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单物种和双物种生物膜形成的动力学以及它们之间的相互作用。

Dynamics of Mono- and Dual-Species Biofilm Formation and Interactions Between and .

作者信息

Oliveira Lariane Teodoro, Medina-Alarcón Kaila Petronila, Singulani Junya de Lacorte, Fregonezi Nathália Ferreira, Pires Regina Helena, Arthur Rodrigo Alex, Fusco-Almeida Ana Marisa, Mendes Giannini Maria José Soares

机构信息

Department of Clinical Analysis, School of Pharmaceutical Sciences, São Paulo State University-UNESP, Araraquara, Brazil.

Laboratory of Mycology and Environmental Diagnosis, University of Franca, Franca, Brazil.

出版信息

Front Microbiol. 2020 Oct 14;11:551256. doi: 10.3389/fmicb.2020.551256. eCollection 2020.

Abstract

The oral cavity is a highly diverse microbial environment in which microorganisms interact with each other, growing as biofilms on biotic and abiotic surfaces. Understanding the interaction among oral microbiota counterparts is pivotal for clarifying the pathogenesis of oral diseases. spp. is one of the most abundant fungi in the oral mycobiome with the ability to cause severe soft tissue lesions under certain conditions. spp., the causative agent of paracoccidioidomycosis, may also colonize the oral cavity leading to soft tissue damage. It was hypothesized that both fungi can interact with each other, increasing the growth of the biofilm and its virulence, which in turn can lead to a more aggressive infectivity. Therefore, this study aimed to evaluate the dynamics of mono- and dual-species biofilm growth of and and their infectivity using the model. Biomass and fungi metabolic activity were determined by the crystal violet and the tetrazolium salt reduction tests (XTT), respectively, and the colony-forming unit (CFU) was obtained by plating. Biofilm structure was characterized by both scanning electronic- and confocal laser scanning- microscopy techniques. Survival analysis of was evaluated to assess infectivity. Our results showed that dual-species biofilm with plus presented a higher biomass, higher metabolic activity and CFU than their mono-species biofilms. Furthermore, larvae infected with plus presented a decrease in the survival rate compared to those infected with or , mainly in the form of biofilms. Our data indicate that and co-existence is likely to occur on oral mucosal biofilms, as per and analysis. These data further widen the knowledge associated with the dynamics of fungal biofilm growth that can potentially lead to the discovery of new therapeutic strategies for these infections.

摘要

口腔是一个高度多样化的微生物环境,微生物在其中相互作用,以生物膜的形式在生物和非生物表面生长。了解口腔微生物群落之间的相互作用对于阐明口腔疾病的发病机制至关重要。 属是口腔真菌群落中最丰富的真菌之一,在某些条件下能够引起严重的软组织病变。 属作为副球孢子菌病的病原体,也可能定植于口腔,导致软组织损伤。据推测,这两种真菌可能相互作用,增加生物膜的生长及其毒力,进而导致更强的传染性。因此,本研究旨在使用 模型评估 和 的单物种和双物种生物膜生长动态及其传染性。分别通过结晶紫和四氮唑盐还原试验(XTT)测定生物量和真菌代谢活性,并通过平板接种获得菌落形成单位(CFU)。通过扫描电子显微镜和共聚焦激光扫描显微镜技术对生物膜结构进行表征。对 的存活分析进行评估以评估传染性。我们的结果表明,与单物种生物膜相比, 与 形成的双物种生物膜具有更高的生物量、更高的代谢活性和CFU。此外,与感染 或 的 幼虫相比,感染 与 的 幼虫存活率下降,主要是生物膜形式。根据 和 分析,我们的数据表明 和 可能在口腔黏膜生物膜上共存。这些数据进一步拓宽了与真菌生物膜生长动态相关的知识,这可能潜在地导致发现针对这些感染的新治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a86f/7591818/18d54c5aa614/fmicb-11-551256-g001.jpg

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