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β-甘油磷酸引发的用于骨组织工程的热凝胶化壳聚糖和胶原复合水凝胶。

Thermogelling chitosan and collagen composite hydrogels initiated with beta-glycerophosphate for bone tissue engineering.

机构信息

Department of Biomedical Engineering, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Biomaterials. 2010 May;31(14):3976-85. doi: 10.1016/j.biomaterials.2010.01.131. Epub 2010 Feb 18.

Abstract

Chitosan and collagen type I are naturally derived materials used as cell carriers because of their ability to mimic the extracellular environment and direct cell function. In this study beta-glycerophosphate (beta-GP), an osteogenic medium supplement and a weak base, was used to simultaneously initiate gelation of pure chitosan, pure collagen, and chitosan-collagen composite materials at physiological pH and temperature. Adult human bone marrow-derived stem cells (hBMSC) encapsulated in such hydrogels at chitosan/collagen ratios of 100/0, 65/35, 25/75, and 0/100 wt% exhibited high viability at day 1 after encapsulation, but DNA content dropped by about half over 12 days in pure chitosan materials while it increased twofold in materials containing collagen. Collagen-containing materials compacted more strongly and were significantly stiffer than pure chitosan gels. In monolayer culture, exposure of hBMSC to beta-GP resulted in decreased cell metabolic activity that varied with concentration and exposure time, but washing effectively removed excess beta-GP from hydrogels. The presence of chitosan in materials resulted in higher expression of osterix and bone sialoprotein genes in medium with and without osteogenic supplements. Chitosan also increased alkaline phosphatase activity and calcium deposition in osteogenic medium. Chitosan-collagen composite materials have potential as matrices for cell encapsulation and delivery, or as in situ gel-forming materials for tissue repair.

摘要

壳聚糖和 I 型胶原都是天然衍生材料,因其能模拟细胞外环境并指导细胞功能而被用作细胞载体。在本研究中,β-甘油磷酸(β-GP),一种成骨介质补充剂和弱碱,被用于在生理 pH 值和温度下同时引发纯壳聚糖、纯胶原和壳聚糖-胶原复合材料的凝胶化。将成骨培养基中的成年人类骨髓间充质干细胞(hBMSC)包封在壳聚糖/胶原比为 100/0、65/35、25/75 和 0/100wt%的水凝胶中,在包封后第 1 天具有高存活率,但在纯壳聚糖材料中,DNA 含量在 12 天内下降了约一半,而在含有胶原的材料中则增加了一倍。含有胶原的材料比纯壳聚糖凝胶更紧密,硬度也显著增加。在单层培养中,hBMSC 暴露于β-GP 会导致细胞代谢活性降低,其变化与浓度和暴露时间有关,但通过洗涤可有效去除水凝胶中的多余β-GP。材料中壳聚糖的存在会导致成骨培养基中骨钙素和骨涎蛋白基因的表达增加,无论是否添加成骨补充剂。壳聚糖还增加了碱性磷酸酶活性和骨形成培养基中的钙沉积。壳聚糖-胶原复合材料具有作为细胞包封和递送的基质的潜力,或作为组织修复的原位凝胶形成材料。

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