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基于三维支架的体外组织工程中监测细胞命运和组织生长的方法

Methods of Monitoring Cell Fate and Tissue Growth in Three-Dimensional Scaffold-Based Strategies for In Vitro Tissue Engineering.

作者信息

Leferink Anne M, van Blitterswijk Clemens A, Moroni Lorenzo

机构信息

1 Department of Tissue Regeneration, MIRA Institute, University of Twente , Enschede, The Netherlands .

2 Department of Complex Tissue Regeneration, Maastricht University , Maastricht, The Netherlands .

出版信息

Tissue Eng Part B Rev. 2016 Aug;22(4):265-83. doi: 10.1089/ten.TEB.2015.0340. Epub 2016 Mar 3.

Abstract

In the field of tissue engineering, there is a need for methods that allow assessing the performance of tissue-engineered constructs noninvasively in vitro and in vivo. To date, histological analysis is the golden standard to retrieve information on tissue growth, cellular distribution, and cell fate on tissue-engineered constructs after in vitro cell culture or on explanted specimens after in vivo applications. Yet, many advances have been made to optimize imaging techniques for monitoring tissue-engineered constructs with a sub-mm or μm resolution. Many imaging modalities have first been developed for clinical applications, in which a high penetration depth has been often more important than lateral resolution. In this study, we have reviewed the current state of the art in several imaging approaches that have shown to be promising in monitoring cell fate and tissue growth upon in vitro culture. Depending on the aimed tissue type and scaffold properties, some imaging methods are more applicable than others. Optical methods are mostly suited for transparent materials such as hydrogels, whereas magnetic resonance-based methods are mostly applied to obtain contrast between hard and soft tissues regardless of their transparency. Overall, this review shows that the field of imaging in scaffold-based tissue engineering is developing at a fast pace and has the potential to overcome the limitations of destructive endpoint analysis.

摘要

在组织工程领域,需要能够在体外和体内对组织工程构建体的性能进行无创评估的方法。迄今为止,组织学分析是获取体外细胞培养后组织工程构建体上或体内应用后外植标本上的组织生长、细胞分布和细胞命运信息的金标准。然而,在优化成像技术以监测亚毫米或微米分辨率的组织工程构建体方面已经取得了许多进展。许多成像模态最初是为临床应用而开发的,在临床应用中,高穿透深度通常比横向分辨率更重要。在本研究中,我们回顾了几种成像方法的当前技术水平,这些方法在监测体外培养时的细胞命运和组织生长方面已显示出前景。根据目标组织类型和支架特性,一些成像方法比其他方法更适用。光学方法大多适用于透明材料,如水凝胶,而基于磁共振的方法大多用于获取硬组织和软组织之间的对比度,无论其透明度如何。总体而言,本综述表明基于支架的组织工程成像领域正在快速发展,并且有潜力克服破坏性终点分析的局限性。

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