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Electrospun Polycaprolactone Scaffolds for Small-Diameter Tissue Engineered Blood Vessels.

机译:用于小直径组织工程血管的静电纺丝聚己内酯支架。

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摘要

Cardiovascular disease is the leading cause of death in the United States with many patients requiring coronary artery bypass grafting. The current standard is using autografts such as the saphenous vein or intimal mammary artery, however creating a synthetic graft could eliminate this painful and inconvenient procedure. Large diameter grafts have long been established with materials such as DacronRTM and TeflonRTM, however these materials have not proved successful in small-diameter (< 6 mm) grafts where thrombosis and intimal hyperplasia are common in graft failure.;With the use of a synthetic biodegradable polymer (polycaprolactone) we utilize our expertise in electrospinning and femtosecond laser ablation to create a novel tri-layered tissue engineered blood vessel containing microchannels. The benefits of creating a tri-layer is to mimic native arteries that contain an endothelium to prevent thrombosis in the inner layer, aligned smooth muscle cells in the middle to control vasodilation and constriction, and a mechanically robust outer layer.;The following work evaluates the mechanical properties of such a graft (tensile, fatigue, burst pressure, and suture retention strength), the ability to rapidly align cells in laser ablated microchannels in PCL scaffolds, and the biological integration (co-culture of endothelial and smooth muscle cells) with electrospun PCL scaffolds. The conclusions from this work establish that the electrospun tri-layers provide adequate mechanical strength as a tissue engineered blood vessel, that laser ablated microchannels are able to contain the smooth muscle cells, and that cells are able to adhere to PCL fibers. However, future work includes adjusting microchannel dimensions to properly align smooth muscle cells along with perfect co-cultures of endothelial and smooth muscle cells on the electrospun tri-layer.
机译:在美国,心血管疾病是主要的死亡原因,许多患者需要进行冠状动脉搭桥术。当前的标准是使用自体移植物,例如大隐静脉或内膜乳腺动脉,但是创建合成移植物可以消除这种痛苦和不便的过程。长期以来,已经使用DacronRTM和TeflonRTM等材料建立了大直径移植物,但是这些材料在小直径(<6 mm)移植物中却没有被证明是成功的,在小直径移植物中,血栓形成和内膜增生是移植失败的常见原因;;使用合成材料可生物降解的聚合物(聚己内酯),我们利用我们在静电纺丝和飞秒激光消融方面的专业知识,创建了一个包含微通道的新型三层组织工程血管。创建三层的好处是模仿包含内皮的天然动脉,以防止内层血栓形成,在中间层对齐平滑肌细胞以控制血管舒张和收缩,并在机械上坚固外层。以下工作评估这种移植物的机械性能(拉伸,疲劳,破裂压力和缝合线保持强度),PCL支架中激光烧蚀微通道中细胞的快速排列能力以及生物整合(内皮细胞和平滑肌细胞的共培养)带有静电纺PCL支架。这项工作的结论表明,电纺三层膜可提供作为组织工程血管的足够的机械强度,激光烧蚀的微通道能够容纳平滑肌细胞,并且细胞能够粘附到PCL纤维上。然而,未来的工作包括调整微通道的尺寸,以使平滑肌细胞与在静电纺丝三层上内皮细胞和平滑肌细胞的完美共培养物正确对齐。

著录项

  • 作者

    Lee, Carol Hsiu-Yueh.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Biomedical engineering.;Materials science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 215 p.
  • 总页数 215
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:38

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