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胶原蛋白玻璃凝胶:一种可促进三维培养以重建类器官的新型支架。

Collagen vitrigel: a novel scaffold that can facilitate a three-dimensional culture for reconstructing organoids.

作者信息

Takezawa Toshiaki, Ozaki Katsuyuki, Nitani Aya, Takabayashi Chiyuki, Shimo-Oka Tadashi

机构信息

Laboratory of Animal Cell Biology, National Institute of Agrobiological Sciences, Ikenodai 2, Tsukuba, Ibaraki 305-0901, Japan.

出版信息

Cell Transplant. 2004;13(4):463-73. doi: 10.3727/000000004783983882.

Abstract

Three-dimensional reconstructed organoids in vitro are valuable for not only regenerative medicine but also drug development. However, the manipulation of conventional three-dimensional cultures is not simple. We describe a nylon membrane ring-embedded or a pressed silk sheet-embedded scaffold made of collagen "vitrigel" that can facilitate three-dimensional cultures for reconstructing an epithelial-mesenchymal model or a hard connective tissue model, respectively. Here we define vitrigel as a gel in a stable state produced by rehydration after the vitrification of a traditional hydrogel. The collagen vitrigel was successfully prepared in three steps involving a gelation process in which a cold and clear neutral salt solution containing type I collagen formed an opaque and soft gel by incubation at 37 degrees C, a vitrification process in which the gel becomes a rigid material like glass after sufficient drying out, and finally a rehydration process to convert the vitrified material into a thin and transparent gel membrane with enhanced gel strength. The framework-embedded collagen vitrigel scaffold that can be easily reversed by forceps was prepared by inserting a nylon ring or a silk sheet in the collagen solution prior to the gelation. The scaffold enabled culturing anchorage-dependent cells on both surfaces of the collagen vitrigel by the manipulation of two-dimensional cultures and consequently resulted in reconstructing a three-dimensional organoid. An intestinal epithelial-mesenchymal model was reconstructed by coculturing fibroblasts on the opposite side of monolayered Caco-2 cells on the nylon ring-embedded collagen vitrigel. Also, fibroblasts seeded on both surfaces of the silk sheet-embedded collagen vitrigel proliferated well and formed multilayers and some cells invaded into the vitrigel framed by the network of numerous strong silk filaments, suggesting a reconstruction of a hard connective tissue model. These data demonstrate that the collagen vitrigel is a valuable scaffold for tissue engineering.

摘要

体外三维重建类器官不仅对再生医学有价值,对药物开发也很有价值。然而,传统三维培养的操作并不简单。我们描述了一种由胶原蛋白“玻璃凝胶”制成的嵌入尼龙膜环或压制丝绸片的支架,它们分别有助于三维培养以重建上皮-间充质模型或硬结缔组织模型。在这里,我们将玻璃凝胶定义为传统水凝胶玻璃化后通过再水化产生的稳定状态的凝胶。胶原蛋白玻璃凝胶通过三个步骤成功制备,包括凝胶化过程,即含有I型胶原蛋白的冷而清澈的中性盐溶液在37℃孵育形成不透明且柔软的凝胶;玻璃化过程,即凝胶在充分干燥后变成像玻璃一样的刚性材料;最后是再水化过程,将玻璃化材料转化为具有增强凝胶强度的薄而透明的凝胶膜。通过在凝胶化之前将尼龙环或丝绸片插入胶原蛋白溶液中,制备了可以用镊子轻松翻转的嵌入框架的胶原蛋白玻璃凝胶支架。该支架通过二维培养的操作使贴壁依赖性细胞能够在胶原蛋白玻璃凝胶的两个表面上培养,从而导致三维类器官的重建。通过在嵌入尼龙环的胶原蛋白玻璃凝胶上单层Caco-2细胞的另一侧共培养成纤维细胞,重建了肠上皮-间充质模型。此外,接种在嵌入丝绸片的胶原蛋白玻璃凝胶两个表面上的成纤维细胞增殖良好并形成多层,一些细胞侵入由众多强丝网络构成框架的玻璃凝胶中,这表明硬结缔组织模型的重建。这些数据表明,胶原蛋白玻璃凝胶是一种有价值的组织工程支架。

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