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氧化锆和钛种植体黏膜封闭的不同愈合模式

Differential Healing Patterns of Mucosal Seal on Zirconia and Titanium Implant.

作者信息

Lee Dong-Joon, Ryu Joon-Sang, Shimono Masaki, Lee Keun-Woo, Lee Jong-Min, Jung Han-Sung

机构信息

Division in Anatomy and Developmental Biology, Department of Oral Biology, Oral Science Research Center, BK21 PLUS Project, Yonsei University College of Dentistry, Seoul, South Korea.

Department of Prosthodontics, Oral Science Research Center, Yonsei University College of Dentistry, Seoul, South Korea.

出版信息

Front Physiol. 2019 Jul 3;10:796. doi: 10.3389/fphys.2019.00796. eCollection 2019.

Abstract

Zirconia implants have become an alternative to titanium implants due to several advantages. The zirconia implant is relatively esthetic and highly resistant to bacteria. While biomaterial studies for zirconia implants have considerably accumulated, studies have not yet progressed. In the present study, the functional and biological properties of zirconia implants were analyzed thorough and studies. The proliferation properties of periodontal cells on the discs of machined surface titanium, hydroxyapatite coated titanium and zirconia were analyzed, and zirconia was shown to be favorable. In addition, small implant fixtures that can be applied to the jawbone of mice were manufactured and transplanted to C57BL/6 mice. The adhesion molecules expression patterns in peri-implant mucosa suggest a stronger mucosal seal and more adequate prevention of peri-implant epithelium (PIE) elongation in the zirconia implant when compared with other conventional materials. Differential laminin-332 expression in peri-implant mucosa of zirconia implants seems to regulate the PIE elongation. In conclusion, zirconia was found to be promising and advantageous with regards to the mucosal seal. And biological width (BW) of peri-implant mucosa is more desirable in zirconia implants compared to conventional titanium implants.

摘要

由于具有多种优势,氧化锆种植体已成为钛种植体的一种替代选择。氧化锆种植体相对美观且具有高度抗菌性。虽然关于氧化锆种植体的生物材料研究已大量积累,但相关研究仍未取得进展。在本研究中,对氧化锆种植体的功能和生物学特性进行了全面分析和研究。分析了牙周细胞在机械加工表面钛、羟基磷灰石涂层钛和氧化锆盘片上的增殖特性,结果表明氧化锆具有优势。此外,制造了可应用于小鼠颌骨的小型种植体固定装置,并将其移植到C57BL/6小鼠体内。种植体周围黏膜中黏附分子的表达模式表明,与其他传统材料相比,氧化锆种植体的黏膜封闭更强,对种植体周围上皮(PIE)伸长的预防更充分。氧化锆种植体周围黏膜中层粘连蛋白-332的差异表达似乎调节了PIE的伸长。总之,发现氧化锆在黏膜封闭方面具有前景和优势。与传统钛种植体相比,氧化锆种植体周围黏膜的生物学宽度(BW)更理想。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8c7/6616312/ec992eb0b461/fphys-10-00796-g001.jpg

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