首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Scaling of Engineered Vascular Grafts Using 3D Printed Guides and the Ring Stacking Method
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Scaling of Engineered Vascular Grafts Using 3D Printed Guides and the Ring Stacking Method

机译:使用3D打印指南和环堆叠方法缩放工程血管移植物的比例

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摘要

Coronary artery disease remains a leading cause of death, affecting millions of Americans. With the lack of autologous vascular grafts available, engineered grafts offer great potential for patient treatment. However, engineered vascular grafts are generally not easily scalable, requiring manufacture of custom molds or polymer tubes in order to customize to different sizes, constituting a time-consuming and costly practice. Human arteries range in lumen diameter from about 2.0-38 mm and in wall thickness from about 0.5-2.5 mm. We have created a method, termed the "Ring Stacking Method," in which variable size rings of tissue of the desired cell type, demonstrated here with vascular smooth muscle cells (SMCs), can be created using guides of center posts to control lumen diameter and outer shells to dictate vessel wall thickness. These tissue rings are then stacked to create a tubular construct, mimicking the natural form of a blood vessel. The vessel length can be tailored by simply stacking the number of rings required to constitute the length needed. With our technique, tissues of tubular forms, similar to a blood vessel, can be readily manufactured in a variety of dimensions and lengths to meet the needs of the clinic and patient.
机译:冠状动脉疾病仍然是主要的死亡原因,影响着数百万的美国人。由于缺乏可用的自体血管移植物,工程移植物为患者治疗提供了巨大潜力。然而,工程化的血管移植物通常不容易扩展,需要制造定制的模具或聚合物管以便定制成不同的尺寸,这是耗时且昂贵的实践。人动脉的管腔直径为约2.0-38mm,壁厚为约0.5-2.5mm。我们创建了一种称为“环堆叠法”的方法,在该方法中,可以使用中心柱的导向器来控制管腔直径,从而创建所需细胞类型的可变大小的组织环(在此通过血管平滑肌细胞(SMC)进行演示)和外壳决定容器壁的厚度。然后将这些组织环堆叠以创建管状构造,模仿血管的天然形式。可以通过简单地堆叠构成所需长度的所需环数来调整容器长度。利用我们的技术,可以很容易地以各种尺寸和长度制造类似于血管的管状组织,以满足诊所和患者的需求。

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