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首页> 外文期刊>Scientific reports. >Optimization of cell-laden bioinks for 3D bioprinting and efficient infection with influenza A virus
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Optimization of cell-laden bioinks for 3D bioprinting and efficient infection with influenza A virus

机译:用流感病毒的3D生物监测和高效感染的细胞载花粮的优化

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Bioprinting is a new technology, which arranges cells with high spatial resolution, but its potential to create models for viral infection studies has not yet been fully realized. The present study describes the optimization of a bioink composition for extrusion printing. The bioinks were biophysically characterized by rheological and electron micrographic measurements. Hydrogels consisting of alginate, gelatin and Matrigel were used to provide a scaffold for a 3D arrangement of human alveolar A549 cells. A blend containing 20% Matrigel provided the optimal conditions for spatial distribution and viability of the printed cells. Infection of the 3D model with a seasonal influenza A strain resulted in widespread distribution of the virus and a clustered infection pattern that is also observed in the natural lung but not in two-dimensional (2D) cell culture, which demonstrates the advantage of 3D printed constructs over conventional culture conditions. The bioink supported viral replication and proinflammatory interferon release of the infected cells. We consider our strategy to be paradigmatic for the generation of humanized 3D tissue models by bioprinting to study infections and develop new antiviral strategies.
机译:BioPlinting是一种新技术,它安排具有高空间分辨率的细胞,但它尚未充分实现其为病毒感染研究创造模型的可能性。本研究描述了用于挤出印刷的生物型组合物的优化。生物链接是流变和电子显微测量的体性学。由藻酸盐,明胶和基质胶组成的水凝胶用于为人肺泡A549细胞的3D布置提供支架。含有20%Matrigel的共混物为印刷细胞的空间分布和活力提供了最佳条件。具有季节性流感的3D模型的感染菌株导致病毒的广泛分布和聚类感染模式在天然肺中也观察到,但不在二维(2D)细胞培养中,这表明了3D印刷的优势构建常规培养条件。生物链支持受感染细胞的病毒复制和促炎性干扰素释放。我们认为我们的战略是通过生物制品学习感染并发展新的抗病毒策略来局面的策略来制造人性化3D组织模型。

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