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利用高对比度 X 射线计算纳米断层摄影术对多孔支架上间充质干细胞的 3D 成像。

The 3D imaging of mesenchymal stem cells on porous scaffolds using high-contrasted x-ray computed nanotomography.

机构信息

CEITEC, Brno University of Technology, Brno, Czech Republic.

Institute of Experimental Medicine ASCR v.v.i., Prague, Czech Republic.

出版信息

J Microsc. 2019 Mar;273(3):169-177. doi: 10.1111/jmi.12771. Epub 2018 Nov 22.

Abstract

This study presents an X-ray computed nanotomography (nano-CT) based, high-resolution imaging technique. Thanks to a voxel resolution of 540 nm, this novel technique is suitable for observing the 3D morphology of soft biopolymeric scaffolds seeded with stem cells. A sample of highly porous collagen scaffold seeded with contrasted mesenchymal stem cells (MSC) was investigated by using lab-based nano-CT. The whole volume of the sample was analysed without its destruction. To evaluate the potential of nano-CT, a comparison measurement was done using a standard microscopy technique. Scanning electron microscopy (SEM) combined with energy dispersive X-ray analysis (EDX) established an extension and local accumulation of the contrasting agent - heavy metallic osmium tetroxide. The presented imaging technique is novel as it will help to understand better the behaviour of cells while interacting with three-dimensional biomaterials. This is crucial for both experimental and clinical tissue engineering applications in order to limit the risk of uncontrolled cell growth, and potentially tumour formation. LAY DESCRIPTION: Biomaterials play a crucial role in tissue engineering by serving as 3D scaffolds for cellular attachment, proliferation, and in growth ultimately leading to new tissue formation. Cell morphology and proliferation inside the 3D scaffold are necessary to know for assessing cell viability. However, these studies are usually negatively affected by the limitations of imaging techniques. We demonstrate that X-ray computed nanotomography (nano-CT), based on high-resolution imaging technique providing voxel resolution of 540 nm, is a suitable method for observing the 3D morphology of soft biopolymeric scaffolds seeded with stem cells. A sample of highly porous collagen scaffold seeded with contrasted mesenchymal stem cells (MSC) was investigated by using a lab-based nano-CT. The whole volume of the sample was analysed without its destruction. To evaluate the potential of nano-CT, a comparison measurement was done using a standard microscopy technique. Scanning electron microscopy in a combination with energy dispersive X-ray analysis established an extension and local accumulation of the contrasting agent - heavy metallic osmium tetroxide. The presented imaging technique is novel as it will help to understand better the behaviour of cells while interacting with three-dimensional biomaterials. This is crucial for both experimental and clinical tissue engineering applications in order to limit the risk of uncontrolled cell growth, and potentially tumour formation.

摘要

本研究提出了一种基于 X 射线计算机断层扫描(nano-CT)的高分辨率成像技术。由于体素分辨率为 540nm,这种新技术适用于观察接种干细胞的软生物聚合物支架的 3D 形态。使用基于实验室的 nano-CT 研究了接种对比间充质干细胞(MSC)的高多孔胶原支架样本。整个样本体积在不破坏样本的情况下进行了分析。为了评估 nano-CT 的潜力,进行了与标准显微镜技术的比较测量。扫描电子显微镜(SEM)结合能量色散 X 射线分析(EDX)确定了对比剂-重金属四氧化锇的扩展和局部积累。所提出的成像技术是新颖的,因为它将有助于更好地理解细胞与三维生物材料相互作用时的行为。这对于实验和临床组织工程应用都至关重要,以限制不受控制的细胞生长和潜在的肿瘤形成的风险。

非技术描述

生物材料在组织工程中起着至关重要的作用,它们充当细胞附着、增殖的 3D 支架,并最终导致新组织形成。为了评估细胞活力,需要了解细胞在 3D 支架内的形态和增殖情况。然而,这些研究通常受到成像技术限制的影响。我们证明,基于提供 540nm 体素分辨率的高分辨率成像技术的 X 射线计算机断层扫描(nano-CT)是观察接种干细胞的软生物聚合物支架 3D 形态的合适方法。使用基于实验室的 nano-CT 研究了接种对比间充质干细胞(MSC)的高多孔胶原支架样本。整个样本体积在不破坏样本的情况下进行了分析。为了评估 nano-CT 的潜力,进行了与标准显微镜技术的比较测量。扫描电子显微镜与能量色散 X 射线分析相结合,确定了对比剂-重金属四氧化锇的扩展和局部积累。所提出的成像技术是新颖的,因为它将有助于更好地理解细胞与三维生物材料相互作用时的行为。这对于实验和临床组织工程应用都至关重要,以限制不受控制的细胞生长和潜在的肿瘤形成的风险。

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