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Fabrication of 3D microstructured scaffolds by direct laser writing in pre-polymers and their performance in cartilage regeneration in vitro and in vivo

机译:通过直接在预聚物中激光书写来制备3D微结构支架及其在体内和体外软骨再生中的性能

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Direct laser writing in pre-polymers (DLW-PP) employing ultrashort pulses is a well-established technique for creating 3D microstructured scaffolds for in vitro tissue-engineering studies [1]. This is predetermined by the wide range of processable materials, full control of the 3D microarchitecture, scaling flexibility, and other characteristics. Despite all that, demonstrations of in vivo capabilities of DLW-PP manufactured scaffolds are still very scarce [2, 3]. This is mainly due to the point-by-point fabrication nature resulting in a relatively long manufacturing time of one structure, specifically if millimeter-sized objects which could be conveniently handled by a surgeon are needed. However, a growing interest in the development of this technique, especially for tissue engineering applications, suggests that it might one day become a commonly used method for the creation of patient-specific macro-scale microstructured scaffolds.
机译:使用超短脉冲在预聚物(DLW-PP)中直接进行激光书写是一种成熟的技术,可用于创建3D微结构支架,用于体外组织工程研究[1]。这是由广泛的可处理材料,对3D微体系结构的完全控制,缩放灵活性和其他特征预先确定的。尽管如此,关于DLW-PP制成的支架的体内功能的证明仍然很少[2,3]。这主要是由于逐点制造的性质导致一个结构的制造时间相对较长,特别是如果需要可以由外科医生方便地处理的毫米大小的物体。然而,对这种技术的发展,特别是对于组织工程应用的兴趣日益增长,表明它有一天可能成为创建患者特定的宏观微结构支架的常用方法。

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