Chellini Flaminia, Giannelli Marco, Tani Alessia, Ballerini Lara, Vallone Larissa, Nosi Daniele, Zecchi-Orlandini Sandra, Sassoli Chiara
Department of Experimental and Clinical Medicine-Section of Anatomy and Histology, University of Florence, Largo Brambilla 3, 50134, Florence, Italy.
Odontostomatologic Laser Therapy Center, Via dell' Olivuzzo 162, 50143, Florence, Italy.
Lasers Med Sci. 2017 Aug;32(6):1309-1320. doi: 10.1007/s10103-017-2243-5. Epub 2017 May 27.
Preservation of implant biocompatibility following peri-implantitis treatments is a crucial issue in odontostomatological practice, being closely linked to implant re-osseointegration. Our aim was to assess the responses of osteoblast-like Saos2 cells and adult human bone marrow-mesenchymal stromal cells (MSCs) to oxidized titanium surfaces (TiUnite, TiU) pre-treated with a 808 ± 10 nm GaAlAs diode laser operating in non-contact mode, in continuous (2 W, 400 J/cm; CW) or pulsed (20 kHz, 7 μs, 0.44 W, 88 J/cm; PW) wave, previously demonstrated to have a strong bactericidal effect and proposed as optional treatment for peri-implantitis. The biocompatibility of TiU surfaces pre-treated with chlorhexidine digluconate (CHX) was also evaluated. In particular, in order to mimic the in vivo approach, TiU surfaces were pre-treated with CHX (0.2%, 5 min); CHX and rinse; and CHX, rinse and air drying. In some experiments, the cells were cultured on untreated TiU before being exposed to CHX. Cell viability (MTS assay), proliferation (EdU incorporation assay; Ki67 confocal immunofluorescence analysis), adhesion (morphological analysis of actin cytoskeleton organization), and osteogenic differentiation (osteopontin confocal immunofluorescence analysis; mineralized bone-like nodule formation) analyses were performed. CHX resulted cytotoxic in all experimental conditions. Diode laser irradiation preserved TiU surface biocompatibility. Notably, laser treatment appeared even to improve the known osteoconductive properties of TiU surfaces. Within the limitations of an in vitro experimentation, this study contributes to provide additional experimental basis to support the potential use of 808 ± 10 nm GaAlAs diode laser at the indicated irradiation setting, in the treatment of peri-implantitis and to discourage the use of CHX.
种植体周围炎治疗后保持种植体生物相容性是口腔医学实践中的一个关键问题,与种植体再骨整合密切相关。我们的目的是评估成骨样Saos2细胞和成人骨髓间充质基质细胞(MSCs)对经808±10nm GaAlAs二极管激光以非接触模式预处理的氧化钛表面(TiUnite,TiU)的反应,激光以连续(2W,400J/cm;连续波)或脉冲(20kHz,7μs,0.44W,88J/cm;脉冲波)模式运行,此前已证明该激光具有强大的杀菌作用,并被提议作为种植体周围炎的可选治疗方法。还评估了用葡萄糖酸氯己定(CHX)预处理的TiU表面的生物相容性。特别是,为了模拟体内方法,TiU表面用CHX(0.2%,5分钟)预处理;CHX冲洗;以及CHX、冲洗和空气干燥。在一些实验中,细胞在未处理的TiU上培养后再暴露于CHX。进行了细胞活力(MTS测定)、增殖(EdU掺入测定;Ki67共聚焦免疫荧光分析)、粘附(肌动蛋白细胞骨架组织的形态分析)和成骨分化(骨桥蛋白共聚焦免疫荧光分析;矿化骨样结节形成)分析。CHX在所有实验条件下均具有细胞毒性。二极管激光照射保持了TiU表面的生物相容性。值得注意的是,激光处理似乎甚至改善了TiU表面已知的骨传导特性。在体外实验的局限性内,本研究有助于提供额外的实验依据,以支持在所示照射设置下使用808±10nm GaAlAs二极管激光治疗种植体周围炎,并劝阻使用CHX。