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首页> 外文期刊>Acta biomaterialia >Spatial and temporal evaluation of cell attachment to printed polycaprolactone microfibres
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Spatial and temporal evaluation of cell attachment to printed polycaprolactone microfibres

机译:细胞附着在印刷的聚己内酯微纤维上的时空评估

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Surface topography plays a crucial role in influencing cellular responses and has therefore been utilized in the development of numerous implantable devices. Whilst numerous studies have either investigated cell attachment or migration post-Attachment, few have looked at the early-stages of this process temporally. The aim of this study was to evaluate the use of time-lapse microscopy to study the behaviour of fibroblasts cultured with polycaprolactone microfibres and to assess spatially and temporally the cell-structure interaction over a 24 h period. Ordered polymeric structures were printed (predetermined) onto glass substrates using an electrohydrodynamic direct write process to produce fine (3-5 ??m wide) structures. Fibroblast attachment and migration were characterized as a function of distance perpendicular from structures (??17.3, 34.6 and 51.9 ??m). The use of time-lapse microscopy revealed a gradual decrease in cell attachment as the distance from the microfibres was increased. The technique also revealed that some cells were attaching and detaching from the microfibre multiple times. Our findings demonstrate that time-lapse microscopy is a useful technique for evaluating early-stage cell-biomaterial interaction that is capable of recording important events that might otherwise be overlooked. ? 2012 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:表面形貌在影响细胞反应中起着至关重要的作用,因此已被用于众多植入式设备的开发中。尽管许多研究要么研究了细胞附着,要么研究了附着后的迁移,但很少有人从时间上看待这一过程的早期阶段。这项研究的目的是评估延时显微镜的使用,以研究用聚己内酯微纤维培养的成纤维细胞的行为,并评估24小时内在空间和时间上的细胞结构相互作用。使用电液动力学直接写入工艺将有序的聚合物结构印刷(预定)在玻璃基板上,以产生精细的(3-5微米宽)结构。成纤维细胞附着和迁移的特征是与结构垂直距离的函数(Δε17.3、34.6和51.9Δεm)。延时显微镜的使用显示,随着与微纤维的距离增加,细胞附着逐渐减少。该技术还揭示了一些细胞多次附着和脱离微纤维。我们的发现表明,延时显微镜是一种用于评估早期细胞与生物材料相互作用的有用技术,该技术能够记录可能被忽略的重要事件。 ? 2012年Acta Materialia Inc.由Elsevier Ltd.发行。保留所有权利。

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