用于制造人造毛细血管的高度可控三维鞘流装置

J. Ito, R. Sekine, D. Yoon, Y. Nakamura, H. Oku, H. Nansai, T. Chikasawa, T. Goto, T. Sekiguchi, N. Takeda, S. Shoji
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引用次数: 0

摘要

本文报道了一种用于制造人造毛细血管的高度可控的三维(3D)鞘流装置。采用三步鞘注射式三维流动装置,通过简单的流量控制实现芯鞘结构的大范围变化,通过对准和培养血管内皮细胞,制备了适用于长微血管的双层同轴芯鞘微纤维。结果,经过3天的培养,成功地形成了一根长约3厘米,中间有血管内皮细胞相互融合的微纤维。
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Highly controllable three-dimensional sheath flow device for fabrication of artificial capillary vessels
This paper reports a highly controllable three-dimensional (3D) sheath flow device for fabrication of artificial capillary vessels. Three step sheath injection type 3D flow device which realizes wide core and sheath structure variations by simply flow rate control was applied to fabricate double-layer coaxial Core-Sheath microfibers applicable for long micro capillary vessels by aligning and cultivating vascular endothelial cells. As a result, about a 3-centimeter-long microfiber which has the vascular endothelial cells fused mutually in the center was successfully formed after three days culture.
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