首页> 外文会议>2014 40th Annual Northeast Bioengineering Conference >Construction of 3D tissue with perfused vessels and capillaries through 3D bio-printing
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Construction of 3D tissue with perfused vessels and capillaries through 3D bio-printing

机译:通过3D生物打印构建具有灌注血管和毛细血管的3D组织

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Due to diffusion limitation, tissues thicker than several hundred micrometers have difficulties in survival and proliferation. 3D bio-printing technology enables to create fluidic channels within tissue structures for appropriate media perfusion. This solution supports viability for the simple tissue model with limited number of cells and scaffold types; however, an additional capillary network is essential for more complex and denser tissues. In this study, we developed a 3D printing method to construct larger fluidic vascular channels in mm-scale and to create adjacent capillary network through a natural maturation process, thus providing a method to connect the capillary network to the large perfused vascular channels. Our bio-printing technology has a great potential in engineering vascularized thick tissues and vascular niches, as the vascular channels are simultaneously created while cells and matrices are printed around the channels in desired 3D patterns.
机译:由于扩散的限制,厚于几百微米的组织难以存活和增殖。 3D生物打印技术能够在组织结构内创建流体通道,以进行适当的介质灌注。该解决方案支持具有有限数量的细胞和支架类型的简单组织模型的可行性。但是,对于更复杂和更密集的组织,附加的毛细管网络必不可少。在这项研究中,我们开发了一种3D打印方法来构建毫米级的较大的流体血管通道,并通过自然成熟过程创建相邻的毛细管网络,从而提供了一种将毛细管网络连接到较大的灌注血管通道的方法。我们的生物打印技术在工程化血管化的厚组织和血管壁中具有巨大的潜力,因为同时创建了血管通道,而细胞和基质则以所需的3D模式打印在通道周围。

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