Long-term results of cell-free biodegradable scaffolds for in situ tissue engineering of pulmonary artery in a canine model

被引:39
作者
Matsumura, Goki [1 ]
Isayama, Noriko [1 ]
Matsuda, Shojiro [2 ]
Taki, Kensuke [2 ]
Sakamoto, Yuki [2 ]
Ikada, Yoshito [3 ]
Yamazaki, Kenji [1 ]
机构
[1] Tokyo Womens Med Univ, Heart Inst Japan, Shinjuku Ku, Tokyo 1628666, Japan
[2] Gunze Ltd, Dept Res & Dev, Ayabe, Kyoto 6258512, Japan
[3] Nara Med Univ, Dept Indoor Environm Med, Kashihara, Nara 6348521, Japan
关键词
Surgery; Vasculature; Tissue engineering; Biodegradable polymers; Vascular grafts; CONGENITAL HEART-DISEASE; BONE-MARROW-CELLS; VASCULAR AUTOGRAFTS; RECONSTRUCTION; PREVALENCE;
D O I
10.1016/j.biomaterials.2013.05.037
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
We previously developed a cell-free, biodegradable scaffold for in-situ tissue-engineering vasculature (iTEV) in a canine inferior vena cava (IVC) model. In this study, we investigated application of this scaffold for iTEV of the pulmonary artery (iTEV-PA) in a canine model. In vivo experiments were conducted to determine scaffold characteristics and long-term efficacy. Biodegradable scaffolds comprised poly-glycolide knitted fibers and an L-lactide and epsilon-caprolactone copolymer sponge, with an outer glycolide and epsilon-caprolactone copolymer monofilament reinforcement. Tubular scaffolds (8 mm diameter) were implanted into the left pulmonary artery of experimental animals (n = 7) and evaluated up to 12 months postoperatively. Angiography of iTEV-PA after 12 months showed a well-formed vasculature without marked stenosis, aneurysmal change or thrombosis of iTEV-PA. Histological analysis revealed a vessel-like vasculature without calcification. However, vascular smooth muscle cells were not well-developed 12 months post-implantation. Biochemical analyses showed no significant difference in hydroxyproline and elastin content compared with native PA. Our long-term results of cell-free tissue-engineering of PAs have revealed the acceptable qualities and characteristics of iTEV-PAs. The strategy of using this cell-free biodegradable scaffold to create relatively small PAs could be applicable in pediatric cardiovascular surgery requiring materials. (C) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:6422 / 6428
页数:7
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