Time-lapse confocal microscopy to study in vitro Streptococcus mutans surface colonization.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-02-01 DOI:10.1093/lambio/ovae012
Jason T F Wing, Michael A L Hayashi, Aneesa F Redissi, M Margaret Vickerman, Livia M A Tenuta, J Christopher Fenno, Alexander H Rickard
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Abstract

The cariogenicity of Streptococcus mutans relates to its ability to form biofilms on dental surfaces. The aim of this work was to develop a flowcell system compatible with time-lapse confocal microscopy to compare the adhesion and accumulation of S. mutans cells on surfaces in unsupplemented media against media containing sucrose or sucralose (a non-metabolized sweetener) over a short period of time. Fluorescent S. mutans 3209/pVMCherry was suspended in unsupplemented media or media supplemented with 1% sucrose or 1% sucralose and passed through a 3D-printed flowcell system. Flowcells were imaged over 60 minutes using a confocal microscope. Image analysis was performed, including a newly developed object-movement-based method to measure biomass adhesion. Streptococcus mutans 3209/pVMCherry grown in 1% sucrose-supplemented media formed small, dense, relatively immobile clumps in the flowcell system measured by biovolume, surface area, and median object centroid movement. Sucralose-supplemented and un-supplemented media yielded large, loose, mobile aggregates. Architectural metrics and per-object movement were significantly different (P < 0.05) when comparing sucrose-supplemented media to either unsupplemented or sucralose-supplemented media. These results demonstrate the utility of a flowcell system compatible with time-lapse confocal microscopy and image analysis when studying initial biofilm formation and adhesion under different nutritional conditions.

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利用延时共聚焦显微镜研究体外变异链球菌表面定植。
变异链球菌的致龋性与其在牙齿表面形成生物膜的能力有关。这项工作的目的是开发一种与延时共聚焦显微镜兼容的流式细胞系统,以比较变异链球菌细胞在无添加剂的培养基和含有蔗糖或三氯蔗糖(一种非代谢甜味剂)的培养基表面上短时间内的粘附和积聚情况。荧光 S. mutans 3209/pVMCherry 悬浮于未添加辅料的培养基或添加 1%蔗糖或 1%蔗糖素(三氯蔗糖)的培养基中,并通过 3D 打印流式细胞系统。使用共聚焦显微镜对流式细胞进行 60 分钟的成像。使用新开发的基于物体运动的方法进行图像分析,以测量生物质粘附情况。通过生物体积、表面积和物体中心点移动中位数测量,在 1%蔗糖补充培养基中生长的 S. mutans 3209/pVMCherry 在流动细胞系统中形成了小而密、相对固定的团块。添加三氯蔗糖和未添加三氯蔗糖的培养基会形成大而松散的移动聚集体。结构指标和每个物体的移动有显著差异(p
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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