Huang Lihong, Zhuang Xiuli, Hu Jun, Lang Le, Zhang Peibiao, Wang Yu, Chen Xuesi, Wei Yen, Jing Xiabin
State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, China.
Biomacromolecules. 2008 Mar;9(3):850-8. doi: 10.1021/bm7011828. Epub 2008 Feb 9.
To obtain one biodegradable and electroactive polymer as the scaffold for tissue engineering, the multiblock copolymer PLAAP was designed and synthesized with the condensation polymerization of hydroxyl-capped poly( l-lactide) (PLA) and carboxyl-capped aniline pentamer (AP). The PLAAP copolymer exhibited excellent electroactivity, solubility, and biodegradability. At the same time, as one scaffold material, PLAAP copolymer possesses certain mechanical properties with the tensile strength of 3 MPa, tensile Young 's modulus of 32 MPa, and breaking elongation rate of 95%. We systematically studied the compatibility of PLAAP copolymer in vitro and proved that the electroactive PLAAP copolymer was innocuous, biocompatible, and helpful for the adhesion and proliferation of rat C6 cells. Moreover, the PLAAP copolymer stimulated by electrical signals was demonstrated as accelerating the differentiation of rat neuronal pheochromocytoma PC-12 cells. This biodegradable and electroactive PLAAP copolymer thus possessed the properties in favor of the long-time application in vivo as nerve repair scaffold materials in tissue engineering.
为获得一种可生物降解且具有电活性的聚合物作为组织工程支架,通过端羟基聚(L-丙交酯)(PLA)与端羧基苯胺五聚体(AP)的缩聚反应设计并合成了多嵌段共聚物PLAAP。PLAAP共聚物表现出优异的电活性、溶解性和生物降解性。同时,作为一种支架材料,PLAAP共聚物具有一定的机械性能,拉伸强度为3MPa,拉伸杨氏模量为32MPa,断裂伸长率为95%。我们系统地研究了PLAAP共聚物在体外的相容性,证明了电活性PLAAP共聚物无毒、生物相容性好,有助于大鼠C6细胞的黏附和增殖。此外,电信号刺激的PLAAP共聚物被证明可加速大鼠嗜铬细胞瘤PC-12细胞的分化。因此,这种可生物降解且具有电活性的PLAAP共聚物具有有利于在体内作为组织工程神经修复支架材料长期应用的特性。