3D Visualization of cyanobacterial biofilms using micro-computed tomography with contrast-enhancing staining agents

Laurenz Schröer , Tim Balcaen , Karel Folens , Nico Boon , Tim De Kock , Greet Kerckhofs , Veerle Cnudde
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Abstract

Currently, biofilms colonizing surfaces are mainly imaged in 2D by conventional techniques, such as optical or scanning electron microscopy. Confocal laser scanning microscopy or optical coherence tomography can visualize biofilms in 3D, but they suffer from a limited penetration depth and cannot visualize biofilms in opaque materials. Micro-computed tomography (µCT) can overcome these issues, but µCT cannot easily distinguish biofilm structures from water due to a lack of contrast difference. Within this research, five contrast-enhancing staining agents (CESAs) were evaluated for their staining potential of cyanobacterial biofilms, aiming to visualize these biofilms in 3D. Isotonic Lugol and 1:2 hafnium(IV)-substituted Wells-Dawson polyoxometalate (Hf-WD 1:2 POM) were the most promising, as they allowed visualization of the biofilms and revealed structures in the stained biofilms. Staining with isotonic Lugol could clearly visualize bundles of filaments within the biofilm, while Hf-WD 1:2 POM revealed a smooth biofilm. It is assumed that both CESAs have a different affinity towards the biofilms and could thus be used complementary. Monolacunary Wells-Dawson polyoxometalate (Mono-WD POM) showed moderate discrimination while staining with cationic iodinated CA4+ and Hexabrix® (Guerbet) containing anionic ioxaglate did not allow to distinctly visualize the biofilms. These results indicate that µCT, together with CESAs such as isotonic Lugol and Hf-WD 1:2 POM, can be used as a tool to image extensive biofilms or microbial mats in 3D. Further research will determine whether these CESAs are suitable for visualizing biofilms within opaque porous media.

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利用微计算机断层扫描和对比增强染色剂实现蓝藻生物膜的三维可视化
目前,传统技术(如光学显微镜或扫描电子显微镜)主要对表面生物膜进行二维成像。共焦激光扫描显微镜或光学相干断层扫描可以观察到三维生物膜,但它们的穿透深度有限,无法观察到不透明材料中的生物膜。微型计算机断层扫描(µCT)可以克服这些问题,但由于缺乏对比度差异,µCT 无法轻易将生物膜结构与水区分开来。本研究评估了五种对比度增强染色剂(CESAs)对蓝藻生物膜的染色潜力,旨在对这些生物膜进行三维可视化。等渗卢戈尔和 1:2 取代威尔斯-道森聚氧化金属铪(IV)(Hf-WD 1:2 POM)最有前景,因为它们能使生物膜可视化,并揭示染色生物膜中的结构。用等渗 Lugol 染色可以清楚地看到生物膜内的丝束,而 Hf-WD 1:2 POM 则显示出光滑的生物膜。据推测,这两种 CESAs 对生物膜具有不同的亲和力,因此可以互补使用。单性威尔斯-道森聚氧甲酸盐(Mono-WD POM)显示出中等程度的辨别能力,而阳离子碘化 CA4+ 和含有阴离子碘镁酸盐的 Hexabrix® (Guerbet) 染色则无法明显观察到生物膜。这些结果表明,µCT 与 CESAs(如等渗 Lugol 和 Hf-WD 1:2 POM)一起可用作三维成像广泛生物膜或微生物毡的工具。进一步的研究将确定这些 CESAs 是否适用于观察不透明多孔介质中的生物膜。
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