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In vitro antimicrobial effects of chitosan on microcosm biofilms of oral candidiasis

生物膜 微生物学 微观世界 白色念珠菌 唾液 洗必泰 抗菌剂 白色体 口炎 菌落形成单位 制霉菌素 肉汤微量稀释 咪康唑 化学 最小抑制浓度 乳酸菌 食品科学 生物 抗生素 医学 细菌 牙科 抗真菌 胃肠病学 生物化学 环境化学 发酵 遗传学
作者
Heitor Ceolin Araujo,Wilmer Ramírez‐Carmona,Camila Yano Sato,Marcelo José dos Santos Oliveira,Guilherme dos Santos Gomes Alves,Deborah Nunes Morato,Juliano Pelim Pessan,Douglas Roberto Monteiro
出处
期刊:Journal of Dentistry [Elsevier BV]
卷期号:125: 104246-104246 被引量:5
标识
DOI:10.1016/j.jdent.2022.104246
摘要

This study assessed the effects of chitosan (CS) on microcosm biofilms derived from saliva of patients with Candida-associated denture stomatitis.Five removable denture wearers with denture stomatitis were included in the study. The minimum inhibitory concentration (MIC) of CS against clinical isolates of Candida albicans was determined according to the broth microdilution method. Pooled saliva from the donors was used as an inoculum for the formation of biofilms, which were developed during 72 h on acrylic surfaces in the Amsterdam Active Attachment model. The biofilms were then treated with different concentrations of CS, and the antibiofilm effects were evaluated through the quantification of colony-forming units (CFUs), total biomass (TB), metabolic activity (MA), lactic acid production (LAP), and cell viability (by confocal laser scanning microscopy). Chlorhexidine, miconazole, and nystatin were tested as positive controls, while the negative control (NC) was the untreated biofilm. Data were analyzed by 1-way ANOVA and Fischer LSD's post hoc test (α=0.05).MIC values of CS ranged from 500 to 800 µg/mL. For CFUs, 2500 µg/mL CS was the most effective treatment in reducing total anaerobes, mutans streptococci, and Lactobacillus spp., significantly differing from the controls. For C. albicans CFUs, CS and positive controls did not differ from each other but led to significant reductions compared to NC. Regarding TB, MA, LAP, and cell viability, 2500 µg/mL CS promoted the greatest reductions compared to NC.CS has similar or superior effects to conventional active principles on important parameters of oral candidiasis microcosm biofilms.The antibiofilm effects of CS show that this compound has great potential to improve the clinical condition of denture stomatitis patients, and formulations containing this natural polymer could be useful for controlling oral candidiasis.
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