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快速成型具有灌注功能的工程化三维组织的图案化血管网络。

Rapid casting of patterned vascular networks for perfusable engineered three-dimensional tissues.

机构信息

Department of Bioengineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

Nat Mater. 2012 Sep;11(9):768-74. doi: 10.1038/nmat3357. Epub 2012 Jul 1.

Abstract

In the absence of perfusable vascular networks, three-dimensional (3D) engineered tissues densely populated with cells quickly develop a necrotic core. Yet the lack of a general approach to rapidly construct such networks remains a major challenge for 3D tissue culture. Here, we printed rigid 3D filament networks of carbohydrate glass, and used them as a cytocompatible sacrificial template in engineered tissues containing living cells to generate cylindrical networks that could be lined with endothelial cells and perfused with blood under high-pressure pulsatile flow. Because this simple vascular casting approach allows independent control of network geometry, endothelialization and extravascular tissue, it is compatible with a wide variety of cell types, synthetic and natural extracellular matrices, and crosslinking strategies. We also demonstrated that the perfused vascular channels sustained the metabolic function of primary rat hepatocytes in engineered tissue constructs that otherwise exhibited suppressed function in their core.

摘要

在缺乏可灌注血管网络的情况下,充满细胞的三维(3D)工程组织很快会形成坏死核心。然而,缺乏快速构建这种网络的通用方法仍然是 3D 组织培养的主要挑战。在这里,我们打印了刚性的碳水化合物玻璃 3D 纤维网络,并将其用作含有活细胞的工程组织中的细胞相容的牺牲模板,以生成可被内皮细胞排列并在高压脉动流下灌注血液的圆柱形网络。由于这种简单的血管铸造方法允许独立控制网络几何形状、内皮化和血管外组织,因此它与各种细胞类型、合成和天然细胞外基质以及交联策略兼容。我们还证明,灌注的血管通道维持了工程组织构建体中原代大鼠肝细胞的代谢功能,否则这些组织的核心功能会受到抑制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7e4/3586565/1eb355d2df9f/nihms377837f1.jpg

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