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光氧化稳定化异种心包的体外内皮化

In vitro endothelialization of photooxidatively stabilized xenogeneic pericardium.

作者信息

Bengtsson L A, Phillips R, Haegerstrand A N

机构信息

Department of Cardio-Thoracic Surgery, Huddinge Hospital, Stockholm, Sweden.

出版信息

Ann Thorac Surg. 1995 Aug;60(2 Suppl):S365-8. doi: 10.1016/0003-4975(95)00316-d.

Abstract

The possibility of improving the performance of heart valve bioprostheses and vascular biografts by means of preendothelialization with cultured autologous cells has been suggested. Such culture techniques are available, but the glutaraldehyde-preserved heart valve prostheses used clinically appear cytotoxic. Recently, dye-mediated photooxidation has been reported to stabilize pericardial tissue, possibly through the cross-linking of collagen fibrils. We have seeded cultured adult human saphenous vein endothelial cells (HSVECs) onto photooxidatively stabilized tissue and investigated the morphologic characteristics 7 days later. A confluent lining of cultured HSVECs similar to native endothelium was demonstrated by scanning electron microscopy. The presence of von Willebrand's factor, an integrin located at the interendothelial cell contacts (PECAM/CD 31), and the basement membrane component collagen type IV was demonstrated using monoclonal antibodies. The results were similar for the HSVECs seeded onto both bovine and porcine pericardial tissues. The results clearly indicate that the dye-mediated photooxidation technique produces a tissue that is cell compatible. Provided the HSVECs remain attached and retain antithrombotic and antiinflammatory properties, this appears to be a feasible way of endothelializing bioprosthetic heart valves before implantation.

摘要

有人提出通过用培养的自体细胞进行预内皮化来提高心脏瓣膜生物假体和血管生物移植物性能的可能性。这种培养技术是可行的,但临床上使用的戊二醛保存的心脏瓣膜假体似乎具有细胞毒性。最近,有报道称染料介导的光氧化作用可能通过胶原纤维的交联来稳定心包组织。我们将培养的成人隐静脉内皮细胞(HSVECs)接种到光氧化稳定的组织上,并在7天后研究其形态特征。通过扫描电子显微镜证实了培养的HSVECs形成了类似于天然内皮的汇合内衬。使用单克隆抗体证实了血管性血友病因子、位于内皮细胞间接触处的整合素(PECAM/CD 31)以及基底膜成分IV型胶原的存在。接种到牛心包组织和猪心包组织上的HSVECs结果相似。结果清楚地表明,染料介导的光氧化技术产生的组织具有细胞相容性。如果HSVECs保持附着并保留抗血栓和抗炎特性,这似乎是在植入前对生物人工心脏瓣膜进行内皮化的一种可行方法。

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