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The integration of 3-D cell printing and mesoscopic fluorescence molecular tomography of vascular constructs within thick hydrogel scaffolds

机译:厚水凝胶支架内血管构建物的3-D细胞打印和介观荧光分子层析成像技术的整合

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摘要

Developing methods that provide adequate vascular perfusion is an important step toward engineering large functional tissues. Meanwhile, an imaging modality to assess the three-dimensional (3-D) structures and functions of the vascular channels is lacking for thick matrices (>2~3 mm). Herein, we report on an original approach to construct and image 3-D dynamically perfused vascular structures in thick hydrogel scaffolds. In this work, we integrated a robotic 3-D cell printing technology with a mesoscopic fluorescence molecular tomography imaging system, and demonstrated the capability of the platform to construct perfused collagen scaffolds with endothelial lining and to image both the fluid flow and fluorescent-labeled living endothelial cells at high-frame rates, with high sensitivity and accuracy. These results establish the potential of integrating both 3-D cell printing and fluorescence mesoscopic imaging for functional and molecular studies in complex tissue-engineered tissues.
机译:开发提供充足血管灌注的方法是工程化大型功能组织的重要一步。同时,对于厚的基质(> 2〜3 ​​mm),缺乏评估血管通道的三维(3-D)结构和功能的成像方法。在本文中,我们报道了一种在厚水凝胶支架中构建和成像3-D动态灌注血管结构的原始方法。在这项工作中,我们将机器人3-D细胞打印技术与介观荧光分子层析成像系统集成在一起,并展示了该平台构建具有内皮衬层的灌注胶原蛋白支架以及对流体流动和荧光标记的生物成像的功能高帧率的内皮细胞,具有高灵敏度和准确性。这些结果建立了在复杂组织工程组织中进行功能和分子研究的整合3-D细胞打印和荧光介观成像的潜力。

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