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Mechanisms of Endothelial Cell Attachment, Proliferation, and Differentiation on 4 Types of Platinum-Based Endovascular Coils

机译:四种铂基血管内皮细胞的内皮细胞附着,增殖和分化机制

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摘要

Objective: A subarachnoid hemorrhage is neurologically devastating, with 50% of patients becoming disabled or deceased. Advent of Guglielmi detachable coils in 1995 permitted endovascular treatment of cerebral aneurysms. Coiling is efficacious and safe, but durability needs improvement, as nearly 20% of patients require further invasive intervention secondary to aneurysm recurrence. The aim of this study is to develop an in vitro model of endothelial cell (EC) proliferation and differentiation on four types of platinum-based coils, using gene expression profiling to understand EC biology as they colonize and differentiate on coils. Methods: Human umbilical vein ECs were grown in vitro on platinum coil segments. Growth patterns were assessed as a function of coil type. Gene expression profiles for coil attached versus coil unattached ECs were determined using immunohistochemistry and gene array analysis. Results: ECs showed rapid, robust attachment to all coil types. Some detachment occurred within 24-48 hours. Significant growth of remaining attached cells occurred during the next week, creating a confluence on coils and within coil grooves. Similar growth curve results were obtained with human brain ECs on platinum-based coil surfaces. Differentiation markers in attached cells (α1, α2, β1 integrins) were expressed on immunostaining, whereas microarray gene expression revealed 48 up-regulated and 68 down-regulated genes after 24-hour growth on coils. Major pathways affected as a function of time of colonization on coils and coil type included those involved in regulation of cell cycle and cell signaling. Conclusions: We developed an in vitro model for evaluating endothelialization of platinum coils to optimize coil design to support robust EC colonization and differentiation. © 2014 Elsevier Inc. All rights reserved.
机译:目的:蛛网膜下腔出血在神经系统上具有破坏性,其中50%的患者致残或死亡。 1995年Guglielmi可拆卸线圈的出现允许对脑动脉瘤进行血管内治疗。卷取是有效且安全的,但耐用性需要改善,因为近20%的患者需要继发于动脉瘤复发的进一步侵入性干预。这项研究的目的是在四种类型的铂基线圈上建立内皮细胞(EC)增殖和分化的体外模型,使用基因表达谱来了解它们在线圈上定殖和分化时的EC生物学。方法:人脐静脉内皮细胞在铂线圈段上体外生长。生长模式被评估为线圈类型的函数。使用免疫组织化学和基因阵列分析确定了线圈附着的与线圈未附着的EC的基因表达谱。结果:EC对所有线圈类型均显示出快速,牢固的连接。在24-48小时内发生了一些脱离。在接下来的一周中,剩余的附着细胞显着生长,在线圈上和线圈凹槽内产生汇合。用人脑EC在铂基线圈表面上获得了相似的生长曲线结果。免疫染色表达附着细胞中的分化标记(α1,α2,β1整联蛋白),而微阵列基因表达则显示在线圈上生长24小时后有48个上调基因和68个下调基因。与线圈定殖时间和线圈类型有关的主要途径包括那些参与细胞周期调控和细胞信号转导的途径。结论:我们开发了一种体外模型,用于评估铂金线圈的内皮化,以优化线圈设计以支持稳固的EC定植和分化。 ©2014 Elsevier Inc.保留所有权利。

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