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Hydrogel microfabrication technology toward three dimensional tissue engineering

机译:面向三维组织工程的水凝胶微细加工技术

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摘要

The development of biologically relevant three-dimensional (3D) tissue constructs is essential for the alternative methods of organ transplantation in regenerative medicine, as well as the development of improved drug discovery assays. Recent technological advances in hydrogel microfabrication, such as micromolding, 3D bioprinting, photolithography, and stereolithography, have led to the production of 3D tissue constructs that exhibit biological functions with precise 3D microstructures. Furthermore, microfluidics technology has enabled the development of the perfusion culture of 3D tissue constructs with vascular networks. In this review, we present these hydrogel microfabrication technologies for the in vitro reconstruction and cultivation of 3D tissues. Additionally, we discuss current challenges and future perspectives of 3D tissue engineering.
机译:生物学相关的三维(3D)组织构建体的开发对于再生医学中器官移植的替代方法以及改进的药物发现检测方法的开发至关重要。水凝胶微加工的最新技术进展,例如微成型,3D生物打印,光刻和立体光刻,已导致产生具有精确3D微结构生物学功能的3D组织构造。此外,微流体技术已经使具有血管网络的3D组织构造的灌注培养得以发展。在这篇综述中,我们介绍了用于3D组织的体外重建和培养的这些水凝胶微加工技术。此外,我们讨论了3D组织工程的当前挑战和未来前景。

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