首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Autologous Endothelial Progenitor Cell-Seeding Technology and Biocompatibility Testing For Cardiovascular Devices in Large Animal Model
【2h】

Autologous Endothelial Progenitor Cell-Seeding Technology and Biocompatibility Testing For Cardiovascular Devices in Large Animal Model

机译:大型动物模型中心血管设备的自体内皮祖细胞播种技术和生物相容性测试

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Implantable cardiovascular devices are manufactured from artificial materials (e.g. titanium (Ti), expanded polytetrafluoroethylene), which pose the risk of thromboemboli formation1,2,3. We have developed a method to line the inside surface of Ti tubes with autologous blood-derived human or porcine endothelial progenitor cells (EPCs)4. By implanting Ti tubes containing a confluent layer of porcine EPCs in the inferior vena cava (IVC) of pigs, we tested the improved biocompatibility of the cell-seeded surface in the prothrombotic environment of a large animal model and compared it to unmodified bare metal surfaces5,6,7 (>Figure 1). This method can be used to endothelialize devices within minutes of implantation and test their antithrombotic function in vivo. Peripheral blood was obtained from 50 kg Yorkshire swine and its mononuclear cell fraction cultured to isolate EPCs4,8. Ti tubes (9.4 mm ID) were pre-cut into three 4.5 cm longitudinal sections and reassembled with heat-shrink tubing. A seeding device was built, which allows for slow rotation of the Ti tubes. We performed a laparotomy on the pigs and externalized the intestine and urinary bladder. Sharp and blunt dissection was used to skeletonize the IVC from its bifurcation distal to the right renal artery proximal. The Ti tubes were then filled with fluorescently-labeled autologous EPC suspension and rotated at 10 RPH x 30 min to achieve uniform cell-coating9. After administration of 100 USP/ kg heparin, both ends of the IVC and a lumbar vein were clamped. A 4 cm veinotomy was performed and the device inserted and filled with phosphate-buffered saline. As the veinotomy was closed with a 4-0 Prolene running suture, one clamp was removed to de-air the IVC. At the end of the procedure, the fascia was approximated with 0-PDS (polydioxanone suture), the subcutaneous space closed with 2-0 Vicryl and the skin stapled closed.After 3 - 21 days, pigs were euthanized, the device explanted en-block and fixed. The Ti tubes were disassembled and the inner surfaces imaged with a fluorescent microscope.We found that the bare metal Ti tubes fully occluded whereas the EPC-seeded tubes remained patent. Further, we were able to demonstrate a confluent layer of EPCs on the inside blood-contacting surface.Concluding, our technology can be used to endothelialize Ti tubes within minutes of implantation with autologous EPCs to prevent thrombosis of the device. Our surgical method allows for testing the improved biocompatibility of such modified devices with minimal blood loss and EPC-seeded surface disruption.
机译:植入式心血管设备是由人造材料(例如钛(Ti),膨胀的聚四氟乙烯)制成的,存在形成血栓栓塞的危险 1,2,3 。我们已经开发出一种方法,用自体血源性人或猪内皮祖细胞(sPC) 4 衬里Ti管的内表面。通过在猪的下腔静脉(IVC)中植入含有猪EPC融合层的Ti管,我们测试了大型动物模型在血栓形成前环境中细胞接种表面改善的生物相容性,并将其与未修饰的裸金属表面进行了比较 5,6,7 (>图1 )。此方法可用于在植入后几分钟内使器械内皮化,并在体内测试其抗血栓形成功能。从50公斤约克郡猪中获取外周血,并对其单核细胞级分进行培养以分离EPCs 4,8 。将钛管(9.4毫米内径)预先切成三个4.5厘米的纵向截面,并用热缩管重新组装。内置了一个播种设备,可以使钛管缓慢旋转。我们对猪进行了剖腹手术,将肠和膀胱外部化。使用锋利而钝的解剖法将IVC从其分叉远端向右肾动脉近端骨骼化。然后用荧光标记的自体EPC悬浮液填充Ti管,并在10 RPH x 30 min旋转以实现均匀的细胞包被 9 。给予100 USP / kg肝素后,将IVC的两端和腰静脉夹紧。进行4厘米的静脉切开术,将装置插入并充满磷酸盐缓冲盐水。当用4-0 Prolene缝合线关闭静脉切开术时,取下一个夹子以对IVC进行除气。手术结束时,用0-PDS(聚二恶烷酮缝合线)对筋膜进行近似,用2-0 Vicryl封闭皮下空间,并缝合皮肤。3-21天后,对猪实施安乐死,将装置植入阻止并修复。拆下钛管,并用荧光显微镜对内表面成像。我们发现裸露的钛管完全被堵塞,而EPC播种的管仍然是专利。此外,我们能够在内部血液接触表面上展示一层EPC汇合层。结论是,我们的技术可用于在植入自体EPC的几分钟内使Ti管内皮化,以防止装置血栓形成。我们的外科手术方法可以测试这种改良型设备在减少失血和EPC播种的表面破坏的情况下改善的生物相容性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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