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首页> 外文期刊>Advanced Functional Materials >Ultrarapid Engineering of Biomimetic Materials and Tissues: Fabrication of Nano- and Microstructures by Plastic Compression
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Ultrarapid Engineering of Biomimetic Materials and Tissues: Fabrication of Nano- and Microstructures by Plastic Compression

机译:仿生材料和组织的超快速工程:通过塑料压缩制造纳米结构和微结构

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摘要

Currently, the concept of engineered tissues depends on the ability of cultured cells to fabricate new tissue around a scaffold. This is inherently slow and expensive and has had limited success so far. We report here a new process for the cell-independent, controlled engineering of biomimetic scaffolds by rapid removal of fluid from hyperhydrated collagen gel (or other) constructs, using plastic compression (PC). PC fabrication produces dense, cellular, mechanically strong native collagen structures with controllable nano- and microscale biomimetic structures. The huge-scale shrinkage (> 100-fold) provides the ability to introduce controllable mechanical properties, microlayering, and embossed interface topography without cell participation, but with high cell viability. Critically, this takes minutes rather than the conventional days and weeks. The rapidity and biomimetic potential of the PC fabrication process at the mesoscale opens a new route for the production of biomaterials and patient-customized tissues. It also represents a new concept in 'engineering' tissues.
机译:当前,工程组织的概念取决于培养细胞在支架周围制造新组织的能力。从本质上讲,这是缓慢且昂贵的,迄今取得的成功有限。我们在这里报告了一种新的过程,该过程通过使用塑料压缩(PC)从高水合胶原蛋白凝胶(或其他)构建体中快速去除液体,从而实现了仿生支架的独立于细胞的受控工程。 PC的制造产生具有可控的纳米和微米级仿生结构的致密,多孔,机械强度高的天然胶原蛋白结构。大规模收缩(> 100倍)提供了引入可控制的机械性能,微层化和浮雕界面形貌的能力,而无需细胞参与,但细胞活力高。至关重要的是,这只需要几分钟,而不是传统的几天和几周。中尺度PC制造工艺的快速性和仿生潜力为生物材料和患者定制组织的生产开辟了一条新途径。它还代表了“工程”组织的新概念。

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