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鉴定选择性影响白念珠菌生物膜黏附性、厚度、结构、细胞表型、细胞外基质和人白细胞渗透性的天然剂的方案。

Protocol for Identifying Natural Agents That Selectively Affect Adhesion, Thickness, Architecture, Cellular Phenotypes, Extracellular Matrix, and Human White Blood Cell Impenetrability of Candida albicans Biofilms.

机构信息

Developmental Studies Hybridoma Bank, Department of Biology, University of Iowa, Iowa City, Iowa, USA.

National Center for Natural Products Research, School of Pharmacy, University of Mississippi, Oxford, Mississippi, USA.

出版信息

Antimicrob Agents Chemother. 2017 Oct 24;61(11). doi: 10.1128/AAC.01319-17. Print 2017 Nov.

Abstract

In the screening of natural plant extracts for antifungal activity, assessment of their effects on the growth of cells in suspension or in the wells of microtiter plates is expedient. However, microorganisms, including , grow in nature as biofilms, which are organized cellular communities with a complex architecture capable of conditioning their microenvironment, communicating, and excluding low- and high-molecular-weight molecules and white blood cells. Here, a confocal laser scanning microscopy (CLSM) protocol for testing the effects of large numbers of agents on biofilm development is described. The protocol assessed nine parameters from a single z-stack series of CLSM scans for each individual biofilm analyzed. The parameters included adhesion, thickness, formation of a basal yeast cell polylayer, hypha formation, the vertical orientation of hyphae, the hyphal bend point, pseudohypha formation, calcofluor white staining of the extracellular matrix (ECM), and human white blood cell impenetrability. The protocol was applied first to five plant extracts and derivative compounds and then to a collection of 88 previously untested plant extracts. They were found to cause a variety of phenotypic profiles, as was the case for 64 of the 88 extracts (73%). Half of the 46 extracts that did not affect biofilm thickness affected other biofilm parameters. Correlations between specific effects were revealed. The protocol will be useful not only in the screening of chemical libraries but also in the analysis of compounds with known effects and mutations.

摘要

在筛选具有抗真菌活性的天然植物提取物时,评估它们对悬浮细胞或微孔板孔中细胞生长的影响是很方便的。然而,微生物,包括,在自然界中以生物膜的形式生长,生物膜是具有复杂结构的组织细胞群落,能够调节其微环境、进行交流,并排除低分子量和高分子量分子以及白细胞。这里描述了一种用于测试大量试剂对生物膜发育影响的共聚焦激光扫描显微镜 (CLSM) 方案。该方案从每个单独生物膜的单个 CLSM 扫描 z 堆叠系列中评估了九个参数。这些参数包括附着力、厚度、基础酵母细胞多层层的形成、菌丝形成、菌丝的垂直定向、菌丝弯曲点、假菌丝形成、细胞外基质 (ECM) 的钙荧光白染色和人白细胞的不可渗透性。该方案首先应用于五种植物提取物和衍生化合物,然后应用于 88 种以前未测试过的植物提取物的集合。结果发现它们引起了多种表型谱,88 种提取物中有 64 种(73%)就是如此。在不影响生物膜厚度的 46 种提取物中有一半影响了其他生物膜参数。揭示了特定影响之间的相关性。该方案不仅将有助于化学文库的筛选,而且有助于分析具有已知作用和突变的化合物。

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本文引用的文献

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Plasticity of Candida albicans Biofilms.白色念珠菌生物膜的可塑性
Microbiol Mol Biol Rev. 2016 Jun 1;80(3):565-95. doi: 10.1128/MMBR.00068-15. Print 2016 Sep.

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