He S, Yaszemski M J, Yasko A W, Engel P S, Mikos A G
Department of Bioengineering, Rice University, Houston, TX 77251-1892, USA.
Biomaterials. 2000 Dec;21(23):2389-94. doi: 10.1016/s0142-9612(00)00106-x.
New injectable, in situ crosslinkable biodegradable polymer composites were investigated consisting of poly(propylene fumarate) (PPF), poly(ethylene glycol)-dimethacrylate (PEG-DMA), and beta-tricalcium phosphate (beta-TCP). We examined the effects of the PEG-DMA/PPF double-bond ratio and beta-TCP content on the crosslinking characteristics of the composites including the maximum crosslinking temperature and the gel point, as well as the properties of the crosslinked composites such as the compressive strength and modulus, and the water-holding capacity. The maximum crosslinking temperature was constant averaging 39.7 degrees C for the composite formulations tested. The gel points varied from 8.0 +/- 1.0 to 12.6 +/- 2.5 min and were not affected by the relative amounts of PEG-DMA. The compressive strength at yield of PEG-DMA/PPF composites without beta-TCP increased from 5.9 +/- 1.0 to 11.2 +/- 2.2 MPa as the double-bond ratio of PEG-DMA/PPF increased from 0.38 to 1.88. An increase in compressive modulus was also observed from 30.2 +/- 3.5 to 58.4 +/- 6.2 MPa for the same range of the PEG-DMA/PPF double-bond ratio. Also, the addition of beta-TCP (33 wt%) enhanced the mechanical properties of all composites. The equilibrium water content of networks without beta-TCP increased from 21.7 +/- 0.2 to 30.6 +/- 0.2% for a double-bond ratio of PEG-DMA/PPF ranging from 0.38 to 1.88. However, the mechanical properties of the swollen composites under compression were smaller than the dry ones. These data demonstrate the feasibility of fabricating injectable biodegradable polymer composites with engineered mechanical properties for orthopedic tissue engineering.
研究了由聚富马酸丙二醇酯(PPF)、聚乙二醇二甲基丙烯酸酯(PEG-DMA)和β-磷酸三钙(β-TCP)组成的新型可注射、原位交联的可生物降解聚合物复合材料。我们研究了PEG-DMA/PPF双键比例和β-TCP含量对复合材料交联特性(包括最大交联温度和凝胶点)以及交联复合材料性能(如抗压强度和模量以及持水能力)的影响。对于所测试的复合配方,最大交联温度恒定,平均为39.7℃。凝胶点在8.0±1.0至12.6±2.5分钟之间变化,且不受PEG-DMA相对含量的影响。不含β-TCP的PEG-DMA/PPF复合材料的屈服抗压强度随着PEG-DMA/PPF双键比例从0.38增加到1.88,从5.9±1.0MPa增加到11.2±2.2MPa。对于相同范围的PEG-DMA/PPF双键比例,抗压模量也从30.2±3.5MPa增加到58.4±6.2MPa。此外,添加β-TCP(33重量%)增强了所有复合材料的机械性能。对于PEG-DMA/PPF双键比例在0.38至1.88范围内,不含β-TCP的网络平衡水含量从21.7±0.2%增加到30.6±0.2%。然而,压缩状态下溶胀复合材料的机械性能小于干燥状态下的。这些数据证明了制造具有工程化机械性能的可注射生物可降解聚合物复合材料用于骨科组织工程的可行性。