Leite Lady Daiane Pereira, Oliveira Maria Alcionéia Carvalho de, Vegian Mariana Raquel da Cruz, Sampaio Aline da Graça, Nishime Thalita Mayumi Castaldelli, Kostov Konstantin Georgiev, Koga-Ito Cristiane Yumi
Science Applied to Oral Health, Graduate Program of Institute of Science and Technology, São Paulo State University (Unesp), São José dos Campos 12245-000, Brazil.
Oral Biopathology, Graduate Program of Institute of Science and Technology, São Paulo State University (Unesp), São José dos Campos 12245-000, Brazil.
Molecules. 2021 Sep 25;26(19):5815. doi: 10.3390/molecules26195815.
The increasing incidence of antifungal resistance represents a great challenge in the medical area and, for this reason, new therapeutic alternatives for the treatment of fungal infections are urgently required. Cold atmospheric plasma (CAP) has been proposed as a promising alternative technique for the treatment of superficial candidiasis, with inhibitory effect both in vitro and in vivo. However, little is known on the association of CAP with conventional antifungals. The aim of this study was to evaluate the effects of the association between CAP and conventional polyene antifungals on biofilms. SC 5314 and a clinical isolate were used to grow 24 or 48 h biofilms, under standardized conditions. After that, the biofilms were exposed to nystatin, amphotericin B and CAP, separately or in combination. Different concentrations of the antifungals and sequences of treatment were evaluated to establish the most effective protocol. Biofilms viability after the treatments was compared to negative control. Data were compared by One-way ANOVA and post hoc Tukey (5%). The results demonstrate that 5 min exposure to CAP showed more effective antifungal effect on biofilms when compared to nystatin and amphotericin B. Additionally, it was detected that CAP showed similar (but smaller in magnitude) effects when applied in association with nystatin and amphotericin B at 40 µg/mL and 60 µg/mL. Therefore, it can be concluded that the application of CAP alone was more effective against biofilms than in combination with conventional polyene antifungal agents.
抗真菌耐药性的日益增加在医学领域构成了巨大挑战,因此,迫切需要治疗真菌感染的新治疗方案。冷大气等离子体(CAP)已被提议作为治疗浅表念珠菌病的一种有前景的替代技术,在体外和体内均具有抑制作用。然而,关于CAP与传统抗真菌药物联合使用的情况知之甚少。本研究的目的是评估CAP与传统多烯类抗真菌药物联合使用对生物膜的影响。使用SC 5314和一株临床分离株在标准化条件下培养24或48小时的生物膜。之后,将生物膜分别或联合暴露于制霉菌素、两性霉素B和CAP。评估不同浓度的抗真菌药物和治疗顺序,以确定最有效的方案。将治疗后生物膜的活力与阴性对照进行比较。数据通过单因素方差分析和事后检验Tukey检验(5%)进行比较。结果表明,与制霉菌素和两性霉素B相比,暴露于CAP 5分钟对生物膜显示出更有效的抗真菌作用。此外,还检测到当CAP与40 µg/mL和60 µg/mL的制霉菌素和两性霉素B联合使用时,显示出相似(但程度较小)的效果。因此,可以得出结论,单独应用CAP对生物膜的效果比与传统多烯类抗真菌药物联合使用更有效。