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Study of Bone Marrow Derived Stem Cells and Gene Therapy for Engineering Of Cardiovascular Grafts

机译:骨髓衍生干细胞和心血管移植工程基因治疗的研究

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Recent study shows that endothelial progenitor cells (EPCs) and gene therapy technologies are effective strategies in the inhibition of stenosis and thrombus formation and improving the patency rate of the vascular graft in vivo. In this study, rat EPCs were cultured from bone marrow, and plated in fibronectin-coated plates with EBM-2 medium. Bone marrow mesenchymal stem cells (MSCs) were cultured with alpha minimum essential medium (α-MEM). After two weeks, EPCs were immunohistochemically characterized using antibodies specific for endothelial cells. Retroviral vectors pMSCV-eNOS, pMSCV-tPA, pMSCV-LacZ and pMCSV-GFP were constructed. Retroviral particles were produced using packaging cell line 293T cells. Gene transfer was carried out by exposing cells to virus solution for 6 hours in the presence of 8μg/ml polybrene. For constructing vessels, MSCs and EPCs were seeded on fibronectin coated ePTFE graft in tissue culture condition for 2-4 weeks. The attachment and growth of cells were analyzed with scanning electron microscopy (SEM). Our data showed that the EPCs expressed VEGF, Lectin BS-1, RECA-1, indicating they are endothelial lineage. The concentrated retroviral particles showed many folds higher transduction efficiency to NIH 3T3 cells than the commercial reagent Fugene. SEM data showed dense attachment of MSCs on the graft surface. MSCs/EPCs co-culture gave much better cell coverage on the graft than culture of EPCs alone.
机译:最近的研究表明,内皮祖细胞(EPC)和基因治疗技术是抑制狭窄和血栓形成的有效策略,提高体内血管移植物的通畅率。在这项研究中,大鼠EPC从骨髓中培养,并用EBM-2培养基涂覆纤维素涂层板。骨髓间充质干细胞(MSCs)用α最小基本培养基(α-MEM)培养。两周后,使用针对内皮细胞特异的抗体免疫,对EPC进行免疫组织化学。构建了逆转录病毒载体PMSCV-ENOS,PMSCV-TPA,PMSCV-LACZ和PMCSV-GFP。使用包装细胞系293T细胞生产逆转录病毒颗粒。基因转移通过在8μg/ ml的聚紫烯存在下暴露于病毒溶液6小时来进行。对于构建血管,在组织培养条件下接种在纤连蛋白涂覆的EPTFE移植物上播种MSC和EPC 2-4周。用扫描电子显微镜(SEM)分析细胞的附着和生长。我们的数据表明,EPC表达了VEGF,凝集素BS-1,RECA-1,表明它们是内皮谱系。浓缩的逆转录病毒颗粒显示出与NIH 3T3细胞的转导效率较高,而不是商业试剂FUGENE。 SEM数据显示了移植表面上MSC的密集附接。 MSC / EPCS共同文化在移植物上给予了比单独的EPC培养更好的细胞覆盖率。

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