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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Human vascular endothelial cell morphology and functional cytokine secretion influenced by different size of HA micro-pattern on titanium substrate
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Human vascular endothelial cell morphology and functional cytokine secretion influenced by different size of HA micro-pattern on titanium substrate

机译:钛基质上不同大小的HA微图案对人血管内皮细胞形态和功能性细胞因子分泌的影响

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Both coverage and morphology of endothelial cells (ECs) on blood contact biomaterials were involved in the antithrombotic and anti-proliferative process. However, most researches have been focused on the ECs amount on the materials surface, but not the morphology. As of now, little is known about the relationship between the ECs morphology and the cytokine secretion, especially those anticoagulant factors on cardiovascular implants. In this study, three sizes of parallel micro-stripes of high molecular weight hyaluronic acid (HMW-HA) were fabricated on the NaOH-treated titanium (TiOH) surface. These micro-patterns of ridges/grooves were used to regulate the distribution, morphology and cytokine secretion of the ECs. The roughness of bare Ti and TiOH was detected by AFM, and the micro-pattern sizes were imaged by SEM. The chemical bonding of HMW-HA to the TiOH surface was demonstrated by FTIR, and the element distribution was examined by EDX. The morphology index of the ECs was analyzed to evaluate the orientation, elongation and spreading of the ECs on the micro-patterned surfaces and the control, while the cell number and cytokine secretion of the ECs were measured by related kits. The characterization of the ECs demonstrated that the bigger L/. B index improved NO, PGI2, Fn release and TM, TFPI, E-Selectin expression as well as reducing vWF secretion. The platelet adhesion test and the whole blood clotting time test proved the increasing anticoagulation property of ECs with their elongation increasing. These results suggest that ECs morphology-related function can be regulated by different sizes of micro-patterns.
机译:血液接触生物材料上的内皮细胞(ECs)的覆盖范围和形态都参与了抗血栓形成和抗增殖过程。但是,大多数研究都集中在材料表面的ECs数量上,而不是在形态上。到目前为止,关于ECs形态与细胞因子分泌之间的关系,尤其是心血管植入物上的抗凝因子之间的关系知之甚少。在这项研究中,在氢氧化钠处理的钛(TiOH)表面上制备了三种尺寸的高分子量透明质酸(HMW-HA)平行微带。这些脊/槽的微图案用于调节EC的分布,形态和细胞因子分泌。通过AFM检测裸露的Ti和TiOH的粗糙度,并通过SEM对微图案尺寸进行成像。 FTIR证明了HMW-HA与TiOH表面的化学键合,EDX检验了元素分布。分析EC的形态学指数以评估EC在微图案表面和对照上的取向,伸长和铺展,同时通过相关试剂盒测量EC的细胞数目和细胞因子分泌。 EC的特性表明,L /较大。 B指数改善了NO,PGI2,Fn的释放以及TM,TFPI,E-选择素的表达,并减少了vWF的分泌。血小板粘附试验和全血凝固时间试验证明,ECs的抗凝性能随着伸长率的增加而增加。这些结果表明,ECs形态相关的功能可以通过不同大小的微模式来调节。

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