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Patterning Vascular Networks In Vivo for Tissue Engineering Applications

机译:用于组织工程应用的体内血管网络图案化

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摘要

The ultimate design of functionally therapeutic engineered tissues and organs will rely on our ability to engineer vasculature that can meet tissue-specific metabolic needs. We recently introduced an approach for patterning the formation of functional spatially organized vascular architectures within engineered tissues in vivo. Here, we now explore the design parameters of this approach and how they impact the vascularization of an engineered tissue construct after implantation. We used micropatterning techniques to organize endothelial cells (ECs) into geometrically defined “cords,” which in turn acted as a template after implantation for the guided formation of patterned capillaries integrated with the host tissue. We demonstrated that the diameter of the cords before implantation impacts the location and density of the resultant capillary network. Inclusion of mural cells to the vascularization response appears primarily to impact the dynamics of vascularization. We established that clinically relevant endothelial sources such as induced pluripotent stem cell-derived ECs and human microvascular endothelial cells can drive vascularization within this system. Finally, we demonstrated the ability to control the juxtaposition of parenchyma with perfused vasculature by implanting cords containing a mixture of both a parenchymal cell type (hepatocytes) and ECs. These findings define important characteristics that will ultimately impact the design of vasculature structures that meet tissue-specific needs.
机译:功能性工程改造的组织和器官的最终设计将取决于我们对血管系统进行改造的能力,以满足组织特定的代谢需求。我们最近引入了一种用于在体内工程组织内对功能性空间组织的血管结构形成进行模式化的方法。在这里,我们现在探讨这种方法的设计参数,以及它们如何影响植入后的工程组织构造的血管形成。我们使用微模式技术将内皮细胞(EC)组织成几何定义的“绳”,然后在植入后充当与宿主组织整合的带图案的毛细血管的引导形成的模板。我们证明了植入前脐带的直径会影响所得毛细管网络的位置和密度。将壁细胞包括在血管化反应中似乎主要影响血管化的动力学。我们建立了临床相关的内皮源,例如诱导多能干细胞衍生的EC和人微血管内皮细胞,可以驱动该系统内的血管形成。最后,我们证明了通过植入包含实质细胞类型(肝细胞)和EC的混合物的脐带,可以控制具有灌注血管的实质的并置。这些发现定义了重要的特征,这些特征将最终影响满足组织特定需求的脉管系统结构的设计。

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