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首页> 外文期刊>Journal of materials science >Towards ready-to-use 3-D scaffolds for regenerative medicine: adhesion-based cryopreservation of human mesenchymal stem cells attached and spread within alginate-gelatin cryogel scaffolds
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Towards ready-to-use 3-D scaffolds for regenerative medicine: adhesion-based cryopreservation of human mesenchymal stem cells attached and spread within alginate-gelatin cryogel scaffolds

机译:面向现成的3D支架用于再生医学:附着和扩散在藻酸盐-明胶冷冻凝胶支架中的人间充质干细胞的基于粘附的冷冻保存

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摘要

Cultivation and proliferation of stem cells in three-dimensional (3-D) scaffolds is a promising strategy for regenerative medicine. Mesenchymal stem cells with their potential to differentiate in various cell types, cryopreserved adhesion-based in fabricated scaffolds of biocompatible materials can serve as ready-to-use transplantation units for tissue repair, where pores allow a direct contact of graft cells and recipient tissue without further preparation. A successful cryopreservation of adherent cells depends on attachment and spreading processes that start directly after cell seeding. Here, we analyzed different cultivation times (0.5, 2, 24 h) prior to adhesion-based cryopreservation of human mesenchymal stem cells within alginate-gelatin cryogel scaffolds and its influence on cell viability, recovery and functionality at recovery times (0, 24, 48 h) in comparison to non-frozen control. Analysis with confocal laser scanning microscopy and scanning electron microscopy indicated that 2 h cultivation time enhanced cryopreservation success: cell number, visual cell contacts, membrane integrity, motility, as well as spreading were comparable to control. In contrast, cell number by short cultivation time (0.5 h) reduced dramatically after thawing and expanded cultivation time (24 h) decreased cell viability. Our results provide necessary information to enhance the production and to store ready-to-use transplantation units for application in bone, cartilage or skin regenerative therapy.
机译:三维(3-D)支架中干细胞的培养和增殖是再生医学的有前途的策略。间充质干细胞具有在多种细胞类型中分化的潜能,在生物相容性材料制成的支架中基于冷冻保存的粘附力,可以作为组织修复的即用移植单位,其中的孔可以使移植细胞与受体组织直接接触而无需进一步的准备。贴壁细胞的成功冷冻保存取决于细胞接种后直接开始的附着和扩散过程。在这里,我们分析了藻酸盐-明胶冷冻凝胶支架中人间充质干细胞基于粘附的冷冻保存之前的不同培养时间(0.5、2、24小时),以及其对恢复时间(0、24,与非冷冻对照相比48 h)。共聚焦激光扫描显微镜和扫描电子显微镜的分析表明,2小时的培养时间可提高冷冻保存的成功率:细胞数量,可视细胞接触,膜完整性,运动性和扩散与对照组相当。相反,解冻后短培养时间(0.5 h)引起的细胞数目急剧减少,而延长培养时间(24 h)则降低细胞活力。我们的结果提供了必要的信息,以提高产量并存储可用于骨骼,软骨或皮肤再生治疗的即用型移植单元。

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  • 来源
    《Journal of materials science 》 |2014年第3期| 857-871| 共15页
  • 作者单位

    Department for Biophysics and Cryotechnology, Fraunhofer Institute for Biomedical Engineering, Ensheimer Str. 48, 66386 St. Ingbert, Germany;

    Department for Biophysics and Cryotechnology, Fraunhofer Institute for Biomedical Engineering, Ensheimer Str. 48, 66386 St. Ingbert, Germany;

    Institute for Problems of Cryobiology and Cryomedicine NAS Ukraine, 23 PeryaslavskayaStr, Kharkiv 61015, Ukraine;

    A.N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, Vavilov Street, 28, 119991 Moscow, Russian Federation;

    A.N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, Vavilov Street, 28, 119991 Moscow, Russian Federation;

    Department for Biophysics and Cryotechnology, Fraunhofer Institute for Biomedical Engineering, Ensheimer Str. 48, 66386 St. Ingbert, Germany,Chair of Molecular and Cellular Biotechnology/Nanotechnology, Saarland University, PO Box 151150, 66041 Saarbruecken, Germany;

    Institute for Problems of Cryobiology and Cryomedicine NAS Ukraine, 23 PeryaslavskayaStr, Kharkiv 61015, Ukraine;

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