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基于富马酸酯的可生物降解多孔高内相乳液作为组织工程支架

Biodegradable fumarate-based polyHIPEs as tissue engineering scaffolds.

作者信息

Christenson Elizabeth M, Soofi Wafa, Holm Jennifer L, Cameron Neil R, Mikos Antonios G

机构信息

Department of Bioengineering, Rice University, Houston, Texas 77251-1892, USA.

出版信息

Biomacromolecules. 2007 Dec;8(12):3806-14. doi: 10.1021/bm7007235. Epub 2007 Nov 3.

Abstract

PolyHIPEs show great promise as tissue engineering scaffolds due to the tremendous control of pore size and interconnectivity afforded by this technique. Highly porous, fully biodegradable scaffolds were prepared by polymerization of the continuous phase of high internal phase emulsions (HIPEs) containing the macromer poly(propylene fumarate) (PPF) and the cross-linker propylene fumarate diacrylate (PFDA). Toluene was used as a diluent to reduce the viscosity of the organic phase to enable HIPE formation. A range of polyHIPE scaffolds of different pore sizes and morphologies were generated by varying the diluent concentration (40-60 wt %), cross-linker concentration (25-75 wt %), and macromer molecular weight ( M n = 800-1000 g/mol). Although some formulations resulted in macroporous monoliths (pore diameter >500 microm), the majority of the polyHIPEs studied were rigid, microporous monoliths with average pore diameters in the range 10-300 microm. Gravimetric analysis confirmed the porosity of the microporous monoliths as 80-89% with most scaffolds above 84%. These studies demonstrate that emulsion templating can be used to generate rigid, biodegradable scaffolds with highly interconnected pores suitable for tissue engineering scaffolds.

摘要

由于该技术能对孔径和连通性进行极大控制,聚高内相乳液作为组织工程支架展现出巨大潜力。通过聚合含有大分子单体聚富马酸丙二醇酯(PPF)和交联剂富马酸二丙烯酯(PFDA)的高内相乳液(HIPEs)的连续相,制备了高度多孔、完全可生物降解的支架。使用甲苯作为稀释剂以降低有机相的粘度,从而形成HIPE。通过改变稀释剂浓度(40 - 60 wt%)、交联剂浓度(25 - 75 wt%)和大分子单体分子量(M n = 800 - 1000 g/mol),生成了一系列不同孔径和形态的聚高内相乳液支架。尽管一些配方得到了大孔整体材料(孔径>500微米),但所研究的大多数聚高内相乳液是刚性的微孔整体材料,平均孔径在10 - 300微米范围内。重量分析证实微孔整体材料的孔隙率为80 - 89%,大多数支架孔隙率高于84%。这些研究表明,乳液模板法可用于制备具有高度互连孔隙的刚性、可生物降解支架,适用于组织工程支架。

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