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评价一种基于 mPEG-聚酯的水凝胶作为软骨细胞载体。

Evaluation of a mPEG-polyester-based hydrogel as cell carrier for chondrocytes.

机构信息

Department of Chemical Engineering, National Tsing Hua University, Hsinchu 30013, Taiwan, ROC.

出版信息

J Biomed Mater Res A. 2013 Nov;101(11):3311-9. doi: 10.1002/jbm.a.34632. Epub 2013 Aug 27.

Abstract

Temperature-sensitive hydrogels are attractive alternatives to porous cell-seeded scaffolds and is minimally invasive through simple injection and in situ gelling. In this study, we compared the performance of two types of temperature-sensitive hydrogels on chondrocytes encapsulation for the use of tissue engineering of cartilage. The two hydrogels are composed of methoxy poly(ethylene glycol)- poly(lactic-co-valerolactone) (mPEG-PVLA), and methoxy poly(ethylene glycol)-poly(lactic- co-glycolide) (mPEG-PLGA). Osmolarity and pH were optimized through the manipulation of polymer concentration and dispersion medium. Chondrocytes proliferation in mPEG-PVLA hydrogels was observed as well as accumulation of GAGs and collagen. On the other hand, chondrocytes encapsulated in mPEG-PLGA hydrogels showed low viability and chondrogenesis. Also, mPEG-PVLA hydrogel, which is more hydrophobic, retained physical integrity after 14 days while mPEG-PLGA hydrogel underwent full degradation due to faster hydrolysis rate and more pronounced acidic self-catalyzed degradation. The mPEG-PVLA hydrogel can be furthered tuned by manipulation of molecular weights to obtain hydrogels with different swelling and degradation characteristics, which may be useful as producing a selection of hydrogels compatible with different cell types. Taken together, these results demonstrate that mPEG-PVLA hydrogels are promising to serve as three-dimensional cell carriers for chondrocytes and potentially applicable in cartilage tissue engineering.

摘要

温度敏感水凝胶是多孔细胞接种支架的有吸引力的替代品,通过简单的注射和原位凝胶化实现微创。在这项研究中,我们比较了两种类型的温度敏感水凝胶在软骨细胞包封方面的性能,用于软骨组织工程。这两种水凝胶由甲氧基聚乙二醇-聚(乳酸-共-缬草酸)(mPEG-PVLA)和甲氧基聚乙二醇-聚(乳酸-共-乙交酯)(mPEG-PLGA)组成。通过操纵聚合物浓度和分散介质来优化渗透压和 pH 值。观察到 mPEG-PVLA 水凝胶中软骨细胞的增殖以及 GAGs 和胶原蛋白的积累。另一方面,包封在 mPEG-PLGA 水凝胶中的软骨细胞表现出低活力和软骨形成。此外,由于水解速率更快和更明显的酸性自催化降解,更疏水的 mPEG-PVLA 水凝胶在 14 天后仍保持物理完整性,而 mPEG-PLGA 水凝胶则完全降解。mPEG-PVLA 水凝胶可以通过操纵分子量进一步进行调整,以获得具有不同溶胀和降解特性的水凝胶,这可能有助于生产与不同细胞类型兼容的一系列水凝胶。总之,这些结果表明,mPEG-PVLA 水凝胶有望作为软骨细胞的三维细胞载体,并且可能适用于软骨组织工程。

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