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荧光凝集素结合分析法分析原位生长的牙菌斑生物膜中糖成分,有无蔗糖存在两种情况。

Fluorescence lectin binding analysis of carbohydrate components in dental biofilms grown in situ in the presence or absence of sucrose.

机构信息

Section for Oral Ecology and Caries Control, Department of Dentistry and Oral Health, Aarhus University, Aarhus, Denmark.

Clinic of Reconstructive Dentistry, Center of Dental Medicine, University of Zurich, Zurich, Switzerland.

出版信息

Mol Oral Microbiol. 2022 Oct;37(5):196-205. doi: 10.1111/omi.12384. Epub 2022 Aug 29.

Abstract

Carbohydrate components, such as glycoconjugates and polysaccharides, are constituents of the dental biofilm matrix that play an important role in biofilm stability and virulence. Exopolysaccharides in Streptococcus mutans biofilms have been characterized extensively, but comparably little is known about the matrix carbohydrates in complex, in situ-grown dental biofilms. The present study employed fluorescence lectin binding analysis (FLBA) to investigate the abundance and spatial distribution of glycoconjugates/polysaccharides in biofilms (n = 306) from 10 participants, grown in situ with (SUC) and without (H2O) exposure to sucrose. Biofilms were stained with 10 fluorescently labeled lectins with different carbohydrate specificities (AAL, ABA, ASA, HPA, LEA, MNA-G, MPA, PSA, VGA and WGA) and analyzed by confocal microscopy and digital image analysis. Microbial composition was determined by 16S rRNA gene sequencing. With the exception of ABA, all lectins targeted considerable matrix biovolumes, ranging from 19.3% to 194.0% of the microbial biovolume in the biofilms, which illustrates a remarkable variety of carbohydrate compounds in in situ-grown dental biofilms. MNA-G, AAL, and ASA, specific for galactose, fucose, and mannose, respectively, stained the largest biovolumes. AAL and ASA biovolumes were increased in SUC biofilms, but the difference was not significant due to considerable biological variation. SUC biofilms were enriched in streptococci and showed reduced abundances of Neisseria and Haemophilus spp., but no significant correlations between lectin-stained biovolumes and bacterial abundance were observed. In conclusion, FLBA demonstrates the presence of a voluminous biofilm matrix comprising a variety of different carbohydrate components in complex, in situ-grown dental biofilms.

摘要

碳水化合物成分,如糖缀合物和多糖,是牙菌斑基质的组成部分,在生物膜稳定性和毒力方面发挥着重要作用。变形链球菌生物膜中的胞外多糖已得到广泛研究,但在复杂的原位生长的牙菌斑生物膜中,对基质碳水化合物的了解相对较少。本研究采用荧光凝集素结合分析(FLBA)来研究 10 名参与者原位生长的(SUC)和不接触(H2O)蔗糖的牙菌斑(n=306)中糖缀合物/多糖的丰度和空间分布。生物膜用 10 种具有不同碳水化合物特异性的荧光标记凝集素(AAL、ABA、ASA、HPA、LEA、MNA-G、MPA、PSA、VGA 和 WGA)染色,并用共聚焦显微镜和数字图像分析进行分析。微生物组成通过 16S rRNA 基因测序确定。除了 ABA 之外,所有凝集素都靶向相当大的基质生物量,范围为生物膜中微生物生物量的 19.3%到 194.0%,这说明了原位生长的牙菌斑中存在着多种多样的碳水化合物。特异性识别半乳糖、岩藻糖和甘露糖的 MNA-G、AAL 和 ASA 染色的生物量最大。在 SUC 生物膜中,AAL 和 ASA 的生物量增加,但由于生物变异较大,差异不显著。SUC 生物膜富含链球菌,而奈瑟菌和嗜血杆菌属的丰度降低,但未观察到凝集素染色的生物量与细菌丰度之间存在显著相关性。总之,FLBA 证明了复杂的原位生长的牙菌斑生物膜中存在大量的生物膜基质,其中包含多种不同的碳水化合物成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7863/9804345/af24d6a045bf/OMI-37-196-g005.jpg

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