for laser surface microtopographic implants. Methods: Sixty-three Laser-Lok (LL) implant discs were divided into three groups (21 in each group), and two groups were coated with either 80 or 95 DDA chitosan. The groups were categorized as LL 95, LL 80, or LL control. Then, hMSC-TERT 20 cells were used to evaluate the cell morphology, viability, and osteogenic capacity of the chitosan material 7 and 14 days after culture. Two-way ANOVA followed by one-way analysis of variance (ANOVA) and Tukey's post hoc test were used. Results: All samples were biocompatible and allowed cell attachment. However, cell spreading and attachment were noticeably increased in the LL 95 group. There was a significant increase in the expression of osteogenic markers in chitosan-coated samples compared to the control group. The 95 DDA-coated group exhibited higher ALP, Runx2, osteocalcin, and osteonectin expression compared to the 80 DDA and control groups on days 7 and 14. Conclusion: A high DDA of chitosan promotes biomineralization and osteoblast formation. Therefore, this combination of laser surface and chitosan can enhance future dental implant healing processes and osseointegration.

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壳聚糖包覆种植体成骨潜能的体外研究。
目的:壳聚糖是一种很有前途的种植体涂层聚合物。然而,除了商业纯钛外,关于植入物表面涂层的研究是有限的。因此,本研究旨在研究二度去乙酰化(DDA)壳聚糖材料作为激光表面微形貌植入物涂层的效果。方法:63个Laser-Lok (LL)种植盘分为3组(每组21个),两组分别包被80或95 DDA壳聚糖。这些组被分为l95组、l80组和LL对照组。然后,利用hMSC-TERT 20细胞,在培养7天和14天后,对壳聚糖材料的细胞形态、活力和成骨能力进行评价。采用双因素方差分析、单因素方差分析(ANOVA)和Tukey事后检验。结果:所有样品均具有生物相容性,允许细胞附着。而l95组细胞的扩散和附着明显增加。与对照组相比,壳聚糖包覆样品中成骨标志物的表达显著增加。在第7天和第14天,与80 DDA和对照组相比,95 DDA包被组ALP、Runx2、骨钙素和骨连接素的表达更高。结论:高DDA的壳聚糖促进生物矿化和成骨细胞的形成。因此,这种激光表面和壳聚糖的结合可以促进未来种植体的愈合过程和骨整合。
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来源期刊
CiteScore
3.40
自引率
0.00%
发文量
5
审稿时长
14 weeks
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