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Chapter 76 Toxicology Evaluation and Properties of a New Biodegradable Computer Made Medical Biomaterial

机译:第76章新可生物降解计算机的毒理学评估和性能医疗生物材料

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Background Poly (propylene carbonate) (PPC) synthesized from carbon dioxide and propylene oxide has attracted considerable research attention recently. To explore the potential application of these new polymers for bone repair, it is necessary to use other biodegradable polymers to enhance the properties of PPC. Poly (3-hydroxybutyrate) was used in this study to modify the mechanical properties and biocompatibility of PPC. Methods Poly (propylene carbonate) (PPC) was melt-mixed with 30 % poly (3-hydroxybutyrate) to enhance its physical properties, while maintaining the inherently high structural integrity and ductility. The mechanical strength, porosity, morphologies and biocompatibility of porous modified-PPC (PM-PPC) were fully investigated using tensile tester, hammering method, scanning electron microscopy, cytotoxicity test for its biocompatibility. Results The PM-PPC was measured by mechanical tests for its compressive strength, elongation module and tensile strength, with the results being 43, 725 and 32 Mpa respectively. The data showed that the mechanical properties of PM-PPC were significantly improved compared with PPC. The mean porosity of PM-PPC was 15 %, as determined by hammering method. The biocompatibility test of PM-PPC showed that it has excellent potential for use as a biomedical material. Conclusions In conclusion, the PM-PPC showed improved mechanical properties, and an acceptable biocompatibility supporting its potential for use in patients. Thus, PM-PPC is a promising candidate for use as a novel medical material.
机译:背景技术从二氧化碳和环氧丙烷中合成的聚(碳酸丙酯)(PPC)最近引起了相当大的研究。为了探讨这些新聚合物的潜在应用,用于骨骼修复,必须使用其他可生物降解的聚合物来增强PPC的性质。本研究中使用聚(3-羟基丁酸酯)以改变PPC的机械性能和生物相容性。方法将聚(碳酸亚丙酯)(PPC)与30%聚(3-羟基丁酸)熔融混合以增强其物理性质,同时保持固有的高结构完整性和延展性。采用拉伸试验机,锤击法,扫描电子显微镜,细胞毒性试验,全面研究了多孔改性-PPC(PM-PPC)的机械强度,孔隙,形态和生物相容性,以其生物相容性。结果通过机械试验测量PM-PPC,其抗压强度,伸长模块和拉伸强度,结果分别为43,725和32MPa。数据显示,与PPC相比,PM-PPC的机械性能显着改善。通过锤击法测定PM-PPC的平均孔隙率为15%。 PM-PPC的生物相容性试验表明它具有优异的用作生物医学材料。结论总之,PM-PPC显示出改善的机械性能,以及支持其在患者中使用的可能性的可接受的生物相容性。因此,PM-PPC是一种希望用作新型医疗材料的候选者。

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