Gyenes Tamás, Torma Viktória, Gyarmati Benjámin, Zrínyi Miklós
Department of Physical Chemistry and Material Sciences, Budapest University of Technology and Economics, Laboratory of Soft Matters, H-1521 Budapest, Hungary.
Acta Biomater. 2008 May;4(3):733-44. doi: 10.1016/j.actbio.2007.12.004. Epub 2008 Jan 1.
Chemically cross-linked poly(aspartic acid) (PASP) gels were prepared by the hydrolysis of poly(succinimide) (PSI). The latter was prepared by thermal polycondensation of aspartic acid. The PSI chains were cross-linked by natural amines and amino acid derivatives such as putrescin, spermine, spermidine, lysine and cystamine to obtain biodegradable, biocompatible, amino acid-based hydrogels. The volume of the synthesized unhydrolyzed PSI gels changes abruptly at a well-defined pH that results in ring opening, while the hydrolyzed gels show a volume phase transition around the pK values of PASP. The unidirectional stress-strain behavior of the gels as well as the dependence of equilibrium swelling degree on the pH was carefully studied and the most important network parameters were determined by a modified version of the Brannon-Peppas-Peppas theory.
通过聚琥珀酰亚胺(PSI)的水解制备了化学交联的聚天冬氨酸(PASP)凝胶。后者由天冬氨酸热缩聚制备。PSI链通过天然胺和氨基酸衍生物(如腐胺、精胺、亚精胺、赖氨酸和胱胺)交联,以获得可生物降解、生物相容的氨基酸基水凝胶。合成的未水解PSI凝胶的体积在明确的pH值下会突然变化,导致开环,而水解凝胶在PASP的pK值附近显示体积相变。仔细研究了凝胶的单向应力-应变行为以及平衡溶胀度对pH的依赖性,并通过Brannon-Peppas-Peppas理论的改进版本确定了最重要的网络参数。