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首页> 外文期刊>Archives of Oral Biology >Synergistic activity of lysozyme and antifungal agents against Candida albicans biofilms on denture acrylic surfaces.
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Synergistic activity of lysozyme and antifungal agents against Candida albicans biofilms on denture acrylic surfaces.

机译:溶菌酶和抗真菌剂对假牙丙烯酸表面上的白色念珠菌生物膜的协同活性。

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摘要

Denture related oral candidiasis is a recalcitrant fungal infection not easily resolved by topical antifungals. The antimycotic protein lysozyme, in saliva is an important host defense mechanism although its activity against Candida biofilms on denture acrylic has not been evaluated. OBJECTIVES: (i) To establish a clinically relevant denture acrylic assay model to develop standardized Candida albicans biofilms, and (ii) assess the inhibitory effects of lysozyme alone and, the latter combined with antifungals (nystatin, amphotericin B, ketoconazole and 5-fluorocytosine) on sessile Candida cells and, finally (iii) to visualize the accompanying ultrastructural changes. DESIGN: The rotating-disc biofilm reactor was used to develop standardized 48 h Candida biofilms on acrylic discs in YNB/100 mM glucose medium and the biofilm metabolic activity was monitored using a tetrazolium reduction assay. RESULTS: The biofilm metabolic activity was similar in 18 identical denture acrylic discs (p<0.05) thus validating the rotating-disc biofilm model. Very low concentrations of lysozyme (6.25 microg/ml) significantly (p<0.01) inhibited Candida biofilm formation indicating that lysozyme may likely regulate intra-oral Candida biofilm development. Although 100 microg/ml lysozyme killed 45% of sessile Candida cells, further increasing its concentration (up to 240 microg/ml) had no such effect. Nystatin, amphotericin B, and ketoconazole in association with 100 microg/ml lysozyme exhibited effective synergistic killing of biofilm Candida in comparison to drug-free controls. Scanning electron and confocal scanning laser microscopy analysis confirmed the latter trends. CONCLUSION: Our results indicate that agents found in biological fluids such as lysozyme could be a safe adjunct to antifungals in future treatment strategies for recalcitrant candidal infections.
机译:与假牙有关的口腔念珠菌病是顽固性真菌感染,不易通过局部抗真菌药物解决。唾液中的抗霉菌蛋白溶菌酶是重要的宿主防御机制,尽管尚未评估其对义齿丙烯酸树脂假丝酵母生物膜的活性。目的:(i)建立临床相关的义齿丙烯酸检测模型以开发标准化的白色念珠菌生物膜,并且(ii)单独评估溶菌酶的抑制作用,后者与抗真菌药(制霉菌素,两性霉素B,酮康唑和5-氟胞嘧啶合用) )在无数念珠菌细胞上,最后(iii)观察伴随的超微结构变化。设计:旋转盘生物膜反应器用于在YNB / 100 mM葡萄糖培养基中的丙烯酸盘上显影标准的48 h念珠菌生物膜,并使用四氮唑还原测定法监测生物膜的代谢活性。结果:在18个相同义齿丙烯酸树脂牙盘中,生物膜的代谢活性相似(p <0.05),从而验证了旋转盘生物膜模型。极低浓度的溶菌酶(6.25微克/毫升)显着(p <0.01)抑制念珠菌生物膜的形成,表明溶菌酶可能会调节口腔念珠菌生物膜的发育。尽管100微克/毫升溶菌酶杀死了45%的无性念珠菌细胞,但进一步增加其浓度(最高240微克/毫升)却没有这种作用。与无药对照相比,制霉菌素,两性霉素B和酮康唑与100微克/毫升溶菌酶结合可有效杀死生物膜念珠菌。扫描电子和共聚焦扫描激光显微镜分析证实了后者的趋势。结论:我们的结果表明,在今后难治性念珠菌感染的治疗策略中,在诸如溶菌酶等生物体液中发现的药物可能是抗真菌药的安全辅助剂。

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