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首页> 外文期刊>Artificial Organs >Sodium alginate hydrogel-based bioprinting using a novel multinozzle bioprinting system.
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Sodium alginate hydrogel-based bioprinting using a novel multinozzle bioprinting system.

机译:使用新型多喷嘴生物打印系统的基于海藻酸钠水凝胶的生物打印。

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摘要

Bioprinting is a technology for constructing bioartificial tissue or organs of complex three-dimensional (3-D) structure with high-precision spatial shape forming ability in larger scale than conventional tissue engineering methods and simultaneous multiple components composition ability. It utilizes computer-controlled 3-D printer mechanism or solid free-form fabrication technologies. In this study, sodium alginate hydrogel that can be utilized for large-dimension tissue fabrication with its fast gelation property was studied regarding material-specific printing technique and printing parameters using a multinozzle bioprinting system developed by the authors. A sodium alginate solution was prepared with a concentration of 1% (wt/vol), and 1% CaCl(2) solution was used as cross-linker for the gelation. The two materials were loaded in each of two nozzles in the multinozzle bioprinting system that has a total of four nozzles of which the injection speed can be independently controlled. A 3-D alginate structure was fabricated through layer-by-layer printing. Each layer was formed through two phases of printing, the first phase with the sodium alginate solution and the second phase with the calcium chloride solution, in identical printing pattern and speed condition. The target patterns were lattice shaped with 2-mm spacing and two different line widths. The nozzle moving speed was 6.67 mm/s, and the injection head speed was 10 microm/s. For the two different line widths, two injection needles with inner diameters of 260 and 410 microm were used. The number of layers accumulated was five in this experiment. By varying the nozzle moving speed and the injection speed, various pattern widths could be achieved. The feasibility of sodium alginate hydrogel free-form formation by alternate printing of alginate solution and sodium chloride solution was confirmed in the developed multinozzle bioprinting system.
机译:生物打印是一种用于构建具有复杂的三维(3-D)结构的生物人工组织或器官的技术,该结构具有比常规组织工程方法更大的规模的高精度空间形状形成能力,并且同时具有多种成分的合成能力。它利用计算机控制的3D打印机机制或固体自由形式的制造技术。在这项研究中,使用由作者开发的多喷嘴生物打印系统,针对材料特定的打印技术和打印参数,研究了可用于大型组织制造的海藻酸钠水凝胶,该凝胶具有快速的凝胶特性。制备浓度为1%(重量/体积)的海藻酸钠溶液,并将1%CaCl(2)溶液用作凝胶化的交联剂。两种材料分别装入多喷嘴生物打印系统的两个喷嘴中的每个喷嘴中,该系统总共有四个喷嘴,可以独立控制其注射速度。通过逐层印刷来制造3-D藻酸盐结构。通过相同的印刷图案和速度条件,通过两个印刷阶段形成每一层,第一阶段使用藻酸钠溶液,第二阶段使用氯化钙溶液。目标图案为2毫米间距和两种不同线宽的格子形状。喷嘴移动速度为6.67mm / s,注射头速度为10μm/ s。对于两种不同的线宽,使用了两个内径分别为260和410微米的注射针。在该实验中,累积的层数为五层。通过改变喷嘴的移动速度和喷射速度,可以实现各种图案宽度。在已开发的多喷嘴生物打印系统中,通过交替打印藻酸盐溶液和氯化钠溶液形成藻酸钠水凝胶自由形式的可行性得到了证实。

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