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The development of an extra-anatomic tissue-engineered artery with collateral arteries for therapeutic angiogenesis in ischemic hind limb

机译:具有侧支动脉的解剖外组织工程动脉的发展,用于缺血性后肢的治疗性血管生成

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To develop tissue-engineered arteries (TEAs) with collateral arteries(CAs) in ischemic hind limb goat models(IHLMs). The IHLMs created by removing femoral arteries were divided into non-treated control group(NG); non-catheter group (NCG) in which TEA was anastomosed to external iliac artery(EIA), and surrounded with collagen sponge containing autologous MSCs and VEGF-gelatin microspheres, the distal end of TEA was ligated; catheter group(CG) which received the same procedure as NCG, also received heparin infusion through catheter in EIA. TEA patency was assessed weekly by Ultrasound. The TEA and CAs were assessed by angiography, gross examination, histology and electron microscopy. In CG, TEAs remained patent for 1 month, but became partly occluded 1 week after catheter withdrawn. In NCG, TEAs were occluded 1 week after implantation. Angiography demonstrated that communication between CAs arising from the TEAs and the native vessels was established in both groups. NCG had fewer CAs than CG (P??0.01). At 40 days, TEAs in CG demonstrated of endothelium formation, smooth muscle cells infiltration and collagen regeneration. The CG had more capillaries and mature vessels in adventia of TEAs than NCG (P??0.01). CG group also had more vessels around TEAs than NCG (P??0.01) or NG (P??0.001).
机译:在缺血性后肢山羊模型(IHLM)中开发具有侧支动脉(CA)的组织工程动脉(TEA)。取自股动脉的IHLM分为未治疗的对照组(NG)。非导管组(NCG),将TEA吻合到external外动脉(EIA),并用含有自体MSC和VEGF-明胶微球的胶原海绵包裹,结扎TEA的远端;导管组(CG)接受与NCG相同的操作,在EIA中也通过导管输注肝素。每周通过超声评估TEA的通畅性。通过血管造影,肉眼检查,组织学和电子显微镜评估TEA和CA。在CG中,TEA保留了专利权1个月,但在拔出导管后1周被部分阻塞。在NCG中,TEA在植入后1周被阻塞。血管造影显示,两组均建立了由TEA产生的CA与天然血管之间的通讯。 NCG的CA比CG少(P <0.01)。 40天时,CG中的TEA表现出内皮形成,平滑肌细胞浸润和胶原蛋白再生。在TEA外膜中,CG的毛细血管和成熟血管比NCG多(P <0.01)。 CG组在TEA周围的血管也比NCG(P 0.01)或NG(P 0.001)多。

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