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Sonodynamic excitation of nanomicelle curcumin for eradication of Streptococcus mutans under sonodynamic antimicrobial chemotherapy: Enhanced anti-caries activity of nanomicelle curcumin

机译:纳米Melle姜黄素的初始动力激发,用于消除Sonocomic抗微生物化疗下的链球菌(Streptococcus Mutans):纳米纤维姜黄素的增强抗龋活动

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Background: Inactivation of microorganisms related to dental caries has been considered the therapy of choice in the treatment of caries. The proposed study aims to assess the effect of sonodynamic excitation of nanomicelle curcumin (NM@Cur) compared to Cur for eradication of Streptococcus mutans under sonodynamic antimicrobial chemotherapy (SACT).Materials and methods: The NM@Cur as a sonosensitizer was synthesized and its morphology, particle size distribution, zeta potential, and physical stability were then determined. After evaluating the Cur and NM@Cur uptake in S. mutans strain, Cur- and NM@Cur-SACT effects were determined on colony forming unit (CFU/mL) and reactive oxygen species (ROS) levels. Additionally, cytotoxicity and apoptotic effects of Cur- and NM@Cur-SACT on human gingival fibroblast (HGF) cells were assessed using MTT assay and flow cytometry analysis, respectively.Results: Transmission electron microscope, particle size distribution, and zeta potential analysis confirmed successful synthesis of NM@Cur. The finding of this study showed that an incubation time of 5 min to 1 h was sufficient to achieve maximal uptake of Cur and NM@Cur in S. mutans. SACT with Cur at a concentration of 50 mM and ultrasound intensity at 1.56 W/cm(2) for 1 min significantly reduced the count of S. mutans to 90.8 %, compared to control group (P 0.05), while the count of S. mutans decreased to 99.9 % following treatment with the NM@Cur-SACT (P 0.05), that was also confirmed via fluorescence microscopy. As well as, SACT with 50 mM NM@Cur not only had the least toxicity against HGF cells, but also showed 10.8-fold increase in intracellular ROS production.Conclusions: Overall, this study revealed that NM@Cur-mediated SACT with the least cytotoxicity and apoptotic effects and the highest cellular uptake, ROS production, and antimicrobial activites could effectively inhibit the growth of the S. mutans in compare with Cur.
机译:背景:与龋齿有关的微生物的失活已被认为是在治疗龋齿中选择的治疗。拟议的研究旨在评估纳米纤维姜黄素(NM @ CUR)的SONOTOGICIC激发的效果与废弃动力学抗菌化疗(SACT)下的链球菌异细胞素的CUR相比。材料和方法:合成了作为超声溶胶剂的NM @ CUR然后确定形态,粒度分布,ζ电位和物理稳定性。在评估S.Ulans菌株中的Cur和NM @ Cur摄取后,在菌落形成单元(CFU / mL)和反应性氧物质(ROS)水平上测定Cur-and NM @ Cur-Sact效应。另外,使用MTT测定和流式细胞术分析评估人牙龈细胞(HGF)细胞对人牙龈细胞(HGF)细胞的cytoxicity和凋亡效应。结果:透射电子显微镜,粒度分布和Zeta潜在分析证实了成功合成NM @ cur。该研究的发现表明,5分钟至1小时的孵育时间足以实现S.Ulans中的Cur和NM @ Cur的最大摄取。与对照组相比,以1.56W / cm(2)的浓度为50mm,超声强度为1.56W / cm(2)的超声强度,显着降低了S. mutans的计数至90.8%(P <0.05),而S的计数在用NM @ Cur-anact(P <0.05)处理后,Mutans降至99.9%,通过荧光显微镜检查也证实。以及50 mm NM @ cur的术语不仅对HGF细胞的毒性最低,而且还显示出10.8倍的细胞内ROS生产增加。结论:总体而言,本研究表明,NM @ Cur介导的Sact最少细胞毒性和凋亡效应和最高的细胞摄取,ROS产生和抗微生物活化物可以有效地抑制与CUR比较的S.umants的生长。

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