Department of Prosthodontics Including Crown Bridge and Implantology, DY Patil Dental School, Lohegaon, Pune, Maharastra, India.
Department of Preventive Dentistry, College of Dentistry in Ar Rass, Qassim University, Al-Qassim Region, 52571, Kingdom of Saudi Arabia.
Ann Afr Med. 2022 Jul-Sep;21(3):217-222. doi: 10.4103/aam.aam_116_20.
Abutment surfaces are being designed to promote gingival soft tissue attachment and integration. This confirms implant survival for long term by forming a seal around the prosthetics.
This study was done to compare the biocompatibility of three implant abutments: titanium uncoated, Ti-nitride coated, and modified polyetheretherketone (PEEK) with human gingival keratinocytes.
The titanium-uncoated, titanium-nitride-coated, and modified PEEK discs (13 mm × 3 mm) were fabricated and compared with uncoated polyester cell culture discs, which were used as controls. These three implant abutments were evaluated for biocompatibility with respect to human gingival keratinocytes for viability, morphology, proliferation, and migration by scanning electron microscopy imaging and scratch wound healing assays. Measurements of roughness show changes between the investigated surfaces.
Keratinocytes cultured on all examined surfaces indicated adhesion and attachment. An assay of cell viability showed no substantial variances among the groups. The modified PEEK surface showed greater cell proliferation and migration among the three abutment materials.
All three abutment material surface types showed similar epithelial biological responses. However, modified PEEK material showed the highest biocompatibility.
基台表面的设计旨在促进牙龈软组织附着和整合。这通过在修复体周围形成密封来确认植入物的长期存活。
本研究旨在比较三种种植体基台的生物相容性:未涂层钛、氮化钛涂层和改性聚醚醚酮(PEEK)与人类牙龈角质细胞。
制作了未涂层钛、氮化钛涂层和改性 PEEK 圆盘(13mm×3mm),并与未涂层聚酯细胞培养盘进行了比较,后者用作对照。通过扫描电子显微镜成像和划痕愈合试验,评估了这三种种植体基台对人牙龈角质细胞的生物相容性,包括活力、形态、增殖和迁移。粗糙度测量显示了研究表面之间的变化。
在所有被检查的表面上培养的角质细胞都表现出了粘附和附着。细胞活力测定表明,各组之间没有明显的差异。在三种基台材料中,改性 PEEK 表面显示出更高的细胞增殖和迁移。
所有三种基台材料表面类型均表现出相似的上皮生物学反应。然而,改性 PEEK 材料表现出最高的生物相容性。