Mei Tingzhen, Zhu Yonghe, Ma Tongcui, He Tao, Li Linjing, Wei Chiju, Xu Kaitian
J Biomed Mater Res A. 2014 Sep;102(9):3243-54. doi: 10.1002/jbma.35004.
A series of alternating block polyurethanes (abbreviated as PULA-alt-PEG) and random block polyurethanes (abbreviated as PULA-ran-PEG) based on poly(L-lactic acid) (PLA) and poly(ethylene glycol) (PEG) were synthesized. The differences of PULA-alt/ran-PEG chemical structure, molecular weight, distribution, thermal properties, mechanical properties and static contact angle were systematically investigated. The PULA-alt/ran-PEG polyurethanes exhibited low T(g) (-47.3 ∼ -34.4°C), wide mechanical properties (stress σ(t): 4.6-32.6 MPa, modulus E: 11.4-323.9 MPa and strain ε: 468-1530%) and low water contact angle (35.4-51.4°). Scanning electron microscope (SEM) observation showed that PULA-alt-PEG film displays rougher and more patterned surface morphology than PULA-ran-PEG does, due to more regular structures of PULA-alt-PEG. Hydrolytic degradation shows that degradation rate of random block polyurethane series PULA-ran-PEG is higher than the alternating counterpart PULA-alt-PEG. PLA segment degradation is faster than urethane linkage and PEG segment almost does not degrade in the buffer solution. Platelet adhesion study showed that all the polyurethanes possess excellent hemocompatibility. The cell culture assay revealed that PULA-alt/ran-PEG polyurethanes were cell inert and unfavorable for the attachment of rat glial cell due to the hydrophilic characters of the materials.
合成了一系列基于聚(L-乳酸)(PLA)和聚(乙二醇)(PEG)的交替嵌段聚氨酯(缩写为PULA-alt-PEG)和无规嵌段聚氨酯(缩写为PULA-ran-PEG)。系统研究了PULA-alt/ran-PEG的化学结构、分子量、分布、热性能、力学性能和静态接触角的差异。PULA-alt/ran-PEG聚氨酯表现出较低的玻璃化转变温度(T(g))(-47.3 ∼ -34.4°C)、较宽的力学性能范围(应力σ(t):4.6 - 32.6 MPa,模量E:11.4 - 323.9 MPa,应变ε:468 - 1530%)和较低的水接触角(35.4 - 51.4°)。扫描电子显微镜(SEM)观察表明,由于PULA-alt-PEG结构更规整,其薄膜表面形态比PULA-ran-PEG更粗糙且更有图案。水解降解表明,无规嵌段聚氨酯系列PULA-ran-PEG的降解速率高于交替型的PULA-alt-PEG。在缓冲溶液中,PLA链段的降解比聚氨酯链节快,而PEG链段几乎不降解。血小板黏附研究表明,所有聚氨酯都具有优异的血液相容性。细胞培养试验显示,由于材料的亲水性,PULA-alt/ran-PEG聚氨酯对细胞呈惰性,不利于大鼠神经胶质细胞的附着。