首页> 美国卫生研究院文献>PLoS Clinical Trials >Reproducible Construction of Surface Tension-Mediated Honeycomb Concave Microwell Arrays for Engineering of 3D Microtissues with Minimal Cell Loss
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Reproducible Construction of Surface Tension-Mediated Honeycomb Concave Microwell Arrays for Engineering of 3D Microtissues with Minimal Cell Loss

机译:表面张力介导的蜂窝凹面微孔阵列的可重现构建,可用于工程化具有最小细胞损失的3D微组织

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摘要

The creation of engineered 3D microtissues has attracted prodigious interest because of the fact that this microtissue structure is able to mimic in vivo environments. Such microtissues can be applied extensively in the fields of regenerative medicine and tissue engineering, as well as in drug and toxicity screening. Here, we develop a novel method of fabricating a large number of dense honeycomb concave microwells via surface tension-mediated self-construction. More specifically, in order to control the curvature and shape of the concavity in a precise and reproducible manner, a custom-made jig system was designed and fabricated. By applying a pre-set force using the jig system, the shape of the honeycomb concave well was precisely and uniformly controlled, despite the fact that wells were densely packed. The thin wall between the honeycomb wells enables the minimization of cell loss during the cell-seeding process. To evaluate the performance of the honeycomb microwell array, rat hepatocytes were seeded, and spheroids were successfully formed with uniform shape and size. Liver-specific functions such as albumin secretion and cytochrome P450 were subsequently analyzed. The proposed method of fabricating honeycomb concave wells is cost-effective, simple, and reproducible. The honeycomb well array can produce multiple spheroids with minimal cell loss, and can lead to significant contributions in tissue engineering and organ regeneration.
机译:由于这种微组织结构能够模仿体内环境,因此工程化3D微组织的创建引起了极大的兴趣。这样的微组织可广泛应用于再生医学和组织工程领域,以及药物和毒性筛选领域。在这里,我们开发了一种通过表面张力介导的自构结构制造大量致密蜂窝状凹形微孔的新方法。更具体地,为了以精确且可再现的方式控制凹面的曲率和形状,设计和制造了定制的夹具系统。通过使用夹具系统施加预定的力,尽管孔密实地填充,但蜂窝状凹孔的形状被精确且均匀地控制。蜂窝孔之间的薄壁使细胞播种过程中的细胞损失最小化。为了评估蜂窝微孔阵列的性能,将大鼠肝细胞播种,并成功地形成了形状和大小均一的球体。随后分析了肝特异性功能,例如白蛋白分泌和细胞色素P450。所提出的蜂窝状凹孔的制造方法是成本有效,简单且可重复的。蜂窝孔阵列可以产生具有最小细胞损失的多个球体,并且可以在组织工程和器官再生中做出重要贡献。

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