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3D Bioprinting Human Chondrocytes with Nanocellulose-Alginate Bioink for Cartilage Tissue Engineering Applications

机译:纳米纤维素-藻酸盐生物墨水对软骨组织工程应用的3D生物打印人软骨细胞

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The introduction of 3D bioprinting is expected to revolutionize the field of tissue engineering and regenerative medicine. The 3D bioprinter is able to dispense materials while moving in X, Y, and Z directions, which enables the,engineering of complex Structures from the bottom up. In this study, a. bioink that combines, the outstanding Shear thinning properties Of nanofibrillated Cellulose (NFC) With the fast cross-linking ability Of alginate was formulated for the 3D bioprinting of living soft tissue with cells. Printability was evaluated with concern: to printer parameters and shape fidelity. The shear thinning behavior of the tested bioinks enabled printing of both 2D gridlike structures as well as 3D constructs. Furthermore, anatomically shaped cartilage structures, such as a human ear and sheep meniscus, were 3D printed using MRI and CT images as blueprints. Human chondrocytes bioprinted in the noncytotoxic, nanocellulose-based bioink exhibited a cell. viability of 73% and 86% after 1 and 7 days of 3D culture, respectively. On the basis of these results, we can conclude that the nanocellulose-based bioink is a suitable hydrogel for 3D bioprinting with living cells. This study demonstrates the potential use of nanocellulose for 3D bioprinting of living tissues and organs.
机译:预计3D生物打印技术的引入将彻底改变组织工程和再生医学领域。 3D生物打印机可以在X,Y和Z方向上移动时分配材料,这使得从下到上的复杂结构设计成为可能。在这项研究中结合了生物墨水,将纳米纤维化纤维素(NFC)的出色的剪切稀化特性与藻酸盐的快速交联能力相结合,可用于细胞与活体软组织的3D生物打印。评估可印刷性时要考虑:印刷机参数和形状保真度。经过测试的生物墨水的剪切稀化行为使2D网格状结构和3D构造都可以打印。此外,使用MRI和CT图像作为蓝图,以3D方式打印了解剖形状的软骨结构(例如人耳和绵羊半月板)。在无细胞毒性的,基于纳米纤维素的生物墨水中生物打印的人软骨细胞表现出细胞。 3D培养1天和7天后,生存力分别为73%和86%。基于这些结果,我们可以得出结论,基于纳米纤维素的生物墨水是适用于活细胞进行3D生物打印的水凝胶。这项研究证明了纳米纤维素在活体组织和器官的3D生物打印中的潜在用途。

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