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A model of guided cell self-organization for rapid and spontaneous formation of functional vessels

机译:引导细胞自组织的模型,可快速自发形成功能性血管

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Most achievements to engineer blood vessels are based on multiple-step manipulations such as manual sheet rolling or sequential cell seeding followed by scaffold degradation. Here, we propose a one-step strategy using a microfluidic coextrusion device to produce mature functional blood vessels. A hollow alginate hydrogel tube is internally coated with extracellular matrix to direct the self-assembly of a mixture of endothelial cells (ECs) and smooth muscle cells (SMCs). The resulting vascular structure has the correct configuration of lumen, an inner lining of ECs, and outer sheath of SMCs. These “vesseloids” reach homeostasis within a day and exhibit the following properties expected for functional vessels (i) quiescence, (ii) perfusability, and (iii) contractility in response to vasoconstrictor agents. Together, these findings provide an original and simple strategy to generate functional artificial vessels and pave the way for further developments in vascular graft and tissue engineering and for deciphering the angiogenesis process.
机译:改造血管的大多数成就都基于多步操作,例如手动滚动或先后顺序进行细胞接种,然后进行支架降解。在这里,我们提出了一种使用微流体共挤出设备生产成熟功能性血管的一步策略。空心藻酸盐水凝胶管内部涂有细胞外基质,以指导内皮细胞(EC)和平滑肌细胞(SMC)混合物的自组装。产生的血管结构具有正确的管腔配置,EC的内衬和SMC的外鞘。这些“类囊胶体”在一天之内达到体内平衡,并显示出预期的以下功能:功能性血管(i)静止,(ii)灌注性和(iii)对血管收缩剂的反应收缩力。总之,这些发现提供了一种原始且简单的策略来生成功能性人造血管,并为血管移植和组织工程的进一步发展以及破译血管生成过程铺平道路。

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