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Directional permeability in a porcine carotid elastin biomaterial vascular conduit

机译:猪颈动脉弹性蛋白生物材料血管导管中的方向渗透性

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Purified porcine carotid elastin is under development as a substrate for a vascular conduit. The permeability of the graft may have implications in recellularization. Light and scanning electron microscopy indicate that the lumen and adventitial surfaces have unique extracellular matrix morphology. This study investigates the permeability of the material, with consideration of the direction of the flow. The permeability of the adventitial surface was found to be approximately twice that of the lumenal surface. The mean permeability was 0.0123 /spl plusmn/ 0.005 mL/min*cm/sup 2/ for flow through from lumen surface to the adventitial surface and 0.0310 /spl plusmn/ 0.007 mL/min*cm/sup 2/ for flow through the adventitial surface to the lumen surface. The difference in elastin architecture can be taken advantage of to optimize recellularization in vitro and in vivo. This is only the second biomaterial to have this described behavior.
机译:纯化的猪颈动脉弹性蛋白作为血管导管的底物正在开发中。移植物的通透性可能对细胞再生有影响。光学和扫描电子显微镜表明,管腔和外膜表面具有独特的细胞外基质形态。本研究在考虑流动方向的情况下研究了材料的渗透性。发现外膜表面的渗透率约为管腔表面的渗透率的两倍。从管腔表面流向外膜表面的平均渗透率为0.0123 / spl加/0.005 mL / min * cm / sup 2 /,通过外膜流的平均渗透率为0.0310 / spl加/0.007 mL / min * cm / sup 2 /表面到管腔表面。可以利用弹性蛋白结构的差异来优化体外和体内的细胞重组。这只是具有这种描述行为的第二种生物材料。

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