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低修饰度透明质酸水凝胶作为软骨工程支架材料

Hyaluronan hydrogels with a low degree of modification as scaffolds for cartilage engineering.

作者信息

La Gatta Annalisa, Ricci Giulia, Stellavato Antonietta, Cammarota Marcella, Filosa Rosanna, Papa Agata, D'Agostino Antonella, Portaccio Marianna, Delfino Ines, De Rosa Mario, Schiraldi Chiara

机构信息

Department of Experimental Medicine, School of Medicine, Campania University "Luigi Vanvitelli", Via L. De Crecchio 7, 80138 Naples, Italy.

Department of Experimental Medicine, School of Medicine, Campania University "Luigi Vanvitelli", Via L. De Crecchio 7, 80138 Naples, Italy.

出版信息

Int J Biol Macromol. 2017 Oct;103:978-989. doi: 10.1016/j.ijbiomac.2017.05.091. Epub 2017 May 24.

Abstract

In the field of cartilage engineering, continuing efforts have focused on fabricating scaffolds that favor maintenance of the chondrocytic phenotype and matrix formation, in addition to providing a permeable, hydrated, microporous structure and mechanical support. The potential of hyaluronan-based hydrogels has been well established, but the ideal matrix remains to be developed. This study describes the development of hyaluronan sponges-based scaffolds obtained by lysine methyl-ester crosslinking. The reaction conditions are optimized with minimal chemical modifications to obtain materials that closely resemble elements in physiological cellular environments. Three hydrogels with different amounts of crosslinkers were produced that show morphological, water-uptake, mechanical, and stability properties comparable or superior to those of currently available hyaluronan-scaffolds, but with significantly fewer hyaluronan modifications. Primary human chondrocytes cultured with the most promising hydrogel were viable and maintained lineage identity for 3 weeks. They also secreted cartilage-specific matrix proteins. These scaffolds represent promising candidates for cartilage engineering.

摘要

在软骨工程领域,持续的努力集中在制造有利于维持软骨细胞表型和基质形成的支架,此外还要提供一个可渗透、水合的微孔结构以及机械支撑。基于透明质酸的水凝胶的潜力已得到充分证实,但理想的基质仍有待开发。本研究描述了通过赖氨酸甲酯交联获得的基于透明质酸海绵的支架的开发过程。通过最小限度的化学修饰来优化反应条件,以获得与生理细胞环境中的元素非常相似的材料。制备了三种含有不同量交联剂的水凝胶,它们在形态、吸水性、机械性能和稳定性方面与目前可用的透明质酸支架相当或更优,但透明质酸修饰显著减少。用最有前景的水凝胶培养的原代人软骨细胞具有活力,并在3周内保持谱系特征。它们还分泌软骨特异性基质蛋白。这些支架是软骨工程中有前景的候选材料。

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