In vitro evaluation of coenzyme Q10 on primary fibroblast culture

D. Herawati
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引用次数: 1

Abstract

Chronic inflammation in periodontitis results in continuous production of Reactive Oxygen Species (ROS), so the levels are excessive, causing destruction of the gingiva, periodontal ligament, and alveolar bone through a variety of mechanisms including DNA damage and the formation of proinflammatory cytokine. One way to prevent periodontal tissue damage caused by excessive ROS formation is by administering antioxidants. Coenzyme Q10 is a powerful antioxidant that is beneficial for inhibiting free radicals to prevent the progression of periodontal tissue destruction and accelerate healing processes. The purpose of this study was to evaluate the fibroblast proliferation of the combination of Coenzyme Q10 and vegetable glycerin compared to PerioQ. Materials used were made of original Coenzyme Q10 dissolved in glycerin that was prepared in a ratio of 2:8 and 1:9, and Perio Q as the control. Each group consisted of six samples (n = 6). Primary fibroblasts were derived from healthy gingival tissue. Observations on day-1, -3, and -5 using MTT assay at a wavelength of 550nm. Statistical analysis used a Two-Way ANOVA test followed by a Post Hoc test.  The experiment showed the absorbance values were high in all the groups, the highest value was on day 3, namely Coenzyme Q10 at a concentration of 2:8, followed by Coenzyme Q10 at a concentration of 1:9, and PerioQ. The statistical tests showed significant differences in the 3 groups (p < 0.05). It is concluded that Coenzyme Q10 in 1:9 and 2:8 concentrations were both as viable as Perio Q towards primary gingival fibroblast culture. 
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体外评价辅酶Q10对原代成纤维细胞培养的影响
牙周炎的慢性炎症导致活性氧(Reactive Oxygen Species, ROS)持续产生,水平过高,通过DNA损伤和促炎细胞因子的形成等多种机制对牙龈、牙周韧带和牙槽骨造成破坏。防止过度活性氧形成造成牙周组织损伤的一种方法是使用抗氧化剂。辅酶Q10是一种强大的抗氧化剂,有利于抑制自由基,防止牙周组织破坏的进展,加速愈合过程。本研究的目的是评价辅酶Q10和植物甘油组合与PerioQ相比对成纤维细胞增殖的影响。所用材料为原辅酶Q10溶于甘油,按2:8和1:9的比例配制,以Perio Q为对照。每组6个样本(n = 6)。原代成纤维细胞来源于健康牙龈组织。在第1、3、5天使用MTT法,波长为550nm。统计分析采用双向方差分析和事后检验。实验结果表明,各组吸光度值均较高,第3天吸光度值最高,为辅酶Q10浓度为2:8,其次为辅酶Q10浓度为1:9,最后为PerioQ。经统计学检验,3组间差异有统计学意义(p < 0.05)。由此可见,辅酶Q10在1:9和2:8浓度下对原代牙龈成纤维细胞的培养均具有与Q期相同的活性。
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