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Photodynamic antimicrobial chemotherapy through photosensitizers loaded poly-L-glycolic acid on Candida albicans in denture lining material: Release, biological and hardness study

机译:光电动力学抗菌化疗通过光敏剂在义齿衬里材料中的念珠菌蛋白白醛糖醛糖加载聚-1-乙醇酸:释放,生物和硬度研究

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Aim: The aim of this in-vitro study was to formulate poly-L-glycolic acid nanoparticles loaded with methylene blue (PLGA-MB) and to characterize their physicochemical features, photosensitizer-release kinetics and antimicrobial efficacy against Candida albicans (C. albicans) after incorporating in polymethyl methacrylate (PMMA) denture lining materials.Material and methods: MB-PLGA nanoparticles were synthesized according to the modified nanoprecipitation method. The morphological characterization of the nanoparticles was studied under scanning and transmission electron microscope. Particle size, surface charge, polydispersity index (PDI) and MB release were evaluated. The effect of 660 nm semiconductor AlGaInP diode laser on C. albicans was studied in vitro. The PMMA was weighed and PLGA free and PLGA-MB were added in the lining material according to the weight percentage as 2.0 wt.% and 5.0 wt.% and tested for the diameter of the inhibition zones of C. albicans growth and shore A hardness.Results: Homogenous spherical nanoparticles with round morphology with size ranging between 60-80 nm were observed while PLGA-MB were seen to have irregular structure within the nanoparticle under TEM. PLGA-Free was larger in size than the loaded PLGA (-62 nm) that evidenced reduction in size by adding the MB photo sensitizer. PDI recordings reduced from 0.198 for the PLGA-Free nanoparticles to 0.164 for the PLGA-MB nanoparticles. The entrapment efficiency of MB inside PLGA showed an average percentage of similar to 75 % uptake that resulted in the overall loading of similar to 15 %. An overall inhibition of 78 %, 41 % and 28 % of C. albicans growth was seen with a concentration of 0.1, 0.5 and 1.0 mu g/mL, respectively. The application of PLGA nanoparticles loaded with MB evidenced 75 % of C. albicans. MB incorporation did not lead to a clinically relevant change on shore A hardness.Conclusion: PLGA loaded with MB is believed to have promising target therapy against C. albicans in denture soft lining materials in terms of PACT in vitro. The synergistic association between PLGA and MB proved enhanced antifungal activity. PLGA-MB could be an important tool in nanobiotechnology and photodynamic therapy for novel formulations with higher antimicrobial efficacy and improved drug delivery from denture soft lining materials.
机译:目的:这种体外研究的目的是配制含有亚甲基蓝(PLGA-MB)的聚-1-乙醇酸纳米粒子,并表征其物理化学特征,光敏剂 - 释放动力学和针对念珠菌蛋白的抗微生物功效(C. albicans )在包含聚甲基丙烯酸甲酯(PMMA)假牙衬里材料之后。根据改性的纳米沉淀方法合成MB-PLGA纳米粒子。在扫描和透射电子显微镜下研究了纳米颗粒的形态学特征。评估粒度,表面电荷,多分散性指数(PDI)和MB释放。体外研究了660nm半导体藻类抗凝固二极管在C.醛型人的影响。称重PMMA,并根据重量百分比加入PLGA和PLGA-MB,根据2.0重量%和5.0重量%。%并测试C.醛醛植物生长和岸上的抑制区的直径。 。结果:观察到具有圆形形态的均匀球形纳米颗粒,尺寸在60-80nm之间观察到,而PLGA-MB在TEM下的纳米粒子内具有不规则的结构。无尺寸比加载的PLGA(-62nm)更大的PLGA通过添加MB照片敏化剂可以减少尺寸。 PDI录像从0.198减少到PLGA-MB纳米颗粒的PLGA无纳米颗粒0.164。 PLGA内部MB的夹带效率显示出与75%摄取的平均百分比,导致总装载与15%相似。浓度为0.1,0.5和1.0μg/ ml,浓度的浓度为0.1,0.5和1.0μg,总体抑制为78%,41%和28%。 PLGA纳米颗粒的施用载有MB的显现性> 75%的C. albicans。 MB Incorporation没有导致肖氏硬度的临床相关变化。结论:据信加载MB的PLGA对牙本质软衬里的C. albicans的靶疗法有前途的靶疗法。 PLGA和MB之间的协同关联证明了增强的抗真菌活性。 PLGA-MB可以是纳米能力和光动力学治疗的重要工具,用于具有较高抗微生物疗效和从义齿软衬里材料的改善药物递送的新配方。

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