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Design and fabrication of micro/bio chip for in vitro fabrication of toroidal cellular aggregates

机译:用于体外制造环形细胞聚集体的微/生物芯片的设计和制造

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The unique geometry of toroidal cellular aggregate has caught much attention during last few years due to its variety of applications in tissue engineering. For example, the micro lumen of connected toroidal aggregates enables a communication channel for vascularization within complex cellular constructs. This channel significantly helps preventing the cell death, due to the lack of nutrients. Furthermore, the direct assembly of multiple toroidal aggregates results in the formation of tissue engineered blood vessel, which is highly needed for transplantation in clinical use. In this paper, we design and fabricate a micro/bio chip enabling the fabrication of toroidal cellular aggregates. The chip has a 3×3 array of deformable scaffolds. Each scaffold has a diameter of 500 μ;m, a depth of 250 μ;m, a 130 μ;m-diameter pillar located in the middle, and a 20 μ;m-thick membrane coated on the top surface. The temporary toroidal scaffold is generated by decompression before cell seeding, and maintained until the cellular structure is strong. The 1.5×105 cells of NIH3T3 were seeded in a chip, and cellular formation of toroidal shape was observed after 3 days. The retrieved aggregates have an outer diameter of about 330 μ;m, a lumen diameter of about 40 μ;m, and a thickness of about 100 μ;m. The cell viability test confirms the healthy condition of the aggregates. Moreover, the noninvasive recovery of the toroidal aggregates provided by the elastic membrane of the scaffolds suggests effectiveness of using this chip in biological applications.
机译:环形细胞聚集体的独特几何形状由于其在组织工程中的多种应用而在最近几年引起了很多关注。例如,连接的环形聚集体的微腔使复杂细胞构建体中的血管形成连通通道成为可能。由于缺乏营养,该通道可显着帮助防止细胞死亡。此外,多个环形聚集体的直接组装导致组织工程化血管的形成,这在临床用途中非常需要移植。在本文中,我们设计和制造了一种能够制造环形细胞聚集体的微/生物芯片。该芯片具有3×3的可变形支架阵列。每个支架的直径为500μm,深度为250μm,中间有一个130μm直径的柱子,并在其顶表面涂有20μm厚的膜。临时环形支架是在细胞接种之前通过减压产生的,并一直保持到细胞结构坚固为止。将NIH3T3的1.5×105个细胞接种到芯片中,并在3天后观察到环形的细胞形成。回收的聚集体的外径为约330μm,管腔直径为约40μm,厚度为约100μm。细胞活力测试证实了聚集体的健康状况。而且,由支架的弹性膜提供的环形聚集体的非侵入性恢复表明在生物应用中使用该芯片是有效的。

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