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组织工程学的进展和 3D 结构的创新制造技术:神经退行性疾病的转化应用。

Advances in Tissue Engineering and Innovative Fabrication Techniques for 3-D-Structures: Translational Applications in Neurodegenerative Diseases.

机构信息

Department of Biomedical and Clinical Sciences "L. Sacco", University of Milan, Via Grassi 74, 20157 Milan, Italy.

Pediatric Clinical Research Center Fondazione "Romeo ed Enrica Invernizzi", University of Milano, Via Grassi 74, 20157 Milano, Italy.

出版信息

Cells. 2020 Jul 7;9(7):1636. doi: 10.3390/cells9071636.

Abstract

In the field of regenerative medicine applied to neurodegenerative diseases, one of the most important challenges is the obtainment of innovative scaffolds aimed at improving the development of new frontiers in stem-cell therapy. In recent years, additive manufacturing techniques have gained more and more relevance proving the great potential of the fabrication of precision 3-D scaffolds. In this review, recent advances in additive manufacturing techniques are presented and discussed, with an overview on stimulus-triggered approaches, such as 3-D Printing and laser-based techniques, and deposition-based approaches. Innovative 3-D bioprinting techniques, which allow the production of cell/molecule-laden scaffolds, are becoming a promising frontier in disease modelling and therapy. In this context, the specific biomaterial, stiffness, precise geometrical patterns, and structural properties are to be considered of great relevance for their subsequent translational applications. Moreover, this work reports numerous recent advances in neural diseases modelling and specifically focuses on pre-clinical and clinical translation for scaffolding technology in multiple neurodegenerative diseases.

摘要

在应用于神经退行性疾病的再生医学领域,最重要的挑战之一是获得创新的支架,以改善干细胞治疗的新前沿的发展。近年来,增材制造技术越来越受到重视,证明了制造精密 3-D 支架的巨大潜力。在这篇综述中,介绍并讨论了增材制造技术的最新进展,概述了刺激触发方法,如 3-D 打印和基于激光的技术,以及基于沉积的方法。允许生产细胞/分子负载支架的创新 3-D 生物打印技术正在成为疾病建模和治疗的一个有前途的前沿领域。在这种情况下,特定的生物材料、刚度、精确的几何图案和结构特性对于它们随后的转化应用具有重要意义。此外,本工作报告了神经疾病建模的许多最新进展,并特别关注多种神经退行性疾病中支架技术的临床前和临床转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ba3/7407518/77d2d6f41cd5/cells-09-01636-g001.jpg

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