首页> 外文期刊>The Journal of Thoracic and Cardiovascular Surgery >Tissue-engineered stent-graft integrates with aortic wall by recruiting host tissue into graft scaffold
【24h】

Tissue-engineered stent-graft integrates with aortic wall by recruiting host tissue into graft scaffold

机译:组织工程化的支架移植物通过将宿主组织募集到移植支架中而与主动脉壁整合

获取原文
获取原文并翻译 | 示例
           

摘要

Objective: To prevent postoperative migration and endoleaks after endovascular aneurysm repair, we developed a tissue-engineered vascular graft that integrates with the aortic wall by recruiting the host tissue into the graft scaffold. In the present study, we assessed the mechanical properties of the new graft and evaluated the integration between the graft and aortic wall histologically and mechanically in canine models.Methods: The tissue-engineered vascular graft was woven to be partially degradable with a double-layered fiber (core; polyethylene terephthalate [PET], and sheath; polyglycolic acid [PGA]). The mechanical properties of the graft were assessed compared with a thin-walled woven polyester graft (control; 12 mm in diameter, 30 mm long). The stent-grafts, composed of a stainless Z stent (20 mm in diameter, 25 mm long) and a PET/PGA or control graft (n = 5 in each group), were implanted in the descending thoracic aorta of mongrel dogs for 2 months. We assessed the histologic findings of the explants and the degree of adhesion between the graft and aortic wall.Results: The PET/PGA graft achieved nearly the same mechanical properties as those of the control graft in tensile strength and flexibility, with slightly greater water permeability. At 2 months after implantation, in the PET/PGA group, the PGA component had degraded and been replaced by host tissue that contained a mixture of a-smooth muscle actin-positive cells and other host cells. The graft was a unified structure with the aorta. The adhesion strength between the graft and aortic wall was significantly enhanced in the PET/PGA group.Conclusions: The PET/PGA stent-graft demonstrated histologic and mechanical integration with the native aorta. This next-generation stent-graft might reduce the risk of migration and endoleaks, leading to preferable long-term results of endovascular aneurysm repair.
机译:目的:为防止血管内动脉瘤修复后的术后迁移和内漏,我们开发了一种组织工程化的血管移植物,通过将宿主组织募集到移植支架中与主动脉壁融合。在本研究中,我们在犬模型中评估了新移植物的力学性能,并通过组织学和机械学方法评估了移植物与主动脉壁之间的整合。方法:将组织工程化的血管移植物编织成可部分降解的双层结构纤维(芯;聚对苯二甲酸乙二醇酯[PET];外皮;聚乙醇酸[PGA])。与薄壁机织聚酯接枝(对照;直径12 mm,长30 mm)相比,评估了接枝的机械性能。将由不锈钢Z支架(直径20毫米,长25毫米)和PET / PGA或对照移植物(每组n = 5)组成的支架植入物植入杂种犬的降主动脉中,进行2次几个月。我们评估了外植体的组织学发现以及移植物与主动脉壁之间的粘附程度。结果:PET / PGA移植物在拉伸强度和柔韧性方面实现了与对照移植物几乎相同的机械性能,但水渗透性略高。植入后2个月,在PET / PGA组中,PGA组分已经降解,并被包含α-平滑肌肌动蛋白阳性细胞和其他宿主细胞混合物的宿主组织替代。移植物是与主动脉的统一结构。在PET / PGA组中,移植物与主动脉壁之间的粘附强度显着增强。结论:PET / PGA支架移植物表现出与天然主动脉的组织学和机械整合。这种下一代的支架移植物可能会降低迁移和内漏的风险,从而导致长期的血管内动脉瘤修复效果更好。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号