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首页> 外文期刊>Journal of biomedical materials research, Part A >Evaluation of thrombogenic potential of electrospun bioresorbable vascular graft materials: Acute monocyte tissue factor expression
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Evaluation of thrombogenic potential of electrospun bioresorbable vascular graft materials: Acute monocyte tissue factor expression

机译:电纺生物可吸收血管移植材料的血栓形成潜力评估:急性单核细胞组织因子表达

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The purpose of this study was to quantify the acute expression of tissue factor (TF) by monocytes on interaction with electrospun bioresorbable constructs. A minimal expression of TF will demonstrate the potential for scaffolds to be used as a vascular graft without enhanced risk of failure from acute thrombotic occlusion. Polydioxanone (PDO) (60, 80, 120, and 160 mg/mL) and polycaprolactone (PCL) (80, 10, and 160 mg/mL) dissolved in 1,1,1,3,3,3 hexafluoro-2-propanol (HFP) were electrospun to form fibrous scaffolds. Circular discs (10 mm diameter) of each scaffold were disinfected and seeded with human monocytes (50,000 cells/well). The discs were statically cultured under standard conditions (378C and 5% CO2), and removed after 24 h for TF analysis with an In-Cell Western assay. Fiber diameter was calculated through ImageTool analysis of scanning electron micrographs. Acute monocyte interaction with scaffolds of PCL (120 mg/mL) resulted in the lowest amount of TF expressed (4 ng/disc), whereas scaffolds of 160 mg/mL PDO elicited the highest amount of TF expressed (51 ng/disc). TF levels expressed on all scaffolds were comparable with the amount expressed on e-PTFE (20 ng/disc). Preliminary data for TF expression on scaffolds of silk (70 mg/mL and 150 mg/mL) and silk:PCL (100 mg/mL, v/v) blends (50:50 and 70:30) resulted in values of TF expression ranging from 0 to 24 ng. Results from this study reveal electrospun grafts composed of PDO and PCL provide no greater risk of failure from an acute thrombotic occlusion due to TF expression when compared with that of the standard e-PTFE graft.
机译:这项研究的目的是定量单核细胞与电纺生物可吸收结构相互作用时组织因子(TF)的急性表达。 TF的最低表达将显示出将支架用作血管移植物的潜力,而不会增加急性血栓栓塞失败的风险。聚二恶烷酮(PDO)(60、80、120和160 mg / mL)和聚己内酯(PCL)(80、10和160 mg / mL)溶于1,1,1,3,3,3六氟-2-将丙醇(HFP)电纺丝形成纤维状支架。将每个支架的圆盘(直径10毫米)消毒并接种人单核细胞(50,000个细胞/孔)。将圆盘在标准条件(378°C和5%CO2)下静态培养,并在24小时后取出以进行In-Cell Western分析进行TF分析。纤维直径通过ImageTool分析扫描电子显微照片计算得出。急性单核细胞与PCL支架(120 mg / mL)的相互作用导致表达的TF最低(4 ng / disc),而160 mg / mL PDO支架引起的TF表达最高(51 ng / disc)。在所有支架上表达的TF水平与e-PTFE(20 ng / disc)表达的水平相当。蚕丝(70 mg / mL和150 mg / mL)和蚕丝:PCL(100 mg / mL,v / v)共混物(50:50和70:30)的支架上TF表达的初步数据得出TF表达值范围从0到24 ng。这项研究的结果表明,与标准e-PTFE移植物相比,由PDO和PCL组成的电纺丝移植物不会因TF表达而导致急性血栓阻塞的失败风险更大。

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