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限制区域内成纤维细胞和内皮细胞的异型相互作用。

Heterotypic interaction of fibroblasts and endothelial cells on restricted area.

机构信息

Department of Chemical and Biosystems Science and Technologies and CRISMA, University of Siena, Via A. Moro, 2, Siena 53100, Italy.

出版信息

J Biomed Mater Res A. 2010 Feb;92(2):733-45. doi: 10.1002/jbm.a.32364.

Abstract

The polysaccharide hyaluronic acid (Hyal) was photoimmobilized on glass surfaces to obtain a pattern with squares and rectangles of different dimensions and chemistry. The microstructured surfaces were characterized by Scanning Electron Microscopy (SEM), Atomic Force Microscopy (AFM), Attenuated Total Reflection Infrared Spectroscopy (ATR FT-IR), and Time-of-Flight Secondary Ion Mass Spectrometry (ToF-SIMS). Surface analysis revealed the presence of a pattern consisting of alternating glass and Hyal microstructures whose dimensions decreased from the center to the edge of the sample. The behavior of Human Coronary Artery Endothelial Cells (HCAEC) and human tumoral dermal fibroblasts (C54) was studied on these micropatterned surfaces. Neither HCAEC nor C54 adhered to the immobilized Hyal but both adapted their shape to the different sizes of the glass squares and rectangles. The number of adherent HCAEC and C54 depended on the dimensions of both the glass domains and the nuclei of the cells. Co-cultured C54 on HCAEC patterned surfaces showed a heterotypic cell-cell interaction in the same chemical and topographic domain for the first time. In comparison to other techniques for patterning two different cell types, our approach was non cytotoxic and allowed arbitrary geometric patterns to form on different biocompatible substrata.

摘要

多糖透明质酸(Hyal)被光固定在玻璃表面上,以获得具有不同尺寸和化学性质的正方形和长方形图案。使用扫描电子显微镜(SEM)、原子力显微镜(AFM)、衰减全反射红外光谱(ATR FT-IR)和飞行时间二次离子质谱(ToF-SIMS)对微结构化表面进行了表征。表面分析表明,存在一种由交替的玻璃和 Hyal 微结构组成的图案,其尺寸从样品的中心向边缘逐渐减小。在这些微图案化表面上研究了人冠状动脉内皮细胞(HCAEC)和人肿瘤性皮肤成纤维细胞(C54)的行为。既没有 HCAEC 也没有 C54 附着在固定的 Hyal 上,但它们都适应了玻璃正方形和长方形的不同大小的形状。附着的 HCAEC 和 C54 的数量取决于玻璃域和细胞核的尺寸。在 HCAEC 图案化表面上共培养的 C54 首次在同一化学和地形域中表现出异型细胞-细胞相互作用。与其他两种不同细胞类型的图案化技术相比,我们的方法非细胞毒性,并允许在不同的生物相容衬底上形成任意的几何图案。

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