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3D printed PLA-based scaffolds A versatile tool in regenerative medicine

机译:3D打印的基于PLA的支架再生医学的多功能工具

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摘要

Rapid prototyping (RP), also known as additive manufacturing (AM), has been well received and adopted in the biomedical field. The capacity of this family of techniques to fabricate customized 3D structures with complex geometries and excellent reproducibility has revolutionized implantology and regenerative medicine. In particular, nozzle-based systems allow the fabrication of high-resolution polylactic acid (PLA) structures that are of interest in regenerative medicine. These 3D structures find interesting applications in the regenerative medicine field where promising applications including biodegradable templates for tissue regeneration purposes, 3D in vitro platforms for studying cell response to different scaffolds conditions and for drug screening are considered among others. Scaffolds functionality depends not only on the fabrication technique, but also on the material used to build the 3D structure, the geometry and inner architecture of the structure, and the final surface properties. All being crucial parameters affecting scaffolds success. This Commentary emphasizes the importance of these parameters in scaffolds' fabrication and also draws the attention toward the versatility of these PLA scaffolds as a potential tool in regenerative medicine and other medical fields.RI Mateos Timoneda, Miguel Angel/D-4666-2014
机译:快速原型制作(RP)也称为增材制造(AM),已在生物医学领域广为接受并采用。该技术家族制造具有复杂几何形状和出色可重复性的定制3D结构的能力彻底改变了种植学和再生医学。特别地,基于喷嘴的系统允许制造在再生医学中感兴趣的高分辨率聚乳酸(PLA)结构。这些3D结构在再生医学领域中找到了有趣的应用,在这些领域中,有希望的应用包括用于组织再生目的的可生物降解模板,用于研究细胞对不同支架条件的反应以及用于药物筛选的3D体外平台。脚手架的功能不仅取决于制造技术,还取决于用于构建3D结构的材料,结构的几何形状和内部结构以及最终的表面特性。所有这些都是影响支架成功的关键参数。该评论强调了这些参数在脚手架制造中的重要性,并提请人们注意这些PLA脚手架在再生医学和其他医学领域中作为潜在工具的多功能性.RI Mateos Timoneda,Miguel Angel / D-4666-2014

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