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Biomodulatory effects of laser irradiation on dental pulp cells in vitro

机译:激光照射对牙髓细胞体外牙髓辐射的培割性作用

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Low level laser/light therapy (LLLT) or photobiomodulation is a biophysical approach that can be used to reduce pain, inflammation and modulate tissue healing and repair. However, its application has yet to be fully realized for dental disease treatment. The aim of this study was to assess the modulation of dental pulp cell (DPC) responses using two LLLT lasers with wavelengths of 660nm and 810nm. Human DPCs were isolated and cultured in phenol-red-free α-MEM/10%-FCS at 37°C in 5% CO_2. Central wells of transparent-based black walled 96-microplates were seeded with DPCs (passages 2-4; 150uL; 25,000 cell/ml). At 24h post-seeding, cultures were irradiated using a Thor Photomedicine LLLT device (THOR Photomedicine, UK) at 660nm (3, 6 or 13s to give 2, 5 and 10J/cm~2) or 810nm (for 1, 2 or 5s to deliver 5, 10 and 20J/cm~2). Metabolic activity was assessed via a modified MTT assay 24h post-irradiation. Statistical differences were identified using analysis of variance and post-hoc Tukey tests (P=0.05) and compared with non-irradiated controls. Significantly higher MTT activity was obtained for both lasers (P<0.05) using the high and intermediate radiant exposure (5-20J/cm~2). The MTT response significantly decreased (P<0.05) at lower radiant exposures with no statistical significance from control (P>0.05). Consequently, enhanced irradiation parameters was apparent for both lasers. These parameters should be further optimised to identify the most effective for therapeutic application.
机译:低水平激光/光疗法(LLLT)或光生物调节是一种生物物理方法,可用于减少疼痛,炎症和调节组织愈合和修复。然而,其申请尚未实现牙科疾病治疗。本研究的目的是评估使用波长为660nm和810nm的两个Lllt激光的牙髓细胞(DPC)响应的调节。将人DPC分离并在37℃下在5%CO_2中在37℃下培养在苯酚 - 红α-MEM / 10%-FC中。透明的黑墙96微孔板的中央孔用DPC种植(通道2-4; 150UL; 25,000个细胞/ mL)。在24小时后,使用Thor Photomedicine LLLT装置(Thor Photomedicine,UK)在660nm(3,6或13s,得到2,5和10J / cm〜2)或810nm(1,2或5s的培养物提供5,10和20J / cm〜2)。通过修饰的MTT测定进行评估代谢活性24h后照射后。使用差异分析和HOC Tukey试验(P = 0.05)来确定统计差异,并与非照射对照进行比较。使用高和中间辐射暴露(5-20​​J / cm〜2),获得显着较高的MTT活性(P <0.05)。在较低的辐射暴露下,MTT反应显着降低(P <0.05),无统计学意义(P> 0.05)。因此,两个激光器显而易见的辐射参数。应进一步优化这些参数以确定对治疗应用最有效的。

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