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聚合物涂层支架的生物学反应:体外分析及在髂动脉绵羊模型中的结果

Biologic response to polymer-coated stents: in vitro analysis and results in an iliac artery sheep model.

作者信息

Schürmann Karl, Lahann Joerg, Niggemann Pascal, Klosterhalfen Bernd, Meyer Julius, Kulisch Arthur, Klee Doris, Günther Rolf W, Vorwerk Dierk

机构信息

Departments of Diagnostic Radiology, Pathology, and Textile and Macromolecular Chemistry, University of Technology, Pauwelsstrasse 30, D-52057 Aachen, Germany.

出版信息

Radiology. 2004 Jan;230(1):151-62. doi: 10.1148/radiol.2301021071. Epub 2003 Nov 26.

Abstract

PURPOSE

To evaluate biologic response to poly(hydroxymethyl-p-xylylene-co-p-xylylene) (PHPX)-coated stents in vitro and in vivo in sheep.

MATERIALS AND METHODS

Physical stability, hemocompatibility, and cytotoxicity of the coating were first assessed in vitro. Thirty-six self-expanding nitinol (Memotherm), 24 stainless steel balloon-mounted (Palmaz), and 12 self-expanding nitinol (ZA) stents were coated with PHPX by using chemical vapor deposition polymerization. Seventy-two coated and 72 uncoated stents were placed into iliac arteries of 36 sheep. Sheep were classified into three groups of 12 animals each. In each group, six sheep were killed after 1 month; six, after 6 months. In each sheep, two uncoated stents were placed into one limb; two coated stents of the same type, into the opposite limb. In groups 1 and 2, Palmaz and Memotherm stents were used; in group 3, Memotherm and ZA stents were used. In groups 1 and 3, arteries were healthy. In group 2, arteries were pretreated with a Fogarty maneuver. Stent patency was measured with intravascular ultrasonography (US) and histologic analysis. Cellular response to coated and uncoated stents was assessed. Measurements were compared (Wilcoxon test).

RESULTS

In vitro, PHPX coating was stable; hemocompatibility and cytotoxicity were similar to those of stainless steel. In vivo, patency of coated and uncoated Palmaz and ZA stents was not different (P >.05). Patency of coated and uncoated Memotherm stents did not differ in four of six follow-up subgroups, but it was significantly reduced in group 2 after 6 months (intravascular US, P =.03; histologic analysis, P =.01) and in group 3 after 1 month (histologic analysis, P =.01). Histologically, the cellular response to coated and uncoated stents was not different (P >.05).

CONCLUSION

PHPX coating had good physical stability and biocompatibility in vitro and in vivo. Performance of coated and uncoated Palmaz and ZA stents was similar. Patency of Memotherm stents was similar in four of six follow-up subgroups. Materials effects did not result in severely enhanced neointimal hyperplasia.

摘要

目的

评估聚(羟甲基对二甲苯-co-对二甲苯)(PHPX)涂层支架在绵羊体内外的生物学反应。

材料与方法

首先在体外评估涂层的物理稳定性、血液相容性和细胞毒性。采用化学气相沉积聚合方法,对36个自膨胀镍钛合金(Memotherm)支架、24个不锈钢球囊扩张式(Palmaz)支架和12个自膨胀镍钛合金(ZA)支架进行PHPX涂层处理。将72个涂层支架和72个未涂层支架植入36只绵羊的髂动脉。绵羊分为三组,每组12只动物。每组中,6只绵羊在1个月后处死;6只在6个月后处死。在每只绵羊中,将两个未涂层支架植入一个肢体;将两个相同类型的涂层支架植入对侧肢体。在第1组和第2组中,使用Palmaz和Memotherm支架;在第3组中,使用Memotherm和ZA支架。在第1组和第3组中,动脉健康。在第2组中,动脉用Fogarty导管进行预处理。通过血管内超声(US)和组织学分析测量支架通畅情况。评估对涂层和未涂层支架的细胞反应。对测量结果进行比较(Wilcoxon检验)。

结果

在体外,PHPX涂层稳定;血液相容性和细胞毒性与不锈钢相似。在体内,涂层和未涂层的Palmaz和ZA支架的通畅情况无差异(P>.05)。在六个随访亚组中的四个中,涂层和未涂层的Memotherm支架的通畅情况无差异,但在第2组6个月后(血管内超声,P =.03;组织学分析,P =.01)和第3组1个月后(组织学分析,P =.01),通畅情况显著降低。组织学上,对涂层和未涂层支架的细胞反应无差异(P>.05)。

结论

PHPX涂层在体内外具有良好的物理稳定性和生物相容性。涂层和未涂层的Palmaz和ZA支架性能相似。在六个随访亚组中的四个中,Memotherm支架的通畅情况相似。材料效应未导致严重的内膜增生增强。

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