Improving osteogenic properties of zirconia ceramic via glow discharge plasma-enhanced deposition of amine organic compound

IF 3.1 3区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Journal of Dental Sciences Pub Date : 2025-01-01 Epub Date: 2024-08-29 DOI:10.1016/j.jds.2024.08.011
Lwin Moe Aung , Ting-Yi Renn , Jerry Chin-Yi Lin , Eisner Salamanca , Yi-Fan Wu , Yu-Hwa Pan , Nai-Chia Teng , Haw-Ming Huang , Ying-Sui Sun , Wei-Jen Chang
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Abstract

Background/purpose

Osseointegration potential is greatly depended on the interaction between bone cells and dental implant surface. Since zirconia ceramic has a bioinert surface, functionalization of the surface with an organic compound allylamine was conducted to overcome its drawback of minimal interaction with the surrounding bone.

Materials and methods

The zirconia surface was initially treated with argon glow discharge plasma (GDP), then combined with amine plasma at three different conditions of 50-W, 75-W and 85-W, to prepare the final samples. The surface characteristics and cell biocompatibility were then evaluated.

Results

Surface morphology analysis revealed a bulbous pattern on allylamine-treated sample groups. The aromatic C–H, C–O, N–H, C ˆ C, and C–H stretching and functional groups have been identified. Surface roughness increased, and hydrophilicity improved after surface modification. Cell viability analysis showed the highest result for the allylamine 50-W (A50) group. Alkaline phosphatase (ALP) assay indicated the A50 group had the highest activity, subsequently promoting late-stage mineralization at day 21. The reverse transcription-quantitative polymerase chain reaction (RT-qPCR) data demonstrated a significant upregulation of osteogenic gene expressions from day 1 to day 21.

Conclusion

The allylamine-treated surface demonstrates immense enhancement in the surface hydrophilicity as well as in the viability, differentiation, and osteogenic properties of osteoblast-like cells. This makes it a promising candidate for future dental implant applications.

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发光放电等离子体增强胺类有机化合物沉积改善氧化锆陶瓷成骨性能。
背景/目的:骨整合电位在很大程度上取决于骨细胞与种植体表面的相互作用。由于氧化锆陶瓷具有生物惰性表面,用有机化合物烯丙胺对表面进行功能化,以克服其与周围骨骼相互作用最小的缺点。材料与方法:首先用氩气辉光放电等离子体(GDP)处理氧化锆表面,然后在50-W、75-W和85-W三种不同条件下与胺等离子体结合,制备最终样品。然后评价其表面特性和细胞生物相容性。结果:经烯丙胺处理的样品组表面形貌呈球茎状。鉴定了芳香族的C- h、C- o、N-H、C- C和C- h的伸展和官能团。表面改性后,表面粗糙度增大,亲水性改善。细胞活力分析显示,烯丙胺50-W (A50)组细胞活力最高。碱性磷酸酶(ALP)测定结果显示,A50组活性最高,促进了第21天的后期矿化。逆转录-定量聚合酶链反应(RT-qPCR)数据显示,从第1天到第21天,成骨基因表达显著上调。结论:烯丙胺处理的表面在表面亲水性以及成骨样细胞的活力、分化和成骨性能方面表现出极大的增强。这使其成为未来牙科种植应用的一个有希望的候选者。
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来源期刊
Journal of Dental Sciences
Journal of Dental Sciences 医学-牙科与口腔外科
CiteScore
5.10
自引率
14.30%
发文量
348
审稿时长
6 days
期刊介绍: he Journal of Dental Sciences (JDS), published quarterly, is the official and open access publication of the Association for Dental Sciences of the Republic of China (ADS-ROC). The precedent journal of the JDS is the Chinese Dental Journal (CDJ) which had already been covered by MEDLINE in 1988. As the CDJ continued to prove its importance in the region, the ADS-ROC decided to move to the international community by publishing an English journal. Hence, the birth of the JDS in 2006. The JDS is indexed in the SCI Expanded since 2008. It is also indexed in Scopus, and EMCare, ScienceDirect, SIIC Data Bases. The topics covered by the JDS include all fields of basic and clinical dentistry. Some manuscripts focusing on the study of certain endemic diseases such as dental caries and periodontal diseases in particular regions of any country as well as oral pre-cancers, oral cancers, and oral submucous fibrosis related to betel nut chewing habit are also considered for publication. Besides, the JDS also publishes articles about the efficacy of a new treatment modality on oral verrucous hyperplasia or early oral squamous cell carcinoma.
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