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Easy and affordable method for rapid prototyping of tissue models in vitro using three-dimensional bioprinting

机译:使用三维生物印刷机在体外快速原型设计的简单实惠的方法

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摘要

In vitro tissue model systems have attracted considerable attention in drug discovery owing to their ability to facilitate identification of promising compounds in the near-physiological environment during drug development. Additive manufacturing helps in mimicking complex geometries including the microarchitecture of the body tissues. Exploiting this emerging technology, the present study demonstrates a simple and inexpensive approach for the fabrication of three-dimensional (3D) in vitro tissue models using a custom-designed automated bioprinting system. The bioink mixture comprised of a novel optimized composition of widely known biomaterials including gelatin, alginate and hydrolyzed type-1 collagen to embed and print the C2C12 myoblast cells. The structural stability and integrity of the cells-laden constructs were found to be significantly consistent for more than 14 days in culture. Rheological and mechanical properties of the bioink blend were characterized to assess its efficacy for the fabrication of cells-laden tissue constructs. Scanning electron micrographs were acquired to analyze porosity of the scaffold for cellular growth and proliferation. The viability of cells embedded within the hydrogel was 80%, 3 h postprinting. We anticipate that the fabricated tissues will serve as an alternative model for in vitro toxicological and drug response studies. (C) 2017 Nalecz Institute of Biocybernetics and Biomedical Engineering of the Polish Academy of Sciences. Published by Elsevier B.V. All rights reserved.
机译:由于能够在药物发育过程中促进近乎生理环境中有希望的化合物的能力,体外组织模型系统引起了可观的注意力。添加剂制造有助于模仿包含身体组织的微体系结构的复杂几何形状。利用这种新兴技术,本研究表明了一种使用定制设计的自动生物印刷系统制造三维(3D)体外组织模型的简单且廉价的方法。生物酸性混合物由新型已知生物材料的优化组合物组成,包括明胶,藻酸盐和水解的1型胶原蛋白以嵌入和打印C2C12肌细胞细胞。发现细胞的结构稳定性和完整性在培养中的14天以上是显着的一致。生物旋气共混物的流变和力学性质的特征是评估其对饲养细胞组织构建体的制备的功效。获得扫描电子显微照片以分析支架的孔隙率,用于细胞生长和增殖。嵌入水凝胶内的细胞的可行性是& 80%,张平3小时。我们预期制造的组织将作为体外毒理学和药物反应研究的替代模型。 (c)2017年纳雷斯州纳雷斯省生物庭院研究所和波兰科学院生物医学工程。 elsevier b.v出版。保留所有权利。

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