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Anthraquinones against Cryptococcus neoformans sensu stricto: antifungal interaction, biofilm inhibition and pathogenicity in the Caenorhabditis elegans model

新生隐球菌 严格意义上 秀丽隐杆线虫 蒽醌类 微生物学 生物 致病性 抗真菌 生物膜 隐球菌 遗传学 植物 动物 基因 细菌
作者
Géssica dos Santos Araújo,Raimunda Sâmia Nogueira Brilhante,Maria Gleiciane da Rocha,Lara de Aguiar,Débora de Souza Collares Maia Castelo-Branco,Gláucia Morgana de Melo Guedes,José Júlio Costa Sidrim,Waldemiro Aquino Pereira Neto,Marcos Fábio Gadelha Rocha
出处
期刊:Journal of Medical Microbiology [Microbiology Society]
卷期号:73 (3)
标识
DOI:10.1099/jmm.0.001815
摘要

Introduction. Cryptococcal biofilms have been associated with persistent infections and antifungal resistance. Therefore, strategies, such as the association of natural compounds and antifungal drugs, have been applied for the prevention of biofilm growth. Moreover, the Caenorhabditis elegans pathogenicity model has been used to investigate the capacity to inhibit the pathogenicity of Cryptococcus neoformans sensu stricto . Hypothesis. Anthraquinones and antifungals are associated with preventing C. neoformans sensu stricto biofilm formation and disrupting these communities. Antraquinones reduced the C. neoformans sensu stricto pathogenicity in the C. elegans model. Aim. This study aimed to evaluate the in vitro interaction between aloe emodin, barbaloin or chrysophanol and itraconazole or amphotericin B against growing and mature biofilms of C. neoformans sensu stricto . Methodology. Compounds and antifungal drugs were added during biofilm formation or after 72 h of growth. Then, the metabolic activity was evaluated by the MTT reduction assay, the biomass by crystal-violet staining and the biofilm morphology by confocal laser scanning microscopy. C. neoformans sensu stricto's pathogenicity was investigated using the nematode C. elegans . Finally, pathogenicity inhibition by aloe emodin, barbarloin and chrysophanol was investigated using this model. Results. Anthraquinone–antifungal combinations affected the development of biofilms with a reduction of over 60 % in metabolic activity and above 50 % in biomass. Aloe emodin and barbaloin increased the anti-biofilm activity of antifungal drugs. Chrysophanol potentiated the effect of itraconazole against C. neoformans sensu stricto biofilms. The C. elegans mortality rate reached 76.7 % after the worms were exposed to C. neoformans sensu stricto for 96 h. Aloe emodin, barbaloin and chrysophanol reduced the C. elegans pathogenicity with mortality rates of 61.12 %, 65 % and 53.34 %, respectively, after the worms were exposed for 96 h to C. neoformans sensu stricto and these compounds at same time. Conclusion. These results highlight the potential activity of anthraquinones to increase the effectiveness of antifungal drugs against cryptococcal biofilms.
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