Jeong Yeon-Woo, Jung Seunggon, Han Jeong Joon, Park Hong-Ju, Kim Rok Young, Kim Byung-Hoon, Kook Min-Suk
Department of Oral and Maxillofacial Surgery, School of Dentistry, Chonnam National University, Gwangju 61186, Korea.
KJ Meditech, Gwangju 61009, Korea.
Materials (Basel). 2019 Aug 13;12(16):2581. doi: 10.3390/ma12162581.
To date, no products have been presented for the surface treatment of metal plates used for repairing maxillofacial defects caused by trauma. Plasma surface treatment is a useful technique for chemically modifying the surfaces of biomaterials. Amine plasma-polymerization is an efficient way to prepare bioactive thin film polymers terminated with nitrogen-containing functional groups. The purpose of this study was to investigate the improvement in biocompatibility of titanium (Ti) plates treated with amine plasma-polymerization, and analyze their surfaces characteristics. To compare biocompatibility levels, in vitro test and animal study were performed using an amine plasma-polymerized Ti plate and an untreated Ti plate. After amine plasma-polymerization, the hydrophilicity of the Ti surface was remarkably improved. Biocompatibility was also improved for the Ti plates treated with amine plasma. The clinical application of this technique will not only shorten the time required for osseointegration, but will also improve the regeneration of bone.
迄今为止,尚未有用于修复创伤所致颌面缺损的金属板表面处理产品问世。等离子体表面处理是一种对生物材料表面进行化学改性的有用技术。胺等离子体聚合是制备以含氮官能团封端的生物活性薄膜聚合物的有效方法。本研究的目的是探讨经胺等离子体聚合处理的钛(Ti)板生物相容性的改善情况,并分析其表面特性。为比较生物相容性水平,使用经胺等离子体聚合处理的Ti板和未处理的Ti板进行了体外试验和动物研究。胺等离子体聚合后,Ti表面的亲水性显著提高。经胺等离子体处理的Ti板的生物相容性也得到了改善。该技术的临床应用不仅将缩短骨整合所需的时间,而且还将促进骨再生。