Jin Siqi, Yu Yameng, Zhang Ting, Xie Daping, Zheng Yufeng, Wang Chunming, Liu Yunsong, Xia Dandan
Department of Dental Materials, Peking University School and Hospital of Stomatology & National Center for Stomatology & National Clinical Research Center for Oral Diseases & National Engineering Research Center of Oral Biomaterials and Digital Medical Devices & Beijing Key Laboratory of Digital Stomatology & NHC Key Laboratory of Digital Stomatology & NMPA Key Laboratory for Dental Materials, Beijing, 100081, China.
School of Materials Science and Engineering, Peking University, Beijing, 100871, China.
Bioact Mater. 2024 Sep 10;42:404-432. doi: 10.1016/j.bioactmat.2024.08.042. eCollection 2024 Dec.
Soft tissue seal around the transmucosal region of dental implants is crucial for shielding oral bacterial invasion and guaranteeing the long-term functioning of implants. Compared with the robust periodontal tissue barrier around a natural tooth, the peri-implant mucosa presents a lower bonding efficiency to the transmucosal region of dental implants, due to physiological structural differences. As such, the weaker soft tissue seal around the transmucosal region can be easily broken by oral pathogens, which may stimulate serious inflammatory responses and lead to the development of peri-implant mucositis. Without timely treatment, the curable peri-implant mucositis would evolve into irreversible peri-implantitis, finally causing the failure of implantation. Herein, this review has summarized current surface modification strategies for the transmucosal region of dental implants with improved soft tissue bonding capacities (e.g., improving surface wettability, fabricating micro/nano topographies, altering the surface chemical composition and constructing bioactive coatings). Furthermore, the surfaces with advanced soft tissue bonding abilities can be incorporated with antibacterial properties to prevent infections, and/or with immunomodulatory designs to facilitate the establishment of soft tissue seal. Finally, we proposed future research orientations for developing multifunctional surfaces, thus establishing a firm soft tissue seal at the transmucosal region and achieving the long-term predictability of dental implants.
牙种植体经黏膜区域周围的软组织封闭对于抵御口腔细菌入侵和确保种植体的长期功能至关重要。与天然牙周围强大的牙周组织屏障相比,由于生理结构差异,种植体周围黏膜与牙种植体经黏膜区域的结合效率较低。因此,经黏膜区域周围较弱的软组织封闭容易被口腔病原体破坏,这可能会引发严重的炎症反应并导致种植体周围黏膜炎的发生。若不及时治疗,可治愈的种植体周围黏膜炎会发展为不可逆的种植体周围炎,最终导致种植失败。在此,本综述总结了目前针对牙种植体经黏膜区域的表面改性策略,这些策略具有提高软组织结合能力的作用(例如,改善表面润湿性、制造微/纳米形貌、改变表面化学成分以及构建生物活性涂层)。此外,具有先进软组织结合能力的表面可兼具抗菌性能以预防感染,和/或采用免疫调节设计以促进软组织封闭的建立。最后,我们提出了未来开发多功能表面的研究方向,从而在经黏膜区域建立牢固的软组织封闭并实现牙种植体的长期可预测性。