Chen C, Lumsden A B, Ofenloch J C, Noe B, Campbell E J, Stratford P W, Yianni Y P, Taylor A S, Hanson S R
Department of Surgery, Emory University School of Medicine, Atlanta, GA, USA.
Ann Vasc Surg. 1997 Jan;11(1):74-9. doi: 10.1007/s100169900013.
This study attempts to prevent neointimal hyperplasia by coating the graft luminal surface with a derivative of phosphorylcholine (PC), thereby providing a biocompatible surface with the assumption of limiting pannus tissue ingrowth from the graft anastomoses. Bilateral carotid artery bypass grafts were placed in six dogs using expanded polytetrafluoroethylene (ePTFE). In each animal, one carotid arterial-arterial conduit was constructed using a graft having a PC coating over the entire luminal surface of the graft. On the contralateral side, uncoated graft served as a control. The processed specimens were analyzed for graft neointimal area and neointimal thickness. Cell proliferation was assessed by staining for bromodeoxyuridine (BrdU) incorporation. All grafts were patent except one control graft that was occluded at 4 weeks. There was a significant reduction in the anastomotic graft neointimal area between the treated and control groups (0.27 +/- 0.17 mm2 versus 0.53 +/- 0.13 mm2, respectively; p = 0.008). Furthermore, the BrdU labeling index in the graft neointimal tissues was significantly smaller (p < 0.001) in the treated group (2.64 +/- 0.77%) as compared with the control group (5.07 +/- 0.83%). These data demonstrate that PC coating of ePTFE significantly reduces graft neointimal hyperplasia and cell proliferation in a canine carotid artery bypass model. The application of PC within the ePTFE graft effectively blocks tissue ingrowth from the adjacent native vessel, thereby preserving the anastomosis luminal diameter.
本研究试图通过用磷酰胆碱(PC)衍生物包被移植物管腔表面来预防新生内膜增生,从而提供一个生物相容性表面,假定可限制血管翳组织从移植物吻合口向内生长。使用膨体聚四氟乙烯(ePTFE)为6只犬进行双侧颈动脉旁路移植术。在每只动物中,使用在移植物整个管腔表面具有PC涂层的移植物构建一条颈动脉-动脉导管。在对侧,未涂层的移植物用作对照。对处理后的标本进行移植物新生内膜面积和新生内膜厚度分析。通过溴脱氧尿苷(BrdU)掺入染色评估细胞增殖。除1个在4周时闭塞的对照移植物外,所有移植物均保持通畅。治疗组和对照组之间吻合口移植物新生内膜面积有显著减少(分别为0.27±0.17mm²和0.53±0.13mm²;p = 0.008)。此外,与对照组(5.07±0.83%)相比,治疗组移植物新生内膜组织中的BrdU标记指数显著更小(p < 0.001)(2.64±0.77%)。这些数据表明,在犬颈动脉旁路模型中,ePTFE的PC涂层可显著减少移植物新生内膜增生和细胞增殖。在ePTFE移植物中应用PC可有效阻止来自相邻天然血管的组织向内生长,从而保持吻合口管腔直径。