Transplantation of Adipose Tissue-Derived Stromal Cells Promotes the Survival of Venous-Congested Skin Flaps in Rabbit Ear
详细信息    查看全文
  • 作者:Nan Xu (1)
    Shu Guo (1)
    Yuxin Wang (1)
    Qiang Sun (1)
    Chenchao Wang (1)

    1. Department of Plastic Surgery
    ; The First Affiliated Hospital of China Medical University ; 155 North Nanjing Street ; Shenyang ; 110001 ; People鈥檚 Republic of China
  • 关键词:Venous ; congested skin flap ; Adipose tissue ; derived stromal cells ; Cell transplantation ; Skin flap survival ; Neovascularization
  • 刊名:Cell Biochemistry and Biophysics
  • 出版年:2015
  • 出版时间:March 2015
  • 年:2015
  • 卷:71
  • 期:2
  • 页码:557-563
  • 全文大小:1,113 KB
  • 参考文献:1. Miyawaki, T., Jackson, I. T., Elmazar, H., Bier, U. C., Barakat, K., Andrus, L., et al. (2002). The effect of low-molecular-weight heparin in the survival of a rabbit congested skin flap. / Plastic and Reconstructive Surgery, / 2002(109), 1994鈥?999. CrossRef
    2. Lindroos, B., Suuronen, R., & Miettinen, S. (2011). The potential of adipose stem cells in regenerative medicine. / Stem Cell Reviews, / 2011(7), 269鈥?91. CrossRef
    3. Ning, H., Liu, G., Lin, G., Yang, R., Lue, T. F., & Lin, C. S. (2009). Fibroblast growth factor 2 promotes endothelial differentiation of adipose tissue-derived stem cells. / The Journal of Sexual Medicine, / 2009(6), 967鈥?79. CrossRef
    4. Rehman, J., Traktuev, D., Li, J., Merfeld-Clauss, S., Temm-Grove, C. J., Bovenkerk, J. E., et al. (2004). Secretion of angiogenic and antiapoptotic factors by human adipose stromal cells. / Circulation, / 2004(109), 1292鈥?298. CrossRef
    5. Iwashima, S., Ozaki, T., Maruyama, S., Saka, Y., Kobori, M., Omae, K., et al. (2009). Novel culture system of mesenchymal stromal cells from human subcutaneous adipose tissue. / Stem Cells and Development, / 2009(18), 533鈥?43. CrossRef
    6. Bai, X., Yan, Y., Song, Y. H., Seidensticker, M., Rabinovich, B., Metzele, R., et al. (2010). Both cultured and freshly isolated adipose tissue-derived stem cells enhance cardiac function after acute myocardial infarction. / European Heart Journal, / 2010(31), 489鈥?01. CrossRef
    7. Zhang, D. Z., Gai, L. Y., Liu, H. W., Jin, Q. H., Huang, J. H., & Zhu, X. Y. (2007). Transplantation of autologous adipose-derived stem cells ameliorates cardiac function in rabbits with myocardial infarction. / Chinese Medical Journal (English Edition), / 2007(120), 300鈥?07.
    8. Rigotti, G., Marchi, A., Galie, M., Baroni, G., Benati, D., Krampera, M., et al. (2007). Clinical treatment of radiotherapy tissue damage by lipoaspirate transplant: A healing process mediated by adipose-derived adult stem cells. / Plastic and Reconstructive Surgery, / 2007(119), 1409鈥?422. discussion 1423-4. CrossRef
    9. Li, J., Fu, X., Sheng, Z., & Sun, T. (2006). Ectopia of epidermal stem cells on wound edge during wound healing process. / Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi., / 2006(20), 264鈥?67.
    10. Ebrahimian, T. G., Pouzoulet, F., Squiban, C., Buard, V., Andre, M., Cousin, B., et al. (2009). Cell therapy based on adipose tissue-derived stromal cells promotes physiological and pathological wound healing. / Arteriosclerosis, Thrombosis, and Vascular Biology, / 2009(29), 503鈥?10. CrossRef
    11. Rangappa, S., Fen, C., Lee, E. H., Bongso, A., & Sim, E. K. (2003). Transformation of adult mesenchymal stem cells isolated from the fatty tissue into cardiomyocytes. / Annals of Thoracic Surgery, / 2003(75), 775鈥?79. CrossRef
    12. Chung, T. L., Holton, L. H., 3rd, & Silverman, R. P. (2006). The effect of fondaparinux versus enoxaparin in the survival of a congested skin flap in a rabbit model. / Annals of Plastic Surgery, / 2006(56), 312鈥?15. CrossRef
    13. Dawn, B., & Bolli, R. (2005). Adult bone marrow-derived cells: Regenerative potential, plasticity, and tissue commitment. / Basic Research in Cardiology, / 2005(100), 494鈥?03. CrossRef
    14. Parker, A. M., & Katz, A. J. (2006). Adipose-derived stem cells for the regeneration of damaged tissues. / Expert Opinion on Biological Therapy, / 2006(6), 567鈥?78. CrossRef
    15. Bura, A., Planat-Benard, V., Bourin, P., Silvestre, J. S., Gross, F., Grolleau, J. L., et al. (2014). Phase I trial: The use of autologous cultured adipose-derived stroma/stem cells to treat patients with non-revascularizable critical limb ischemia. / Cytotherapy, / 2014(16), 245鈥?57. CrossRef
    16. di Summa, P. G., Kingham, P. J., Raffoul, W., Wiberg, M., Terenghi, G., & Kalbermatten, D. F. (2010). Adipose-derived stem cells enhance peripheral nerve regeneration. / Journal of Plastic, Reconstructive and Aesthetic Surgery, / 2010(63), 1544鈥?552. CrossRef
    17. Nie, C., Yang, D., Xu, J., Si, Z., Jin, X., & Zhang, J. (2011). Locally administered adipose-derived stem cells accelerate wound healing through differentiation and vasculogenesis. / Cell Transplantation, / 2011(20), 205鈥?16. CrossRef
    18. Tomita, K., Madura, T., Sakai, Y., Yano, K., Terenghi, G., & Hosokawa, K. (2013). Glial differentiation of human adipose-derived stem cells: implications for cell-based transplantation therapy. / Neuroscience, / 2013(236), 55鈥?5. CrossRef
    19. Schipper, B. M., Marra, K. G., Zhang, W., Donnenberg, A. D., & Rubin, J. P. (2008). Regional anatomic and age effects on cell function of human adipose-derived stem cells. / Annals of Plastic Surgery, / 2008(60), 538鈥?44. CrossRef
    20. Prunet-Marcassus, B., Cousin, B., Caton, D., Andre, M., Penicaud, L., & Casteilla, L. (2006). From heterogeneity to plasticity in adipose tissues: site-specific differences. / Experimental Cell Research, / 2006(312), 727鈥?36. CrossRef
    21. Gimble, J., & Guilak, F. (2003). Adipose-derived adult stem cells: isolation, characterization, and differentiation potential. / Cytotherapy, / 2003(5), 362鈥?69. CrossRef
    22. Bailey, A. M., Kapur, S., & Katz, A. J. (2010). Characterization of adipose-derived stem cells: An update. / Current Stem Cell Research & Therapy, / 2010(5), 95鈥?02. CrossRef
    23. Mitchell, J. B., McIntosh, K., Zvonic, S., Garrett, S., Floyd, Z. E., Kloster, A., et al. (2006). Immunophenotype of human adipose-derived cells: Temporal changes in stromal-associated and stem cell-associated markers. / Stem Cells, / 2006(24), 376鈥?85. CrossRef
    24. Oedayrajsingh-Varma, M. J., van Ham, S. M., Knippenberg, M., Helder, M. N., Klein-Nulend, J., Schouten, T. E., et al. (2006). Adipose tissue-derived mesenchymal stem cell yield and growth characteristics are affected by the tissue-harvesting procedure. / Cytotherapy, / 2006(8), 166鈥?77. CrossRef
    25. Lu, F., Mizuno, H., Uysal, C. A., Cai, X., Ogawa, R., & Hyakusoku, H. (2008). Improved viability of random pattern skin flaps through the use of adipose-derived stem cells. / Plastic and Reconstructive Surgery, / 2008(121), 50鈥?8. CrossRef
    26. Yingxin, G., Guoqian, Y., Jiaquan, L., & Han, X. (2013). Effects of natural and recombinant hirudin on VEGF expression and random skin flap survival in a venous congested rat model. / International Surgery, / 2013(98), 82鈥?7. CrossRef
    27. Planat-Benard, V., Silvestre, J. S., Cousin, B., Andre, M., Nibbelink, M., Tamarat, R., et al. (2004). Plasticity of human adipose lineage cells toward endothelial cells: Physiological and therapeutic perspectives. / Circulation, / 2004(109), 656鈥?63. CrossRef
    28. Salgado, A. J., Reis, R. L., Sousa, N. J., & Gimble, J. M. (2010). Adipose tissue derived stem cells secretome: Soluble factors and their roles in regenerative medicine. / Current Stem Cell Research & Therapy, / 2010(5), 103鈥?10. CrossRef
    29. Kilroy, G. E., Foster, S. J., Wu, X., Ruiz, J., Sherwood, S., Heifetz, A., et al. (2007). Cytokine profile of human adipose-derived stem cells: Expression of angiogenic, hematopoietic, and pro-inflammatory factors. / Journal of Cellular Physiology, / 2007(212), 702鈥?09. CrossRef
  • 刊物主题:Biochemistry, general; Pharmacology/Toxicology; Biotechnology; Cell Biology; Biophysics and Biological Physics;
  • 出版者:Springer US
  • ISSN:1559-0283
文摘
Venous congestion after skin flap transplantation usually slows blood flow velocity and induces skin flap necrosis and surgical failure. Adipose tissue-derived stromal cells (ADSCs) can promote neovascularization and have been extensively applied in cell transplantation therapy and tissue regeneration. However, their function has not been reported in venous-congested skin flaps. In this study, rabbit ADSCs were isolated and identified. We established a rabbit ear venous-congested skin flap model and injected ADSCs into points along the midlines of skin flaps. The survival conditions of venous-congested skin flaps on postoperative day 7 showed that there was obvious swelling, hemorrhage, or necrosis in skin flaps of the control group, while the skin flap survival rate in the ADSC treatment group significantly increased. Hematoxylin and eosin (HE) staining results indicated that compared with the control group, thrombosis was significantly relieved and neovascularization was observed in the ADSC treatment group. Immunofluorescence revealed that the CD34 expression level and the number of capillaries significantly increased in the ADSC treatment group. In summary, ADSC transplantation promotes neovascularization in venous-congested skin flaps and skin flap survival. Therefore, ADSC transplantation may be an effective measure for promoting the survival of venous-congested skin flaps.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700