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首页> 外文期刊>Acta biomaterialia >Scaffold for tissue engineering fabricated by non-isothermal supercritical carbon dioxide foaming of a highly crystalline polyester.
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Scaffold for tissue engineering fabricated by non-isothermal supercritical carbon dioxide foaming of a highly crystalline polyester.

机译:用于组织工程的支架,是通过非等温超临界二氧化碳使高度结晶的聚酯发泡而制成的。

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摘要

Porous scaffolds of a random co-polymer of omega-pentadecalactone (PDL) and epsilon-caprolactone (CL) (poly(PDL-CL)), synthesized by biocatalysis, were fabricated by supercritical carbon dioxide (scCO(2)) foaming. The co-polymer, containing 31 mol.% CL units, is highly crystalline (T(m) = 82 degrees C, DeltaH(m) = 105 J g(-1)) thanks to the ability of the two monomer units to co-crystallize. The co-polymer can be successfully foamed upon homogeneous absorption of scCO(2) at T > T(m). The effect of soaking time, depressurization rate and cooling rate on scaffold porosity, pore size distribution and pore interconnectivity was investigated by micro X-ray computed tomography. Scaffolds with a porosity in the range 42-76% and an average pore size of 100-375 microm were successfully obtained by adjusting the main foaming parameters. Process conditions in the range investigated did not affect the degree of crystallinity of poly(PDL-CL) scaffolds. A preliminary study of the mechanical properties of the scaffolds revealed that poly(PDL-CL) foams may find application in the regeneration of cartilage tissue.
机译:通过超临界二氧化碳(scCO(2))发泡制备了通过生物催化合成的欧米茄十五烯内酯(PDL)和ε-己内酯(CL)(poly(PDL-CL))的无规共聚物的多孔支架。由于两个单体单元能够共聚,因此含有31摩尔%CL单元的共聚物是高度结晶的(T(m)= 82摄氏度,DeltaH(m)= 105 J g(-1))。 -结晶。共聚物可以在T> T(m)均匀吸收scCO(2)时成功发泡。用X射线计算机断层扫描技术研究了浸泡时间,降压速率和冷却速率对支架孔隙率,孔径分布和孔隙互连性的影响。通过调节主要的起泡参数,成功地获得了孔隙率为42-76%,平均孔径为100-375微米的支架。研究范围内的工艺条件不影响聚(PDL-CL)支架的结晶度。对支架的机械性能的初步研究表明,聚(PDL-CL)泡沫可能会在软骨组织再生中找到应用。

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