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[口腔中次氯酸稳定性及刺激性的体外实验]

[An in vitro experiment on the stability and irritant of hypochlorous acid in oral cavity].

作者信息

Liu Zhao-Chen, Sun Pei, Pan Ke-Qing, Wang Pei-Yan, Zhang Hui, Yuan Chang-Qing, Deng Jing

机构信息

School of Stomatology, Qingdao University. Qingdao 266003,China. E-mail:

出版信息

Shanghai Kou Qiang Yi Xue. 2024 Apr;33(2):141-147.

Abstract

PURPOSE

To study the stability of physicochemical properties and sterilizing effect about two commercially available hypochlorous acid (HClO) products under simulated clinical conditions, and to evaluate the compatibility of HClO on soft and hard tissues and cells in oral cavity.

METHODS

Samples of HClO solution with different production processes were prepared, to detect the changes of physicochemical indexes of each sample over time under simulated clinical conditions (shielded from light at 20-25 ℃, open the cover for 5 minutes every day), including free available chlorine, oxidation-reduction potential and pH. Through suspension quantitative germicidal test, the antibiosis-concentration curve of HClO solution was made, so as to calibrate the change of antibacterial ability of disinfectant with the decrease of available chlorine content during storage. Pulp, tongue and dentine were immersed in PBS, 100 ppm HClO, 200 ppm HClO and 3% NaClO. The influence on soft and hard tissues was evaluated by weighing method and microhardness test. The toxic effects of HClO, NaClO and their 10-fold diluent on human gingival fibroblasts were determined by CCK-8 cytotoxicity assay. GraphPad PRIS 8.0 software was used to analyze the data.

RESULTS

Under simulated conditions, the free available chlorine (FAC) of HClO solution decayed with time, and the attenuation degree was less than 20 ppm within 1 month. The bactericidal effect of each HClO sample was still higher than 5log after concentration decay. There was no obvious dissolution and destruction to soft and hard tissues for HClO(P>0.05). The cell viability of HClO to human gingival fibroblast cells (HGFC) was greater than 80%, which was much higher than 3% NaClO (P<0.001).

CONCLUSIONS

The bactericidal effect and stability of HClO solution can meet clinical needs, which has low cytotoxicity and good histocompatibility. It is expected to become a safe and efficient disinfection product in the field of living pulp preservation and dental pulp regeneration.

摘要

目的

研究两种市售次氯酸(HClO)产品在模拟临床条件下的理化性质稳定性和杀菌效果,并评估HClO在口腔软硬组织及细胞中的相容性。

方法

制备不同生产工艺的HClO溶液样品,检测各样品在模拟临床条件下(20 - 25℃避光,每天开盖5分钟)随时间的理化指标变化,包括游离有效氯、氧化还原电位和pH值。通过悬液定量杀菌试验绘制HClO溶液的抗菌浓度曲线,以校准消毒剂在储存过程中随有效氯含量降低的抗菌能力变化。将牙髓、舌和牙本质分别浸入PBS、100 ppm HClO、200 ppm HClO和3% NaClO中。采用称重法和显微硬度测试评估对软硬组织的影响。通过CCK - 8细胞毒性试验测定HClO、NaClO及其10倍稀释液对人牙龈成纤维细胞的毒性作用。使用GraphPad PRIS 8.0软件进行数据分析。

结果

在模拟条件下,HClO溶液的游离有效氯(FAC)随时间衰减,1个月内衰减程度小于20 ppm。各HClO样品浓度衰减后杀菌效果仍高于5log。HClO对软硬组织无明显溶解和破坏作用(P>0.05)。HClO对人牙龈成纤维细胞(HGFC)的细胞活力大于80%,远高于3% NaClO(P<0.001)。

结论

HClO溶液的杀菌效果和稳定性可满足临床需求,具有低细胞毒性和良好的组织相容性。有望成为活髓保存和牙髓再生领域安全高效的消毒产品。

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