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首页> 外文期刊>Journal of Applied Polymer Science >Cryostructuring of polymer systems. XXIX. Preparation and characterization of supermacroporous (spongy) agarose-based cryogels used as three-dimensional scaffolds for culturing insulin-producing cell aggregates
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Cryostructuring of polymer systems. XXIX. Preparation and characterization of supermacroporous (spongy) agarose-based cryogels used as three-dimensional scaffolds for culturing insulin-producing cell aggregates

机译:聚合物系统的低温结构化。二十九。超级巨噬(海绵状)琼脂糖基冷冻凝胶的制备和表征,用作培养胰岛素产生细胞聚集体的三维支架

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摘要

Supermacroporous (spongy) agarose-based cryogels were prepared by a two-step freezing procedure (freezing at -30 degrees C followed by incubation at a warmer subzero temperature) and subsequent thawing. The cryogels were formed as cylinders in plastic syringes and as platelike samples in flat metal molds. The characteristic feature of the gel matrices thus obtained was their heterogeneous spongelike morphology with a system of interconnected gross (50-250-mu m and larger) pores. The influence of the cryogenic processing regimes on the properties and porous morphology of such agarose cryogels was explored by flow-through analysis, optical microscopy, thermometry, and high-sensitivity differential scanning calorimetry. These biocompatible, spongelike matrices were used as three-dimensional scaffolds for culturing insulin-producing rat insulinoma cells self-assembled in multicellular spherical aggregates (pseudoislets). The cell morphology and functional activity of such pseudoislets indicate that supermacroporous agarose-based cryogels can be useful as a tool for engineering biohybrid insulin-producing tissue. (C) 2008 Wiley Periodicals, Inc.
机译:通过两步冷冻程序(在-30摄氏度下冷冻,然后在零下温暖的温度下保温)并随后解冻,制备了基于巨无数(海绵状)琼脂糖的冷冻凝胶。低温凝胶在塑料注射器中形成为圆柱体,在扁平金属模具中形成为板状样品。如此获得的凝胶基质的特征是其异质的海绵状形态,具有相互连接的毛孔(50-250微米和更大)的系统。通过流通分析,光学显微镜,测温和高灵敏度差示扫描量热法研究了低温加工方式对这类琼脂糖凝胶的性质和多孔形态的影响。这些生物相容的海绵状基质被用作三维支架,用于培养在多细胞球形聚集体(假胰岛)中自组装的产胰岛素的大鼠胰岛素瘤细胞。这种假胰岛的细胞形态和功能活性表明,基于巨巨琼脂糖的冷冻凝胶可以用作工程化生物杂交胰岛素生产组织的工具。 (C)2008 Wiley期刊公司

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