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Evaluation of Mechanical Properties and Medical Applications of Polycaprolactone Small Diameter Artificial Blood Vessels

机译:聚己内酯小径人工血管的力学性能和医学应用评价

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摘要

Increasing the cardiovascular diseases and decreasing the possibility of autograft surgery are important factors that cause the choice of artificial vascular graft as an alternative treatment method. In this regard, producing artificial grafts similar to natural vessels is an important purpose that has long been followed as a gold standard by many researchers worldwide. In addition, mechanical properties including strength, long patency, bio-compatibility and hydrophobicity are necessary properties to achieve ideal vascular grafts. Hence there are various factors such as polymer type and preparation methods, which contribute to suitable mechanical properties. The electrospinning as an optimized method on one side and biocompatible, degradable and semicrystalline polycaprolactone (PCL) on the other side are used for their acceptable mechanical properties to manufacture synthetic vessels. In this study, PCL vascular grafts have been reviewed and a wide range of parameters affecting the improvement of mechanical properties and their performance have been described along with clinical applications. Therefore, by investigating and comparing single and composite PCL vascular grafts, we achieved acceptable results in the field of cell growth and adhesion as well as implanting grafts in animals such as rat and rabbit. By reviewing other studies, it was revealed that synthetic composite vessels made of PCL and natural polymers such as collagen and chitosan and synthetic polymers such as polyurethane (PU) for long patency and acceptable cell adhesion have shown good clinical results.
机译:增加心血管疾病和减少自体移植手术的可能性是导致人工血管移植的选择作为替代治疗方法的重要因素。在这方面,产生类似于天然血管的人造移植物是全世界许多研究人员所遵循的重要目的。此外,包括强度,长度的通畅,生物相容性和疏水性的机械性能是实现理想血管移植物的必要特性。因此,存在各种因素,例如聚合物类型和制备方法,这有助于适当的机械性能。在另一侧的一侧和生物相容性,可降解和半结晶多己内酯(PCL)上的优化方法用于其它侧的静电纺丝用于制造合成血管的可接受的机械性能。在该研究中,已经过审查了PCL血管移植物,并且已经描述了影响力学性能改善的各种参数及其性能以及临床应用。因此,通过研究单和复合PCL血管移植物,我们在细胞生长和粘附领域中获得了可接受的结果,以及植入动物如大鼠和兔子的移植物。通过审查其他研究,揭示了由PCL和天然聚合物制成的合成复合容器,例如胶原蛋白和壳聚糖和壳聚糖和合成聚合物,例如聚氨酯(PU),用于长期通畅和可接受的细胞粘附,已经显示出良好的临床结果。

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