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用于生成可行的组织工程构建体的三维生物组装工具。

Three-dimensional bioassembly tool for generating viable tissue-engineered constructs.

作者信息

Smith Cynthia M, Stone Alice L, Parkhill Robert L, Stewart Robert L, Simpkins Mark W, Kachurin Anatoly M, Warren William L, Williams Stuart K

机构信息

Division of Biomedical Engineering, University of Arizona, Tucson, Arizona 85724-5084, USA.

出版信息

Tissue Eng. 2004 Sep-Oct;10(9-10):1566-76. doi: 10.1089/ten.2004.10.1566.

Abstract

The primary emphasis of tissue engineering is the design and fabrication of constructs for the replacement of nonfunctional tissue. Because tissue represents a highly organized interplay of cells and extracellular matrix, the fabrication of replacement tissue should mimic this spatial organization. This report details studies evaluating the use of a three-dimensional, direct-write cell deposition system to construct spatially organized viable structures. A direct-write bioassembly system was designed and fabricated to permit layer-by-layer placement of cells and extracellular matrix on a variety of material substrates. Human fibroblasts suspended in polyoxyethylene/polyoxypropylene were coextruded through a positive displacement pen delivery onto a polystyrene slide. After deposition, approximately 60% of the fibroblasts remained viable. Bovine aortic endothelial cells (BAECs) suspended in soluble collagen type I were coextruded via microdispense pen delivery onto the hydrophilic side of flat sheets of polyethylene terephthalate. After deposition with a 25-gauge tip, approximately 86% of the BAECs were viable. When maintained in culture for up to 35 days, the constructs remained viable and maintained their original spatial organization. These results indicate the potential for utilizing a direct-write, three-dimensional bioassembly tool to create viable, patterned tissue-engineered constructs.

摘要

组织工程的主要重点是设计和制造用于替代无功能组织的构建体。由于组织代表细胞与细胞外基质之间高度有序的相互作用,因此替代组织的制造应模仿这种空间组织。本报告详细介绍了评估使用三维直写细胞沉积系统构建空间有序的活结构的研究。设计并制造了一种直写生物组装系统,以允许在各种材料基板上逐层放置细胞和细胞外基质。将悬浮在聚氧乙烯/聚氧丙烯中的人成纤维细胞通过正位移笔式输送共挤出到聚苯乙烯载玻片上。沉积后,约60%的成纤维细胞仍保持活力。将悬浮在I型可溶性胶原蛋白中的牛主动脉内皮细胞(BAECs)通过微量分配笔式输送共挤出到聚对苯二甲酸乙二酯平板的亲水性一侧。用25号针头沉积后,约86%的BAECs仍保持活力。当在培养中维持长达35天时,构建体仍保持活力并维持其原始空间组织。这些结果表明利用直写三维生物组装工具创建有活力的、有图案的组织工程构建体的潜力。

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