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Antimicrobial activity and cytotoxicity of 3 photosensitizers activated with blue light

机译:3种蓝光激活的光敏剂的抗菌活性和细胞毒性

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Introduction Pulp repair is less likely to occur when dentin or pulpal tissue remains infected after caries excavation. Yet there are currently few options to kill residual bacteria without damaging resident cells. The current study has evaluated the effect of 3 blue light-activated chemicals on the viability of lactobacilli, odontoblast-like cells (MDPC-23), undifferentiated pulp cells (OD21), and human embryonic stem cells (hESC H1). Methods Bacteria were incubated for 15 minutes with curcumin, eosin Y, or rose bengal and then irradiated with blue light (240 seconds). Bacteria were labeled with LIVE/DEAD BacLight Bacterial Viability kit, and viability was assessed by fluorescence-activated cell sorting. Cytotoxicity assays were performed on MDPC-23 cells, OD21, and hESC H1 cells grown in 24-well plates and exposed to the same photosensitizer-light combination. After 24 hours, cellular response was measured by using the methyl-thiazol-diphenyl-tetrazolium assay. Results were statistically analyzed by using one-way analysis of variance and Tukey multiple comparison intervals (α = 0.05). Results Bacterial viability was significantly reduced after exposure to different combinations of light and photosensitizers; mitochondrial activity of cultured cells remained unaffected when exposed to the same conditions, suggesting a good therapeutic index in vitro. Conclusions Blue light-mediated disinfection is promising for the development of new treatment strategies designed to promote pulp repair after carious exposure.
机译:简介龋齿切除后,当牙本质或牙髓组织仍然受到感染时,牙髓修复的可能性较小。然而,目前几乎没有其他方法可以杀死残留细菌而不破坏驻留细胞。当前的研究评估了3种蓝色光活化化学物质对乳酸杆菌,成牙本质细胞样细胞(MDPC-23),未分化果肉细胞(OD21)和人类胚胎干细胞(hESC H1)的活力的影响。方法将细菌与姜黄素,曙红Y或玫瑰红一起孵育15分钟,然后用蓝光照射(240秒)。用LIVE / DEAD BacLight细菌生存力试剂盒标记细菌,并通过荧光激活细胞分选评估生存力。对在24孔板中生长并暴露于相同光敏剂-光组合的MDPC-23细胞,OD21和hESC H1细胞进行细胞毒性测定。 24小时后,通过使用甲基噻唑-二苯基-四唑鎓测定法测量细胞应答。使用单向方差分析和Tukey多个比较区间(α= 0.05)对结果进行统计分析。结果暴露于不同的光敏剂和光敏剂组合后,细菌生存力明显降低;当暴露于相同条件下时,培养细胞的线粒体活性不受影响,表明其具有良好的体外治疗指数。结论蓝光介导的消毒技术有望开发出新的治疗策略,以促进龋齿暴露后牙髓的修复。

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