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三维工程组织发育的结构与功能光学成像

Structural and functional optical imaging of three-dimensional engineered tissue development.

作者信息

Tan Wei, Sendemir-Urkmez Aylin, Fahrner Lester J, Jamison Russell, Leckband Deborah, Boppart Stephen A

机构信息

Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign, Urbana, Illinois, USA.

出版信息

Tissue Eng. 2004 Nov-Dec;10(11-12):1747-56. doi: 10.1089/ten.2004.10.1747.

Abstract

A significant amount of the data collected by cell biologists and tissue engineers relies on invasive imaging techniques to visualize dynamic structural and functional properties in engineered tissues. We report the use of optical coherence tomography and the comparative use of confocal microscopy to nondestructively and noninvasively monitor the structural and functional characteristics of three-dimensional engineered tissues over time. The engineered tissue model is composed of chitosan scaffolds and fibroblasts transfected with vinculin fused to green fluorescent protein. We image the developmental process of engineered tissues from changes of tissue microarchitecture to cell-matrix adhesions in three dimensions. These findings demonstrate the potential for optical coherence tomography in applications in cell and tissue biology, tissue engineering, and drug discovery.

摘要

细胞生物学家和组织工程师收集的大量数据依赖于侵入性成像技术来观察工程组织中的动态结构和功能特性。我们报告了使用光学相干断层扫描以及与共聚焦显微镜的对比使用,以随时间无损且非侵入地监测三维工程组织的结构和功能特征。该工程组织模型由壳聚糖支架和成纤维细胞组成,成纤维细胞转染了与绿色荧光蛋白融合的纽蛋白。我们从组织微结构的变化到细胞 - 基质粘附在三维空间中对工程组织的发育过程进行成像。这些发现证明了光学相干断层扫描在细胞和组织生物学、组织工程及药物发现中的应用潜力。

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