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多孔可水解聚轮烷水凝胶的制备及其侵蚀行为。

Preparation of porous hydrolyzable polyrotaxane hydrogels and their erosion behavior.

作者信息

Ichi Takahiro, Nitta Kana, Lee Won Kyu, Ooya Tooru, Yui Nobuhiko

机构信息

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

出版信息

J Biomater Sci Polym Ed. 2003;14(6):567-79. doi: 10.1163/15685620360674254.

Abstract

We have prepared porous polyrotaxane hydrogels by using the salt leaching technique. Porous hydrogels were found to have a uniform and highly porous structure. The size of pores in each hydrogel was directly proportional to the size of the sodium chloride particle used. Structural uniformity of the hydrogels is useful not only for uniform cell distribution, but also for well-controlled material properties. Uniform pore size and distribution may ensure the diffusion of nutrients throughout of the gel and the removal of metabolic wastes from the system. The results of an erosion study in phosphate-buffered saline showed that the erosion time of porous polyrotaxane hydrogels was controlled by the poly(ethylene glycol) (PEG) content in the hydrogels. The erosion time of the porous polyrotaxane hydrogel was observed to be almost the same with the non-porous polyrotaxane hydrogel with the same PEG content. From the erosion study, the erosion time of the polyrotaxane hydrogel may be independent of its morphology. Easy control of the erosion time in the polyrotaxane hydrogels is useful in the preparation of scaffolds for tissue engineering.

摘要

我们通过盐析技术制备了多孔聚轮烷水凝胶。发现多孔水凝胶具有均匀且高度多孔的结构。每个水凝胶中的孔尺寸与所用氯化钠颗粒的尺寸直接成正比。水凝胶的结构均匀性不仅对细胞均匀分布有用,而且对材料性能的良好控制也有用。均匀的孔径和分布可确保营养物质在整个凝胶中扩散,并从系统中清除代谢废物。在磷酸盐缓冲盐水中的侵蚀研究结果表明,多孔聚轮烷水凝胶的侵蚀时间受水凝胶中聚乙二醇(PEG)含量的控制。观察到多孔聚轮烷水凝胶的侵蚀时间与具有相同PEG含量的无孔聚轮烷水凝胶几乎相同。从侵蚀研究来看,聚轮烷水凝胶的侵蚀时间可能与其形态无关。聚轮烷水凝胶中侵蚀时间的轻松控制在组织工程支架的制备中很有用。

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