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Scanning electron microscopy and energy-dispersive X-Ray microanalysis: A valuable tool for studying cell surface antigen expression on tissue-engineered scaffolds

机译:扫描电子显微镜和能量色散X射线显微分析:研究组织工程支架上细胞表面抗原表达的有价值的工具

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The influence of an acellular porcine matrix on proinflammatory activation of endothelial cells (EC) during normoxia and hypoxia was investigated by a newly established semi-quantitative electron microscopic procedure. As a model, three adhesion molecules (E-selectin, ICAM-1, and VCAM-1) were localized by silver-enhanced immunogold staining and energy dispersive X-ray microanalysis after normoxic or hypoxic pretreatment of the cells and subsequent stimulation with IL-1?. Morphology of EC grown on porcine matrix or coverslips was recorded simultaneously using secondary electron imaging. EC appeared tightly attached to the underlying surfaces with their typical cobblestone-like morphology. Statistically significant upregulations upon stimulation with IL-1? were observed in both groups for all three adhesion molecules. Hypoxic pretreatment of the specimens with subsequent reoxygenation neither induced morphological changes nor caused an upregulation of adhesion molecule expression in cells grown on acellular porcine tissue. Unexpectedly, in cells seeded onto the acellular matrix, IL-1β failed to upregulate ICAM-1 expression after a short period of hypoxia. The surface expression of VCAM-1 was also significantly lower even under normoxic conditions, which might indicate the development of functional impairment of cells in contact with acellular porcine tissue. The method presented in this study has proven valuable for the determination of antigen expression on scaffold materials in parallel with the characterization of surface morphology.
机译:通过新建立的半定量电子显微镜方法研究了脱细胞猪基质对常氧和低氧期间内皮细胞(EC)促炎激活的影响。作为模型,在对细胞进行常氧或低氧预处理并随后用IL-刺激后,通过银增强免疫金染色和能量分散X射线显微分析对三个粘附分子(E-选择素,ICAM-1和VCAM-1)进行了定位。 1?使用二次电子成像同时记录在猪基质或盖玻片上生长的EC的形态。 EC以其典型的鹅卵石状形态紧紧地附着在下面的表面上。在用IL-1刺激后,统计学上显着的上调?在两组中观察到所有三个粘附分子。样品的低氧预处理和随后的再氧合既不会引起形态学变化,也不会引起在无细胞猪组织上生长的细胞中粘附分子表达的上调。出乎意料的是,短时间缺氧后,在植入无细胞基质的细胞中,IL-1β未能上调ICAM-1表达。即使在常氧条件下,VCAM-1的表面表达也显着降低,这可能表明与无细胞猪组织接触的细胞功能受损。这项研究中提出的方法已被证明对于确定支架材料上的抗原表达与表面形态表征并行具有重要价值。

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