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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Long-term animal implantation study of biotube-autologous small-caliber vascular graft fabricated by in-body tissue architecture.
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Long-term animal implantation study of biotube-autologous small-caliber vascular graft fabricated by in-body tissue architecture.

机译:体内组织结构制造的生物管自体小口径血管移植物的长期动物植入研究。

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摘要

A mold for the preparation of an in-body tissue architecture-induced autologous vascular graft, termed "biotube," was prepared by covering a main silicone rod (outer diameter, 3 mm; length, 30 mm) with two pieces of polyurethane sponge tubes (internal diameter, 3 mm; length, 3 mm) at both ends. The molds were embedded into the dorsal subcutaneous pouch of rabbits (weighing ca. 2 kg) for 2 months. After harvesting the rods with the formed surrounding tissues, the rods were removed to create biotubes impregnated with anastomotic reinforcement cuffs at both ends. The biotubes had homogeneous, thin connective tissue wall (thickness, 76 +/- 37 mum) that was primarily composed of collagen and fibroblasts. One biotube was loaded with argatroban and autoimplanted in the carotid artery for 26 months. Neither antiplatelet nor anticoagulant agents were administered, except for an intraoperative heparin injection. Follow-up angiography showed no aneurysm formation, rupturing, or stenosis during implantation. At the end of implantation, the wall thickness of biotube (212 +/- 24 mum at the anastomosis portion and 150 +/- 14 mum at the midportion) was similar to that of native artery (189 +/- 23 mum). The luminal surface was completely covered with endothelial cells on the formed lamina elastica interna-like layer. The regenerated vascular walls comprised multilayered smooth muscle cells and dense collagen fibers with regular circumferential orientation. A remarkable multilayered elastin fiber network was observed near the anastomosis portion. Biotubes could thus be used as small-caliber vascular prostheses that greatly facilitate the healing process and exhibit excellent biocompatibility.
机译:通过用两根聚氨酯海绵管覆盖一根硅胶主棒(外径3 mm;长度30 mm),制备用于制备体内组织结构诱导的自体血管移植物的模具,称为“生物管”。 (两端直径为3毫米;长度为3毫米)。将霉菌埋入兔子的背部皮下袋(重约2 kg)中2个月。在收获具有形成的周围组织的杆之后,将杆移出以产生在两端均充满了吻合增强箍的生物管。生物管具有均匀,薄的结缔组织壁(厚度为76 +/- 37毫米),主要由胶原蛋白和成纤维细胞组成。一个生物管中装有阿加曲班,并在颈动脉中自动植入26个月。除术中注射肝素外,均未给予抗血小板和抗凝剂。随访血管造影显示在植入过程中无动脉瘤形成,破裂或狭窄。植入结束时,生物管的壁厚(吻合处为212 +/- 24 mm,中部为150 +/- 14 mm)与天然动脉的壁厚(189 +/- 23 mum)相似。腔表面完全被形成的椎板间质层上的内皮细胞覆盖。再生的血管壁包括多层平滑肌细胞和具有规则圆周方向的致密胶原纤维。在吻合部位附近观察到了明显的多层弹性纤维网络。因此,生物管可以用作小口径的血管假体,极大地促进了愈合过程并表现出出色的生物相容性。

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