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首页> 外文期刊>Journal of land use science >Electrospun vascular grafts fabricated from poly(L-lactide-co-epsilon-caprolactone) used as a bypass for the rabbit carotid artery
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Electrospun vascular grafts fabricated from poly(L-lactide-co-epsilon-caprolactone) used as a bypass for the rabbit carotid artery

机译:从聚(L-丙交酯-Co-epsilon-Caprolodone)制造的Electromun血管移植物用作兔颈动脉的旁路

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摘要

The study involved the electrospinning of the copolymer poly(L-lactide-co-epsilon-caprolactone) (PLCL) into tubular grafts. The subsequent material characterization, including micro-computed tomography analysis, revealed a level of porosity of around 70%, with pore sizes of 9.34 +/- 0.19 mu m and fiber diameters of 5.58 +/- 0.10 mu m. Unlike fibrous polycaprolactone, the electrospun PLCL copolymer promoted fibroblast and endothelial cell adhesion and proliferation in vitro. Moreover, the regeneration of the vessel wall was detected following implantation and, after six months, the endothelialization of the lumen and the infiltration of arranged smooth muscle cells producing collagen was observed. However, the degradation rate was found to be accelerated in the rabbit animal model. The study was conducted under conditions that reflected the clinical requirements-the prostheses were sutured in the end-to-side fashion and the long-term end point of prosthesis healing was assessed. The regeneration of the vessel wall in terms of endothelialization, smooth cell infiltration and the presence of collagen fibers was observed after six months in vivo. A part of the grafts failed due to the rapid degradation rate of the PLCL copolymer.
机译:该研究涉及将共聚物聚(L-丙交酯 - ε-己内酯)(PLCL)的静电纺丝到管状移植物中。随后的材料表征,包括微计算断层扫描分析,透露孔隙率约为70%,孔径为9.34 +/-0.19μm,纤维直径为5.58 +/-0.10μm。与纤维聚己内酯不同,电纺PLCL共聚物促进成纤维细胞和内皮细胞粘附和体外增殖。此外,在植入后检测到血管壁的再生,并且在六个月后,观察到腔内的内皮和布置的平滑肌细胞产生胶原蛋白的渗透。然而,发现兔动物模型中的降解率加速。该研究在反映临床要求的条件下进行 - 在尾端时尚缝合假体,评估假体愈合的长期终点。在体内六个月后观察到内皮化,平滑细胞浸润和胶原纤维的存在,在内皮化,光滑细胞浸润和存在的存在方面的再生。由于PLCL共聚物的快速降解速率,移植物的一部分失效。

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  • 来源
    《Journal of land use science》 |2018年第6期|共16页
  • 作者单位

    Tech Univ Liberec Fac Text Engn Dept Nonwovens &

    Nanofibrous Mat Studentska 1402-2 Liberec 46001 Czech Republic;

    Tech Univ Liberec Fac Text Engn Dept Nonwovens &

    Nanofibrous Mat Studentska 1402-2 Liberec 46001 Czech Republic;

    Tech Univ Liberec Fac Text Engn Dept Nonwovens &

    Nanofibrous Mat Studentska 1402-2 Liberec 46001 Czech Republic;

    Tech Univ Liberec Fac Text Engn Dept Nonwovens &

    Nanofibrous Mat Studentska 1402-2 Liberec 46001 Czech Republic;

    Tech Univ Liberec Fac Text Engn Dept Nonwovens &

    Nanofibrous Mat Studentska 1402-2 Liberec 46001 Czech Republic;

    Tech Univ Liberec Fac Text Engn Dept Nonwovens &

    Nanofibrous Mat Studentska 1402-2 Liberec 46001 Czech Republic;

    Tech Univ Liberec Fac Text Engn Dept Nonwovens &

    Nanofibrous Mat Studentska 1402-2 Liberec 46001 Czech Republic;

    Tech Univ Liberec Inst Nanomat Adv Technol &

    Innovat Dept Ind Technol Studentska 1402-2 Liberec 46001 Czech Republic;

    Tech Univ Liberec Inst Nanomat Adv Technol &

    Innovat Dept Nanomat Nat Sci Studentska 1402-2 Liberec 46001 Czech Republic;

    Charles Univ Prague Fac Med 1 Inst Anat Inst Dent Med Inst Pathol Physiol Katerinska 32 Prague 12108 2 Czech Republic;

    Charles Univ Prague Fac Med 1 Inst Anat Inst Dent Med Inst Pathol Physiol Katerinska 32 Prague 12108 2 Czech Republic;

    Charles Univ Prague Fac Med 1 Inst Anat Inst Dent Med Inst Pathol Physiol Katerinska 32 Prague 12108 2 Czech Republic;

    Inst Expt Med ASCR Vvi Videnska 1083 Prague 14220 4 Czech Republic;

    Inst Expt Med ASCR Vvi Videnska 1083 Prague 14220 4 Czech Republic;

    Charles Univ Prague Fac Med Pilsen Dept Histol &

    Embryol &

    Biomed Ctr Karlovarska 48 Plzen 30166 Czech Republic;

    Charles Univ Prague Fac Med Pilsen Dept Histol &

    Embryol &

    Biomed Ctr Karlovarska 48 Plzen 30166 Czech Republic;

    Charles Univ Prague Fac Med Pilsen Dept Histol &

    Embryol &

    Biomed Ctr Karlovarska 48 Plzen 30166 Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    vascular graft; electrospinning; copolymer poly-L-lactide-co-epsilon-caprolactone; rabbit animal model;

    机译:血管移植物;静电纺丝;共聚物聚-L-丙交酯 - 共ε-己内酯;兔动物模型;

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