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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >On the Decellularization of Fresh or Frozen Human Umbilical Arteries: Implications for Small-Diameter Tissue Engineered Vascular Grafts
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On the Decellularization of Fresh or Frozen Human Umbilical Arteries: Implications for Small-Diameter Tissue Engineered Vascular Grafts

机译:关于新鲜或冷冻的人脐动脉的脱细胞作用:对小直径组织工程血管移植的影响。

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Most tissues, including those to be decellularized for tissue engineering applications, are frozen for long term preservation. Such conventional cryopreservation has been shown to alter the structure and mechanical properties of tissues. Little is known, however, how freezing affects decellularization of tissues. The purpose of this study was two-fold: to examine the effects of freezing on decellularization of human umbilical arteries (HUAs), which represent a potential scaffolding material for small-diameter tissue-engineered vascular grafts, and to examine how decellularization affects the mechanical properties of frozen HUAs. Among many decellularization methods, hypotonic sodium dodecyl sulfate solution was selected as the decellularizing agent and tested on fresh HUAs to optimize decellularization conditions. The efficiency of decellularization was evaluated by DNA assay and histology every 12 up to 48 h. The optimized decellularization protocol was then performed on frozen HUAs. The stiffness, burst pressure, and suture retention strength of fresh HUAs and frozen HUAs before and after decellularization were also examined. It appeared that freezing decreased the efficiency of decellularization, which may be attributed to the condensed extracellular matrix caused by freezing. While the stiffness of fresh HUAs did not change significantly after decellularization, decellularization reduced the compliance of frozen HUAs. Interestingly, the stiffness of decellularized frozen HUAs was similar to that of decellularized fresh HUAs. Although little difference in stiffness was observed, we suggest avoiding freezing if more efficient and complete decellularization is desired.
机译:冷冻大多数组织,包括为组织工程应用脱细胞的组织,可长期保存。已经表明这种常规的冷冻保存改变了组织的结构和机械性能。然而,鲜为人知的是冷冻如何影响组织的脱细胞作用。这项研究的目的有两个:检查冷冻对人脐动脉(HUA)脱细胞的影响,HUA代表小直径组织工程化血管移植的潜在支架材料,并研究脱细胞如何影响机械HUA的特性。在许多脱细胞方法中,选择低渗十二烷基硫酸钠溶液作为脱细胞剂,并在新鲜的HUA上进行测试以优化脱细胞条件。每隔12小时至48小时通过DNA测定和组织学评估脱细胞的效率。然后对冷冻的HUA进行优化的脱细胞方案。还检查了脱细胞前后新鲜的HUA和冷冻的HUA的刚度,破裂压力和缝合线保持强度。似乎冷冻降低了脱细胞的效率,这可能归因于冷冻引起的细胞外基质的浓缩。虽然新鲜HUA的刚度在脱细胞后没有明显变化,但脱细胞降低了冷冻HUA的顺应性。有趣的是,脱细胞的冷冻HUA的刚度类似于脱细胞的新鲜HUA的刚度。尽管观察到的刚度差异很小,但如果需要更有效和完全的脱细胞,我们建议避免冷冻。

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