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通过点击化学制备具有冷冻保护性能的基于葡聚糖的聚两性电解质水凝胶。

Hydrogelation of dextran-based polyampholytes with cryoprotective properties via click chemistry.

作者信息

Jain Minkle, Rajan Robin, Hyon Suong-Hyu, Matsumura Kazuaki

机构信息

School of Materials Science, Japan Advanced Institute of Science and Technology, 1-1 Asahidai, Nomi, Ishikawa 923-1292, Japan.

出版信息

Biomater Sci. 2014 Mar 3;2(3):308-317. doi: 10.1039/c3bm60261c. Epub 2013 Nov 25.

Abstract

Hydrogels are promising substrates for tissue engineering applications because of their unique biocompatibility, flexible methods of synthesis, range of constituents, and desirable physical characteristics. Cryopreservation of cell-containing constructs using such hydrogel scaffolds is in high demand in tissue-engineering applications for the production of "off-the-shelf" tissue-engineered products. However, cryopreservation of regenerated tissues including cell sheets and cell constructs is not easy compared to the preservation of cell suspensions, even when cryoprotectants are used. Here, we report a dextran-based polyampholyte hydrogel that itself shows cryoprotective properties, which could be useful for cell encapsulation and tissue engineering applications involving hydrogel formation. Amination was performed by introducing poly-l-lysine onto azide groups conjugated with dextran, and a portion of the amino groups was converted into carboxyl groups. These dextran-based polyampholytes showed good cryoprotective properties for mammalian cells, and the addition of dextran substituted with dibenzylcyclooctyne acid induced in situ hydrogel formation via Cu-free click chemistry with high biocompatibility. Cells encapsulated with such in situ hydrogels can be cryopreserved well without the addition of any cryoprotectants. Thus, these hydrogels can serve as scaffolds with cryoprotective properties that also provide structural integrity to tissue constructs.

摘要

水凝胶因其独特的生物相容性、灵活的合成方法、多样的成分和理想的物理特性,是组织工程应用中很有前景的基质。在组织工程应用中,为了生产“现货供应”的组织工程产品,对使用这种水凝胶支架的含细胞构建体进行冷冻保存的需求很高。然而,与细胞悬液的保存相比,包括细胞片和细胞构建体在内的再生组织的冷冻保存并不容易,即使使用了冷冻保护剂也是如此。在此,我们报道了一种基于葡聚糖的聚两性电解质水凝胶,其本身具有冷冻保护特性,这可能对涉及水凝胶形成的细胞封装和组织工程应用有用。通过将聚-L-赖氨酸引入与葡聚糖共轭的叠氮基团上进行胺化反应,并且一部分氨基被转化为羧基。这些基于葡聚糖的聚两性电解质对哺乳动物细胞显示出良好的冷冻保护特性,并且添加用二苄基环辛炔酸取代的葡聚糖可通过具有高生物相容性的无铜点击化学诱导原位水凝胶形成。用这种原位水凝胶封装的细胞无需添加任何冷冻保护剂就能很好地冷冻保存。因此,这些水凝胶可以作为具有冷冻保护特性的支架,同时也为组织构建体提供结构完整性。

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