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超大孔化学交联聚(天冬氨酸)水凝胶。

Supermacroporous chemically cross-linked poly(aspartic acid) hydrogels.

机构信息

Department of Physical Chemistry and Materials Science, Budapest University of Technology and Economics, Budafoki út 8., H-1111 Budapest, Hungary.

Institute of Biophysics, Biological Research Centre of the Hungarian Academy of Sciences, Temesvári krt. 62, H-6726 Szeged, Hungary.

出版信息

Acta Biomater. 2015 Aug;22:32-8. doi: 10.1016/j.actbio.2015.04.033. Epub 2015 Apr 25.

Abstract

Chemically cross-linked poly(aspartic acid) (PASP) gels were prepared by a solid-liquid phase separation technique, cryogelation, to achieve a supermacroporous interconnected pore structure. The precursor polymer of PASP, polysuccinimide (PSI) was cross-linked below the freezing point of the solvent and the forming crystals acted as templates for the pores. Dimethyl sulfoxide was chosen as solvent instead of the more commonly used water. Thus larger temperatures could be utilized for the preparation and the drawback of increase in specific volume of water upon freezing could be eliminated. The morphology of the hydrogels was characterized by scanning electron microscopy and interconnectivity of the pores was proven by the small flow resistance of the gels. Compression tests also confirmed the interconnected porous structure and the complete re-swelling and shape recovery of the supermacroporous PASP hydrogels. The prepared hydrogels are of interest for several biomedical applications as scaffolding materials because of their cytocompatibility, controllable morphology and pH-responsive character.

摘要

通过固-液相分离技术(冻胶化)制备了化学交联的聚天冬氨酸(PASP)凝胶,以实现超大连通多孔结构。PASP 的前体聚合物聚琥珀酰亚胺(PSI)在溶剂的冰点以下交联,形成的晶体充当孔的模板。选择二甲基亚砜作为溶剂,而不是更常用的水。这样可以利用更大的温度来进行制备,并且可以消除水在冻结时比容增加的缺点。通过扫描电子显微镜对水凝胶的形态进行了表征,并且通过凝胶的小流动阻力证明了孔的连通性。压缩测试还证实了超大连通多孔 PASP 水凝胶的多孔结构和完全的再溶胀和形状恢复。由于其细胞相容性、可控制的形态和 pH 响应特性,所制备的水凝胶作为支架材料在几种生物医学应用中具有吸引力。

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