MIRA Institute for Biomedical Technology and Technical Medicine, Department of Polymer Chemistry and Biomaterials, Faculty of Science and Technology, University of Twente, AE Enschede, The Netherlands.
Acta Biomater. 2011 May;7(5):1939-48. doi: 10.1016/j.actbio.2011.01.010. Epub 2011 Jan 11.
Resorbable and elastomeric poly(trimethylene carbonate) (PTMC) networks were efficiently prepared by photoinitiated crosslinking of linear high-molecular-weight PTMC. To crosslink PTMC films, low-molecular-weight PTMC macromers with methacrylate end groups were synthesized and used as crosslinking aids. By exposing PTMC films containing only photoinitiator (Irgacure(®) 2959) or both photoinitiator and PTMC macromers to ultraviolet light, PTMC networks with high gel contents (87-95%) could be obtained. The crosslink density could be readily varied by adjusting the irradiation time or the amount of crosslinking aid used. The formed networks were flexible, with low elastic modulus values ranging from 7.1 to 7.5MPa, and also showed excellent resistance to creep in cyclic tests. In vitro experiments showed that the photocrosslinked PTMC networks could be eroded by macrophages, and upon incubation in aqueous cholesterol esterase enzyme- or potassium dioxide solutions. The rate of surface erosion of photocrosslinked PTMC networks was significantly lower than that observed for films prepared from linear PTMC. These resorbable PTMC elastomeric networks are compatible with cells and may find application in tissue engineering and controlled release.
可吸收和弹性的聚(三亚甲基碳酸酯)(PTMC)网络通过线性高分子量 PTMC 的光引发交联有效地制备。为了交联 PTMC 薄膜,合成了具有甲基丙烯酸酯端基的低分子量 PTMC 大分子单体用作交联助剂。通过将仅含有光引发剂(Irgacure®2959)或同时含有光引发剂和 PTMC 大分子单体的 PTMC 薄膜暴露于紫外光下,可以获得具有高凝胶含量(87-95%)的 PTMC 网络。通过调整照射时间或使用的交联助剂的量,可以容易地改变交联密度。形成的网络具有柔韧性,弹性模量值低至 7.1-7.5MPa,并且在循环测试中还表现出出色的抗蠕变能力。体外实验表明,光交联的 PTMC 网络可以被巨噬细胞侵蚀,并且在水性胆固醇酯酶或过氧化钾溶液中孵育时也是如此。光交联的 PTMC 网络的表面侵蚀速率明显低于从线性 PTMC 制备的膜的观察到的速率。这些可吸收的 PTMC 弹性体网络与细胞相容,并且可能在组织工程和控制释放中找到应用。