Department of Biomedical Engineering, Virginia Commonwealth University, Richmond, VA 23284-3067, USA.
Biomaterials. 2012 Jan;33(3):771-9. doi: 10.1016/j.biomaterials.2011.10.011. Epub 2011 Nov 3.
Electrospun non-woven structures have the potential to form bioresorbable vascular grafts that promote tissue regeneration in situ as they degrade and are replaced by autologous tissue. Current bioresorbable grafts lack appropriate regeneration potential since they do not have optimal architecture, and their fabrication must be altered by the manipulation of process parameters, especially enhancing porosity. We describe here an air-impedance process where the solid mandrel is replaced with a porous mandrel that has pressurized air exiting the pores to impede fiber deposition. The mandrel design, in terms of air-flow rate, pore size, and pore distribution, allows for control over fiber deposition and scaffold porosity, giving greater cell penetration without a detrimental loss of mechanical properties or structural integrity.
静电纺无纺结构具有形成生物可吸收血管移植物的潜力,因为它们降解并被自体组织取代,所以可以促进组织再生。目前的生物可吸收移植物缺乏适当的再生潜力,因为它们没有最佳的结构,并且其制造必须通过改变工艺参数来进行,特别是要增强其多孔性。在这里,我们描述了一种空气阻抗工艺,其中将实心心轴替换为多孔心轴,从孔中出来的压缩空气会阻碍纤维沉积。心轴设计,就气流率、孔径和孔分布而言,可以控制纤维沉积和支架的多孔性,在不损害机械性能或结构完整性的情况下,使更多的细胞穿透。