首页> 美国卫生研究院文献>Tissue Engineering. Part C Methods >Polyglycolic Acid–Polylactic Acid Scaffold Response to Different Progenitor Cell In Vitro Cultures: A Demonstrative and Comparative X-Ray Synchrotron Radiation Phase-Contrast Microtomography Study
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Polyglycolic Acid–Polylactic Acid Scaffold Response to Different Progenitor Cell In Vitro Cultures: A Demonstrative and Comparative X-Ray Synchrotron Radiation Phase-Contrast Microtomography Study

机译:聚乙醇酸-聚乳酸支架对不同祖细胞的体外培养反应:示范性和比较X射线同步加速器辐射相衬显微断层扫描研究。

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摘要

Spatiotemporal interactions play important roles in tissue development and function, especially in stem cell-seeded bioscaffolds. Cells interact with the surface of bioscaffold polymers and influence material-driven control of cell differentiation. In vitro cultures of different human progenitor cells, that is, endothelial colony-forming cells (ECFCs) from a healthy control and a patient with Kaposi sarcoma (an angioproliferative disease) and human CD133+ muscle-derived stem cells (MSH 133+ cells), were seeded onto polyglycolic acid–polylactic acid scaffolds. Three-dimensional (3D) images were obtained by X-ray phase-contrast microtomography (micro-CT) and processed with the Modified Bronnikov Algorithm. The method enabled high spatial resolution detection of the 3D structural organization of cells on the bioscaffold and evaluation of the way and rate at which cells modified the construct at different time points from seeding. The different cell types displayed significant differences in the proliferation rate. In conclusion, X-ray synchrotron radiation phase-contrast micro-CT analysis proved to be a useful and sensitive tool to investigate the spatiotemporal pattern of progenitor cell organization on a bioscaffold.
机译:时空相互作用在组织发育和功能中起重要作用,尤其是在干细胞播种的生物支架中。细胞与生物支架聚合物的表面相互作用,并影响材料驱动的细胞分化控制。不同人类祖细胞的体外培养,即健康对照和患有卡波西肉瘤(血管增生性疾病)和人类CD133 +肌肉衍生干细胞(MSH 133+细胞)的患者的内皮集落形成细胞(ECFC),被接种到聚乙醇酸-聚乳酸支架上。通过X射线相衬显微断层扫描(micro-CT)获得三维(3D)图像,并用改进的Bronnikov算法进行处理。该方法能够对生物支架上细胞的3D结构组织进行高空间分辨率检测,并能够评估从接种开始的不同时间点细胞修饰构建体的方式和速率。不同的细胞类型显示出明显的增殖速率差异。总之,X射线同步加速器辐射相差显微CT分析被证明是研究生物支架上祖细胞组织的时空模式的有用和敏感的工具。

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