Long-term results of tissue-engineered small-caliber vascular grafts in a rat carotid arterial replacement model

被引:0
|
作者
Fumiaki Kuwabara
Yuji Narita
Aika Yamawaki-Ogata
Makoto Satake
Hiroaki Kaneko
Hideki Oshima
Akihiko Usui
Yuichi Ueda
机构
[1] Gifu Prefectural Tajimi Hospital,Department of Cardiovascular Surgery
[2] Nagoya University Graduate School of Medicine,Department of Cardiac Surgery
[3] Teijin Limited,Technology Innovation Center
来源
Journal of Artificial Organs | 2012年 / 15卷
关键词
Tissue engineering; Small-caliber vascular graft; Long-term result;
D O I
暂无
中图分类号
学科分类号
摘要
The concept of tissue engineered small-caliber vascular grafts (TE-SCVGs) is theoretically ideal. In this study, we evaluated the long-term (more than 1 year) course of TE-SCVGs using a rat carotid arterial replacement model. We fabricated a TE-SCVG scaffold (0.7 mm in diameter) with electrospun nano-scale fibers. Poly-ε-caprolactone was used as a biodegradable polymer. These artificial vessels were then used in carotid arterial replacement performed on Sprague–Dawley rats. The implanted grafts were removed at an early phase (1, 2, 6 weeks), middle phase (12, 24 weeks), and late phase (48, 72 weeks) after implantation. Twenty-nine patent grafts from among the 40 implanted grafts (patency 72.5 %) could be evaluated. No aneurysm formation was observed during the follow-up period. Endothelial cells positive for immunostaining with von Willebrand factor were found to be already attached to the inner surface of the TE-SCVGs in the early phase. The percentage of smooth muscle cell specific marker (α-smooth muscle actin and calponin with fluorescent immunostaining) positive cells, which seemed to be mesenchymal cells in the graft wall, increased with time, while, in contrast, the scaffold material decreased. Even after 72 weeks, however, although the scaffold material had degraded, it had not disappeared completely. These results show that the novel TE-SCVGs we developed were still functioning in the rat carotid arterial circulation after more than 1 year. However, further investigations will be required with regard to regeneration of the SMC layer and the complete degradation of graft materials.
引用
收藏
页码:399 / 405
页数:6
相关论文
共 44 条
  • [1] Long-term results of tissue-engineered small-caliber vascular grafts in a rat carotid arterial replacement model
    Kuwabara, Fumiaki
    Narita, Yuji
    Yamawaki-Ogata, Aika
    Satake, Makoto
    Kaneko, Hiroaki
    Oshima, Hideki
    Usui, Akihiko
    Ueda, Yuichi
    JOURNAL OF ARTIFICIAL ORGANS, 2012, 15 (04) : 399 - 405
  • [2] Acellular Endocardium as a Novel Biomaterial for the Intima of Tissue-Engineered Small-Caliber Vascular Grafts
    Wang, Feng
    Guan, Xin
    Wu, TianYi
    Qiao, JianOu
    Han, ZhaoQing
    Wu, JinLong
    Yu, XiaoWei
    You, QingJun
    ARTIFICIAL ORGANS, 2016, 40 (12) : E253 - E265
  • [3] Tissue-engineered arterial grafts: long-term results after implantation in a small animal model
    Mirensky, Tamar L.
    Nelson, Gregory N.
    Brennan, Matthew P.
    Roh, Jason D.
    Hibino, Narutoshi
    Yi, Tai
    Shinoka, Toshiharu
    Breuer, Christopher K.
    JOURNAL OF PEDIATRIC SURGERY, 2009, 44 (06) : 1127 - 1133
  • [4] Decellularized ureter for tissue-engineered small-caliber vascular graft
    Yuji Narita
    Hideaki Kagami
    Hiroshi Matsunuma
    Yosuke Murase
    Minoru Ueda
    Yuichi Ueda
    Journal of Artificial Organs, 2008, 11 : 91 - 99
  • [5] Decellularized ureter for tissue-engineered small-caliber vascular graft
    Narita, Yuji
    Kagami, Hideaki
    Matsunuma, Hiroshi
    Murase, Yosuke
    Ueda, Minoru
    Ueda, Yuichi
    JOURNAL OF ARTIFICIAL ORGANS, 2008, 11 (02) : 91 - 99
  • [6] In vivo tissue-engineered small-caliber arterial graft prosthesis consisting of autologous tissue (Biotube)
    Nakayama, Y
    Ishibashi-Ueda, H
    Takamizawa, K
    CELL TRANSPLANTATION, 2004, 13 (04) : 439 - 449
  • [7] 3-Tesla Magnetic Resonance Angiographic Assessment of a Tissue-Engineered Small-Caliber Vascular Graft Implanted in a Rat
    Yamanami, Masashi
    Yamamoto, Akihide
    Iida, Hidehiro
    Watanabe, Taiji
    Kanda, Keiichi
    Yaku, Hitoshi
    Nakayama, Yasuhide
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS, 2010, 92B (01) : 156 - 160
  • [8] Biofabrication of small diameter tissue-engineered vascular grafts
    Weekes, Angus
    Bartnikowski, Nicole
    Pinto, Nigel
    Jenkins, Jason
    Meinert, Christoph
    Klein, Travis J.
    ACTA BIOMATERIALIA, 2022, 138 : 92 - 111
  • [9] A Rat Model for the In Vivo Assessment of Biological and Tissue-Engineered Valvular and Vascular Grafts
    Sugimura, Yukiharu
    Schmidt, Anna Kathrin
    Lichtenberg, Artur
    Assmann, Alexander
    Akhyari, Payam
    TISSUE ENGINEERING PART C-METHODS, 2017, 23 (12) : 982 - 994
  • [10] Acellular Small-Diameter Tissue-Engineered Vascular Grafts
    Li, Zhen
    Li, Xinda
    Xu, Tao
    Zhang, Lei
    APPLIED SCIENCES-BASEL, 2019, 9 (14):