Isenberg Brett C, Williams Chrysanthi, Tranquillo Robert T
Department of Chemical Engineering & Materials Science, University of Minnesota, Minneapolis, MN 55455, USA.
Circ Res. 2006 Jan 6;98(1):25-35. doi: 10.1161/01.RES.0000196867.12470.84.
Although the need for a functional arterial replacement is clear, the lower blood flow velocities of small-diameter arteries like the coronary artery have led to the failure of synthetic materials that are successful for large-diameter grafts. Although autologous vessels remain the standard for small diameter grafts, many patients do not have a vessel suitable for use because of vascular disease, amputation, or previous harvest. As a result, tissue engineering has emerged as a promising approach to address the shortcomings of current therapies. Investigators have explored the use of arterial tissue cells or differentiated stem cells combined with various types of natural and synthetic scaffolds to make tubular constructs and subject them to chemical and/or mechanical stimulation in an attempt to develop a functional small-diameter arterial replacement graft with varying degrees of success. Here, we review the progress in all these major facets of the field.
尽管功能性动脉置换的需求很明确,但像冠状动脉这样的小直径动脉较低的血流速度导致了在大直径移植物中成功应用的合成材料在小直径动脉中失效。虽然自体血管仍然是小直径移植物的标准选择,但由于血管疾病、截肢或先前的取材,许多患者没有合适的血管可供使用。因此,组织工程已成为一种有前景的方法来弥补当前治疗方法的不足。研究人员探索了使用动脉组织细胞或分化的干细胞与各种天然和合成支架相结合来制造管状结构,并对其进行化学和/或机械刺激,试图开发出不同程度成功的功能性小直径动脉置换移植物。在此,我们综述该领域所有这些主要方面的进展。