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富马酸二乙酯/聚(富马酸丙酯)生物材料的光交联特性及力学性能

Photocrosslinking characteristics and mechanical properties of diethyl fumarate/poly(propylene fumarate) biomaterials.

作者信息

Fisher John P, Dean David, Mikos Antonios G

机构信息

Department of Bioengineering, Rice University, Houston, TX 77251-1892, USA.

出版信息

Biomaterials. 2002 Nov;23(22):4333-43. doi: 10.1016/s0142-9612(02)00178-3.

Abstract

The development of tissue engineered materials for the treatment of large bone defects would provide attractive alternatives to the autografts, allografts, non-degradable polymers, ceramics, and metals that are currently used in clinical settings. To this end, poly(propylene fumarate) (PPF), a viscous polyester synthesized from diethyl fumarate (DEF), has been studied for use as an engineered bone graft. We have investigated the photocrosslinking of PPF dissolved in its precursor, DEF, using the photoinitiator bis(2,4,6-trimethylbenzoyl) phenylphosphine oxide (BAPO) and low levels of ultraviolet light exposure. A three factor, 2 x 2 x 4 factorial design was developed, studying the effects of PPF number average molecular weight, BAPO initiator content, and DEF content upon photocrosslinking characteristics and mechanical properties. Uncured DEF/PPF solution viscosity fell over three orders of magnitude as DEF content was increased from 0% to 75%. The exothermic photocrosslinking reaction released low levels of heat, with no more than 160J/g released from any formulation tested. As a result, the maximum photocrosslinking temperature remained below 47 degrees C for all samples. Both sol fraction and swelling degree generally increased with increasing DEF content. Compressive mechanical properties were within the range of trabecular bone, with the strongest samples possessing an elastic modulus of 195.3 +/- 17.5 MPa and a fracture strength of 68.8 +/- 9.4MPa. Finally, the results indicate that PPF crosslinking was facilitated at low DEF precursor concentrations, but hindered at higher precursor concentrations. These novel DEF/PPF solutions may be preferred over pure PPF as the basis for an engineered bone graft because they (1) exhibit reduced viscosity and thus are easily handled, (2) form polymer networks with compressive strength at fracture suitable for consideration for trabecular bone replacement, and (3) may be readily fabricated into solids with a wide range of structures.

摘要

用于治疗大骨缺损的组织工程材料的开发,将为目前临床使用的自体骨移植、异体骨移植、不可降解聚合物、陶瓷和金属提供有吸引力的替代方案。为此,已对由富马酸二乙酯(DEF)合成的粘性聚酯聚(富马酸丙烯酯)(PPF)作为工程骨移植材料的用途进行了研究。我们使用光引发剂双(2,4,6-三甲基苯甲酰基)苯基氧化膦(BAPO)和低强度紫外线照射,研究了溶解在其前体DEF中的PPF的光交联。开发了一个三因素、2×2×4析因设计,研究PPF数均分子量、BAPO引发剂含量和DEF含量对光交联特性和机械性能的影响。随着DEF含量从0%增加到75%,未固化的DEF/PPF溶液粘度下降了三个数量级。放热光交联反应释放的热量较低,任何测试配方释放的热量不超过160J/g。因此,所有样品的最大光交联温度保持在47℃以下。溶胶分数和溶胀度通常随DEF含量的增加而增加。压缩机械性能在松质骨范围内,最强的样品弹性模量为195.3±17.5MPa,断裂强度为68.8±9.4MPa。最后,结果表明,在低DEF前体浓度下PPF交联得到促进,但在较高前体浓度下受到阻碍。这些新型DEF/PPF溶液作为工程骨移植的基础可能比纯PPF更受青睐,因为它们(1)粘度降低,因此易于处理,(2)形成具有适合松质骨替代考虑的断裂压缩强度的聚合物网络,(3)可以很容易地制成具有广泛结构的固体。

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