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首页> 外文期刊>Tissue engineering >A novel time-varying poly lactic-co glycolic acid external sheath for vein grafts designed under physiological loading.
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A novel time-varying poly lactic-co glycolic acid external sheath for vein grafts designed under physiological loading.

机译:一种在生理负荷下设计的用于静脉移植物的新型时变聚乳酸-乙醇酸外护套。

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摘要

Changes in dimensional and mechanical properties of degradable sheaths in poly lactic-co glycolic acid (PLGA) have been researched extensively. Composite PLGA having variable resorption rates in multiple layers under physiological loading has not been reported. Our novel design of a PLGA sheath is composed of 3 layers with different degradation rates (i.e., the innermost layer degrades the fastest, followed by the middle, while the outer layer degrades the slowest). In the presence of physiological luminal pressure, diameter is greater, thickness is less, resorption rate is greater, pore size is greater, and incremental modulus is greater than in nonpressurized sheaths. Furthermore, the ratio of the pore size to the sheath radius affects the dimensional changes of the sheath in the radial direction. In addition to changing the pore size-to-sheath radius ratio, the dimensional changes can be manipulated by choosing different glycolic and lactic acid ratios for the different layers. The application of this novel PLGA design for gradual arterialization of vein grafts is contemplated.
机译:聚乳酸-乙醇酸(PLGA)中可降解护套的尺寸和机械性能的变化已得到广泛研究。尚未报道在生理负荷下多层中具有不同吸收速率的复合PLGA。我们新颖的PLGA护套设计由三层具有不同降解速率的层组成(即,最内层降解最快,其次是中间,而外层降解最慢)。在生理腔压力的存在下,与非加压鞘管相比,直径较大,厚度较小,吸收速率较大,孔径较大并且增量模量较大。此外,孔径与护套半径的比率影响护套在径向方向上的尺寸变化。除了改变孔径与鞘层半径的比率外,还可以通过为不同的层选择不同的乙醇酸和乳酸比率来控制尺寸变化。考虑了这种新颖的PLGA设计在静脉移植物逐渐动脉化中的应用。

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