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血小板在不锈钢、螺旋形及编织聚丙交酯支架上的沉积:一项对比研究。

Platelet deposition on stainless steel, spiral, and braided polylactide stents. A comparative study.

作者信息

Hietala Eeva-Maija, Maasilta Paula, Juuti Hanne, Nuutinen Juha-Pekka, Harjula Ari L J, Salminen Ulla-Stina, Lassila Riitta

机构信息

Department of Surgery, PL 340, Helsinki University Hospital, Fin-00029 HUS, Finland.

出版信息

Thromb Haemost. 2004 Dec;92(6):1394-401. doi: 10.1160/TH04-02-0124.

Abstract

Platelets play a key role in (sub)acute thrombotic occlusion after stenting. We examined the possible differences between biodegradable polylactide (PLA) and stainless steel (SS) stents in platelet attachment and morphology after whole blood perfusion. PLA stents of different configurations (spiral/braided) and polycaprolactone-polylactide (PCL-PLA)-coatings, or SS stents were implanted into a PVC tube (Ø 3.2 mm), with or without precoating of the tube with type-I collagen. PPACK (30 microM)-anticoagulated blood with (3)H-serotonin prelabeled platelets was perfused (flow rate: 30 ml/min, 90 s) over the stents. Platelet deposition was assessed by scintillation counting and morphology by scanning electron microscopy (SEM). To examine coagulation activation, plasma prothrombin fragments (F1 + 2) were measured before and after the perfusion. Protein deposition on PLA/SS stents was assessed at augmented shear forces mimicking coronary flow (rate: 60 ml/min, 60 s) under minimal anticoagulation (PPACK 1 microM). More platelets deposited on PLA stents than on SS stents under all study conditions (p < 0.03). Under anticoagulation (PPACK 30 microM) the generation of F1 + 2 remained unaltered. Under higher flow rate and limited anticoagulation SS stents accumulated 3.27 +/- 0.75 microg and PLA stents 5.25 +/- 1.74 microg of protein (Mean +/- SD, p <0.95). Among all biodegradable stents, the braided PLA stent coated with PCL-PLA-heparin accumulated the fewest platelets (p < 0.02). In SEM, signs of platelet activation on braided heparin-coated PLA stents, when compared with uncoated braided PLA/SS stents, appeared modest. In conclusion, PCL-PLAheparin coating of biodegradable stents may enhance their hemocompatibility, expressed by less platelet deposition. Nevertheless, materials, design, and coating techniques of biodegradable stents must be further developed.

摘要

血小板在支架置入后的(亚)急性血栓形成闭塞中起关键作用。我们研究了可生物降解聚丙交酯(PLA)支架和不锈钢(SS)支架在全血灌注后血小板黏附及形态方面的可能差异。将不同构型(螺旋形/编织形)的PLA支架、聚己内酯-聚丙交酯(PCL-PLA)涂层支架或SS支架植入聚氯乙烯管(直径3.2毫米)中,该管有或没有预先用I型胶原包被。用PPACK(30微摩尔)抗凝且含有用(3)H-5-羟色胺预标记血小板的血液以30毫升/分钟的流速灌注(90秒)通过支架。通过闪烁计数评估血小板沉积情况,通过扫描电子显微镜(SEM)观察形态。为检测凝血激活情况,在灌注前后测量血浆凝血酶原片段(F1 + 2)。在模拟冠状动脉血流的增强剪切力(流速:60毫升/分钟,60秒)及最小抗凝(PPACK 1微摩尔)条件下评估蛋白质在PLA/SS支架上的沉积。在所有研究条件下,PLA支架上沉积的血小板均多于SS支架(p < 0.03)。在抗凝状态下(PPACK 30微摩尔),F1 + 2的生成未发生改变。在更高流速及有限抗凝条件下,SS支架积累了3.27±0.75微克蛋白质,PLA支架积累了5.25±1.74微克蛋白质(平均值±标准差,p <0.95)。在所有可生物降解支架中,涂有PCL-PLA-肝素的编织PLA支架积累的血小板最少(p < 0.02)。在扫描电子显微镜下,与未涂覆的编织PLA/SS支架相比,编织肝素涂层PLA支架上的血小板激活迹象不明显。总之,可生物降解支架的PCL-PLA-肝素涂层可通过减少血小板沉积来增强其血液相容性。然而,可生物降解支架的材料、设计及涂层技术仍需进一步改进。

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