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Red LED Photobiomodulates the Metabolic Activity of Odontoblast-Like Cells

机译:红色LED光调节成牙本质细胞样细胞的代谢活性

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Phototherapy has been indicated as an adjunctive treatment for tissue repair, including the pulp tissue. However, there are no defined irradiation parameters, which is a great challenge to the clinical use of phototherapy. The aim of this study was to evaluate the effect of phototherapy with red LED on odontoblast-like MDPC-23 cells, using different parameter settings. Cells were seeded (10 4 cells/cm?2), incubated for 12 h in complete DMEM and then the culture medium was replaced by DMEM supplemented with 0.5% FBS. After 12 h incubation, irradiations were performed (630?±10 nm) using a LEDTable device with a 20 or 40 mW/cm?2 power density and 2 J/cm?2 energy dose. The cells were irradiated 1 or 3 times, at 1 min intervals. Non-irradiated cells served as control. The cells were evaluated for viability (MTT assay), total protein dosage (Lowry method) and number of viable cells (Trypan blue). The data (n=12 per group) were submitted to Kruskal-Wallis and Mann-Whitney tests (p=0.05). A single irradiation with 20 or 40 mW/cm?2 enhanced cell viability, which was negatively affected after 3 consecutive irradiations. Cells irradiated only once with 20 mW/cm?2 produced more proteins compared with those irradiated with 40 mW/cm?2. Reduction in the number of viable cells occurred only after 3 consecutive irradiations with 40 mW/cm?2. In conclusion, red LED was capable of biomodulating the metabolic activities of cultured MDPC-23 odontoblast-like cells. The best cell biostimulation was obtained when a single irradiation with 2 J/cm 2 energy dose and 20 mW/cm 2 power density was delivered to the pulp cells.
机译:光疗已被指示为组织修复的辅助治疗方法,包括牙髓组织。但是,没有定义的辐照参数,这对光疗的临床应用是一个巨大的挑战。这项研究的目的是使用不同的参数设置来评估红色LED光疗对成牙本质细胞样MDPC-23细胞的影响。接种细胞(10 4细胞/ cm 2),在完全DMEM中温育12小时,然后用补充有0.5%FBS的DMEM代替培养基。温育12小时后,使用LEDTable装置以20或40mW / cm 2的功率密度和2J / cm 2的能量剂量进行照射(630±10nm)。以1分钟的间隔照射细胞1或3次。未照射的细胞用作对照。评价细胞的生存力(MTT测定),总蛋白剂量(Lowry法)和活细胞数(台盼蓝)。数据(每组n = 12)已提交给Kruskal-Wallis和Mann-Whitney检验(p = 0.05)。用20或40mW / cm 2的单次照射增强了细胞活力,在连续3次照射后受到负面影响。与用40mW / cm 2辐照的细胞相比,仅用20mW / cm 2辐照一次的细胞产生更多的蛋白质。仅在连续3次以40mW / cm 2照射后,活细胞数量减少。总之,红色LED能够生物调节培养的MDPC-23成牙本质细胞样细胞的代谢活性。当将具有2 J / cm 2能量剂量和20 mW / cm 2功率密度的单次照射递送至牙髓细胞时,可获得最佳的细胞生物刺激。

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