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用于组织工程应用的人透明软骨和弹性软骨微组织的体外生成与表征

Ex Vivo Generation and Characterization of Human Hyaline and Elastic Cartilaginous Microtissues for Tissue Engineering Applications.

作者信息

Sánchez-Porras David, Durand-Herrera Daniel, Paes Ana B, Chato-Astrain Jesús, Verplancke Rik, Vanfleteren Jan, Sánchez-López José Darío, García-García Óscar Darío, Campos Fernando, Carriel Víctor

机构信息

Department of Histology, Tissue Engineering Group, Faculty of Medicine, University of Granada, 18016 Granada, Spain.

Instituto de Investigación Biosanitaria ibs. GRANADA, 18012 Granada, Spain.

出版信息

Biomedicines. 2021 Mar 12;9(3):292. doi: 10.3390/biomedicines9030292.

Abstract

Considering the high prevalence of cartilage-associated pathologies, low self-repair capacity and limitations of current repair techniques, tissue engineering (TE) strategies have emerged as a promising alternative in this field. Three-dimensional culture techniques have gained attention in recent years, showing their ability to provide the most biomimetic environment for the cells under culture conditions, enabling the cells to fabricate natural, 3D functional microtissues (MTs). In this sense, the aim of this study was to generate, characterize and compare scaffold-free human hyaline and elastic cartilage-derived MTs (HC-MTs and EC-MTs, respectively) under expansion (EM) and chondrogenic media (CM). MTs were generated by using agarose microchips and evaluated ex vivo for 28 days. The MTs generated were subjected to morphometric assessment and cell viability, metabolic activity and histological analyses. Results suggest that the use of CM improves the biomimicry of the MTs obtained in terms of morphology, viability and extracellular matrix (ECM) synthesis with respect to the use of EM. Moreover, the overall results indicate a faster and more sensitive response of the EC-derived cells to the use of CM as compared to HC chondrocytes. Finally, future preclinical in vivo studies are still needed to determine the potential clinical usefulness of these novel advanced therapy products.

摘要

鉴于软骨相关疾病的高发病率、自身修复能力低以及当前修复技术的局限性,组织工程(TE)策略已成为该领域一种有前景的替代方法。三维培养技术近年来受到关注,显示出其在培养条件下为细胞提供最具仿生环境的能力,使细胞能够构建天然的三维功能性微组织(MTs)。从这个意义上说,本研究的目的是在扩增培养基(EM)和成软骨培养基(CM)中生成、表征和比较无支架的人透明软骨和弹性软骨来源的微组织(分别为HC-MTs和EC-MTs)。通过使用琼脂糖微芯片生成微组织,并在体外评估28天。对生成的微组织进行形态计量评估以及细胞活力、代谢活性和组织学分析。结果表明,与使用EM相比,使用CM在形态、活力和细胞外基质(ECM)合成方面改善了所获得微组织的仿生性能。此外,总体结果表明,与HC软骨细胞相比,EC来源的细胞对CM的使用反应更快、更敏感。最后,仍需要未来的临床前体内研究来确定这些新型先进治疗产品的潜在临床实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7888/8001313/5762525f1670/biomedicines-09-00292-g001.jpg

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