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Controlled Positioning of Cells in Biomaterials—Approaches Towards 3D Tissue Printing

机译:生物材料中细胞的受控定位-走向3D组织打印的方法

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Current tissue engineering techniques have various drawbacks: they often incorporate uncontrolled and imprecise scaffold geometries, whereas the current conventional cell seeding techniques result mostly in random cell placement rather than uniform cell distribution. For the successful reconstruction of deficient tissue, new material engineering approaches have to be considered to overcome current limitations. An emerging method to produce complex biological products including cells or extracellular matrices in a controlled manner is a process called bioprinting or biofabrication, which effectively uses principles of rapid prototyping combined with cell-loaded biomaterials, typically hydrogels. 3D tissue printing is an approach to manufacture functional tissue layer-by-layer that could be transplanted in vivo after production. This method is especially advantageous for stem cells since a controlled environment can be created to influence cell growth and differentiation. Using printed tissue for biotechnological and pharmacological needs like in vitro drug-testing may lead to a revolution in the pharmaceutical industry since animal models could be partially replaced by biofabricated tissues mimicking human physiology and pathology. This would not only be a major advancement concerning rising ethical issues but would also have a measureable impact on economical aspects in this industry of today, where animal studies are very labor-intensive and therefore costly. In this review, current controlled material and cell positioning techniques are introduced highlighting approaches towards 3D tissue printing.
机译:当前的组织工程技术具有各种缺点:它们经常并入不受控制和不精确的支架几何形状,而当前的常规细胞接种技术主要导致随机的细胞放置而不是均匀的细胞分布。为了成功地重建缺陷组织,必须考虑采用新的材料工程方法来克服当前的局限性。一种以受控方式生产包括细胞或细胞外基质在内的复杂生物产品的新兴方法是一种称为生物印刷或生物制造的方法,该方法有效地利用了快速原型化原理并结合了细胞负载的生物材料(通常是水凝胶)。 3D组织打印是一种逐层制造功能性组织的方法,该方法可以在生产后在体内进行移植。该方法对干细胞特别有利,因为可以创建受控的环境来影响细胞的生长和分化。将打印的组织用于生物技术和药理学需求(例如体外药物测试)可能会导致制药行业的一场革命,因为动物模型可能会被模仿人体生理学和病理学的生物制造组织部分取代。这不仅将是有关不断上升的道德问题的重大进步,而且还将对当今这个行业的经济方面产生可观的影响,在这个行业中,动物研究是劳动密集型的,因此成本很高。在这篇评论中,介绍了当前受控的材料和细胞定位技术,重点介绍了3D组织打印的方法。

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