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Characterization of the Gel-spun Tubular Scaffold for Cardiovascular Tissue Engineering

机译:心血管组织工程凝胶纺丝支架的表征

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A tubular and fibrous scaffold was fabricated from an elastic polymer, poly (L-lactide-co-ε-caprolactone) (PLCL; Mn 193,813, Mw 538,623) 50:50 by using a novel gel spinning apparatus. To characterize the gel-spun scaffold, we investigated morphology, tensile property, tissue in-growth rate and degradation rate. From SEM images, fibrous structure in the scaffold wasn't fabricated well in the condition of 4% gel concentration. In general, the thickness level of microfibers increased as the gel concentration increased. In addition, the gel-spun scaffolds showed stronger tensile properties in the circumferential direction than the longitudinal direction. 5%, 7.5%, 10% and 12.5% scaffolds were analyzed in both directions: circumferential direction and longitudinal direction. On the other hand, the gel-spun scaffolds have been implanted in mouse to examine the degradation rate in vivo and tissue in-growth aspects, compared to extruded scaffolds. Both shows very similar degradation rates, but the aspect in tissue in-growth was different. In conclusion, gel-spun PLCL scaffolds have good characteristics as a plausible scaffold for cardiovascular tissue engineering.
机译:通过使用新型凝胶纺丝装置,由弹性聚合物,聚(L-丙交酯-Co-Co-Caprolacterone)(PLCL; MN 193,813,MW 538,623)50:50制成管状和纤维支架。为了表征凝胶纺丝支架,我们研究了形态,拉伸性能,组织生长速率和降解速率。从SEM图像中,支架中的纤维结构在4%凝胶浓度的条件下没有井制成。通常,随着凝胶浓度的增加,微纤维的厚度水平增加。另外,凝胶 - 纺支架在圆周方向上显示比纵向更强的拉伸性能。在两个方向上分析5%,7.5%,10%和12.5%支架:圆周方向和纵向。另一方面,与挤出的支架相比,在小鼠中植入小鼠以检查体内和组织中的降解速率。两者都显示出非常相似的降解速率,但组织含量的方面是不同的。总之,凝胶纺锤支架具有良好的特征,作为用于心血管组织工程的合理支架。

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