首页> 外文期刊>Journal of biomedical materials research, Part A >Characterization of porous injectable poly-(propylene fumarate)-based bone graft substitute.
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Characterization of porous injectable poly-(propylene fumarate)-based bone graft substitute.

机译:多孔可注射的聚(富马酸丙二酯)基骨移植替代物的表征。

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The use of bone grafts for orthopedic applications have increased steadily over the past decade. With improvements in surgical technique, combined with an increasing aged population requiring orthopedic treatment, the need for bone grafts substitutes have also increased. To be useful clinically, the bone graft substitute must be biocompatible, bioabsorbable, and have convenient handling properties. In addition, it must possess a microarchitecture that allows cellular ingrowth and remodeling while simultaneously providing mechanical strength. Poly(propylene fumarate) (PPF) has been investigated as an injectable, biodegradable scaffold for orthopedic applications. Various methods to create a porous, interconnected polymer scaffold are available. The foaming technique is a convenient method to accomplish this task. Reactions between bicarbonate salts and weak acids generate CO(2) gas, causing a bubbling reaction during the polymerization process. This technique allows the porosity of the scaffold to be modulated. Image analysis and mechanical testing of porous PPF fabricated using the foaming technique shows that a highly porous, interconnected scaffold can be produced. At approximately 50% porosity, the scaffold has excellent handling properties, contains pore sizes ranging from 50 to 500 mum with an elastic modulus ranging from 20 to 40 MPa. The foaming technique provides an additional method by which clinically useful polymers can be fabricated for use in various bone tissue engineering applications.
机译:在过去的十年中,骨移植在整形外科领域的使用稳步增长。随着外科手术技术的改进,以及需要骨科治疗的老年人口的增加,对骨移植替代物的需求也增加了。为了在临床上有用,骨移植替代物必须是生物相容的,可生物吸收的并且具有便利的处理特性。此外,它必须具有允许细胞向内生长和重塑同时提供机械强度的微体系结构。聚富马酸丙二酯(PPF)已作为骨科应用中的可注射,可生物降解的支架进行了研究。可以使用多种方法来制造多孔的,相互连接的聚合物支架。发泡技术是完成此任务的便捷方法。碳酸氢盐和弱酸之间的反应生成CO(2)气体,在聚合过程中引起鼓泡反应。该技术允许调节支架的孔隙率。使用发泡技术制造的多孔PPF的图像分析和机械测试表明,可以生产出高度多孔,相互连接的支架。孔隙率约为50%时,该支架具有出色的处理性能,孔径范围为50至500 mum,弹性模量为20至40 MPa。发泡技术提供了另外的方法,通过该方法可以制造临床上有用的聚合物以用于各种骨组织工程应用。

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