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基于 4 臂星型 PEG 的可注射高强度水凝胶的制备及其在软骨组织工程中的应用。

Fabrication of injectable high strength hydrogel based on 4-arm star PEG for cartilage tissue engineering.

机构信息

Department of Chemistry, The Chinese University of Hong Kong, Hong Kong SAR, PR China.

Key Laboratory for Regenerative Medicine, Ministry of Education, School of Biomedical Sciences, Faculty of Medicine, The Chinese University of Hong Kong, Hong Kong SAR, PR China; School of Biomedical Sciences Core Laboratory, Institute of Stem Cell, Genomics and Translational Research, Shenzhen Research Institute, The Chinese University of Hong Kong, Shenzhen 518057, PR China.

出版信息

Biomaterials. 2017 Mar;120:11-21. doi: 10.1016/j.biomaterials.2016.12.015. Epub 2016 Dec 20.

Abstract

Hydrogels prepared from poly(ethylene glycol) (PEG) are widely applied in tissue engineering, especially those derived from a combination of functional multi-arm star PEG and linear crosslinker, with an expectation to form a structurally ideal network. However, the poor mechanical strength still renders their further applications. Here we examined the relationship between the dynamics of the pre-gel solution and the mechanical property of the resultant hydrogel in a system consisting of 4-arm star PEG functionalized with vinyl sulfone and short dithiol crosslinker. A method to prepare mechanically strong hydrogel for cartilage tissue engineering is proposed. It is found that when gelation takes place at the overlap concentration, at which a slow relaxation mode just appears in dynamic light scattering (DLS), the resultant hydrogel has a local maximum compressive strength ∼20 MPa, while still keeps ultralow mass concentration and Young's modulus. Chondrocyte-laden hydrogel constructed under this condition was transplanted into the subcutaneous pocket and an osteochondral defect model in SCID mice. The in vivo results show that chondrocytes can proliferate and maintain their phenotypes in the hydrogel, with the production of abundant extracellular matrix (ECM) components, formation of typical chondrocyte lacunae structure and increase in Young's modulus over 12 weeks, as indicated by histological, immunohistochemistry, gene expression analyses and mechanical test. Moreover, newly formed hyaline cartilage was observed to be integrated with the host articular cartilage tissue in the defects injected with chondrocytes/hydrogel constructs. The results suggest that this hydrogel is a promising candidate scaffold for cartilage tissue engineering.

摘要

由聚乙二醇(PEG)制备的水凝胶广泛应用于组织工程,特别是那些由多功能多臂星型 PEG 和线性交联剂结合衍生而来的水凝胶,期望形成结构理想的网络。然而,较差的机械强度仍然限制了它们的进一步应用。在这里,我们研究了由乙烯砜功能化的 4 臂星型 PEG 和短二硫交联剂组成的体系中预凝胶溶液的动力学与所得水凝胶机械性能之间的关系。提出了一种用于软骨组织工程的机械强度高的水凝胶制备方法。结果发现,当凝胶化发生在重叠浓度时,动态光散射(DLS)中刚好出现一个缓慢松弛模式,所得水凝胶具有约 20 MPa 的局部最大压缩强度,同时仍保持超低的质量浓度和杨氏模量。在这种条件下构建的负载软骨细胞的水凝胶被移植到皮下袋和 SCID 小鼠的骨软骨缺损模型中。体内结果表明,软骨细胞可以在水凝胶中增殖并保持其表型,大量细胞外基质(ECM)成分的产生,典型的软骨细胞陷窝结构的形成以及杨氏模量在 12 周内增加,通过组织学、免疫组织化学、基因表达分析和力学测试进行了指示。此外,还观察到注入软骨细胞/水凝胶构建物的缺陷中形成了透明软骨与宿主关节软骨组织的整合。结果表明,该水凝胶是软骨组织工程有前途的候选支架。

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