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首页> 外文期刊>The international journal of artificial organs >Evaluation of tubular poly(trimethylene carbonate) tissue engineering scaffolds in a circulating pulsatile flow system.
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Evaluation of tubular poly(trimethylene carbonate) tissue engineering scaffolds in a circulating pulsatile flow system.

机译:在循环脉动流系统中评估管状聚碳酸三亚甲基酯组织工程支架。

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Tubular scaffolds (internal diameter approximately 3 mm and wall thickness approximately 0.8 mm) with a porosity of approximately 83% and an average pore size of 116 microm were prepared from flexible poly(trimethylene carbonate) (PTMC) polymer by dip-coating and particulate leaching methods. PTMC is a flexible and biocompatible polymer that crosslinks upon irradiation; porous network structures were obtained by irradiating the specimens in vacuum at 25 kGy before leaching soluble salt particles. To assess the suitability of these scaffolds in dynamic cell culturing for cardiovascular tissue engineering, the scaffolds were coated with a thin (0.1 to 0.2 mm) non-porous PTMC layer and its performance was evaluated in a closed pulsatile flow system (PFS). For this, the PFS was operated at physiological conditions at liquid flows of 1.56 ml/s with pressures varying from 80-120 mmHg at a frequency of 70 pulsations per minute. The mechanical properties of these coated porous PTMC scaffolds were not significantly different than non-coated scaffolds. Typical tensile strengths in the radial direction were 0.15 MPa, initial stiffness values were close to 1.4 MPa. Their creep resistance in cyclic deformation experiments was excellent. In the pulsatile flow setup, the distention rates of these flexible and elastic scaffolds were approximately 0.10% per mmHg, which is comparable to that of a porcine carotid artery (0.11% per mmHg). The compliance and stiffness index values were close to those of natural arteries.?In long-term deformation studies, where the scaffolds were subjected to physiological pulsatile pressures for one week, the morphology and mechanical properties of the PTMC scaffolds did not change. This suggests their suitability for application in a dynamic cell culture bioreactor.
机译:由柔性聚碳酸三亚甲基酯(PTMC)聚合物通过浸涂和微粒浸出制备管状支架(内径约3 mm,壁厚约0.8 mm),其孔隙率约为83%,平均孔径为116微米。方法。 PTMC是一种柔性且生物相容的聚合物,在辐照时会发生交联。通过在浸出可溶性盐颗粒之前在25 kGy的真空下对样品进行辐照来获得多孔网络结构。为了评估这些支架在用于心血管组织工程的动态细胞培养中的适用性,在支架上涂覆了一层薄的(0.1至0.2 mm)无孔PTMC层,并在封闭的脉动流系统(PFS)中评估了其性能。为此,PFS在生理条件下以1.56 ml / s的液体流量在80-120 mmHg的压力下以每分钟70次脉动的频率运行。这些涂覆的多孔PTMC支架的机械性能与未涂覆的支架没有显着差异。径向的典型拉伸强度为0.15 MPa,初始刚度值接近1.4 MPa。在循环变形实验中,它们的抗蠕变性非常好。在脉动血流设置中,这些柔性和弹性支架的扩张率约为0.10%/ mmHg,与猪颈动脉的扩张率(0.11%/ mmHg)相当。顺应性和刚度指数值接近自然动脉。在长期变形研究中,对脚手架施加生理脉动压力一周后,PTMC脚手架的形态和力学性能没有变化。这表明它们适用于动态细胞培养生物反应器。

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