Erythropoietin (EPO) - EPO-receptor signaling improves early endochondral ossification and mechanical strength in fracture healing

被引:81
|
作者
Holstein, Joerg H. [1 ]
Menger, Michael D.
Scheuer, Claudia
Meier, Christoph
Culemann, Ulf
Wirbel, Rainer J.
Garcia, Patric
Pohlemann, Tim
机构
[1] Univ Saarland, Dept Trauma Hand & Reconstruct Surg, D-66421 Homburg, Germany
[2] Univ Saarland, Inst Clin & Expt Surg, D-6650 Homburg, Germany
[3] Univ Zurich Hosp, Div Trauma Surg, CH-8091 Zurich, Switzerland
关键词
EPO; EPOR; endochondral ossification; fracture healing; mice;
D O I
10.1016/j.lfs.2006.11.023
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Beyond its role in the regulation of red blood cell proliferation, the glycoprotein erythropoietin (EPO) has been shown to promote cell regeneration and angiogenesis in a variety of different tissues. In addition, EPO has been indicated to share significant functional and structural homologies with the vascular endothelial growth factor (YEGF), a cytokine essential in the process of fracture healing. However, there is complete lack of information on the action of EPO in bone repair and fracture healing. Therefore, we investigated the effect of EPO treatment on bone healing in a murine closed femur fracture model using radiological, histomorphometric, immunohistochemical, biomechanical and protein biochemical analysis. Thirty-six SKH1-hr mice were treated with daily i.p. injections of 5000 U/kg EPO from day 1 before fracture until day 4 after fracture. Controls received equivalent amounts of the vehicle. After 2 weeks of fracture healing, we could demonstrate expression of the EPO-receptor (EPOR) in terminally differentiating chondrocytes within the callus. At this time point EPO-treated animals showed a higher torsional stiffness (biomechanical analysis: 39.6 +/- 19.4% of the contralateral unfractured femur) and an increased callus density (X-ray analysis (callus density/spongiosa density): 110.5 +/- 7.1%) when compared to vehicle-treated controls (14.3 +/- 8.2% and 105.9 +/- 6.6%; p < 0.05). Accordingly, the histomorphometric examination revealed an increased fraction of mineralized bone and osteoid (33.0 +/- 3.0% versus 28.5 +/- 3.6%; p < 0.05). Of interest, this early effect of the initial 6-day EPO treatment had vanished at 5 weeks after fracture. We conclude that EPO-EPOR signaling is involved in the process of early endochondral ossification, enhancing the transition of soft callus to hard callus. (c) 2006 Elsevier Inc. All rights reserved.
引用
收藏
页码:893 / 900
页数:8
相关论文
共 4 条
  • [1] Tenascin-C promotes endochondral ossification and fracture healing through Hedgehog and Hippo signaling
    Zhong, Fangling
    Hao, Wenjun
    Chao, Hua
    Li, Zihao
    Chen, Siwen
    Li, Sifang
    Zhang, Shuai
    Zhang, Kuibo
    Li, Zemin
    Liu, Hui
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2024, 703
  • [2] Inhibition of CaMKK2 Enhances Fracture Healing by Stimulating Indian Hedgehog Signaling and Accelerating Endochondral Ossification
    Williams, Justin N.
    Kambrath, Anuradha Valiya
    Patel, Roshni B.
    Kang, Kyung Shin
    Mevel, Elsa
    Li, Yong
    Cheng, Ying-Hua
    Pucylowski, Austin J.
    Hassert, Mariah A.
    Voor, Michael J.
    Kacena, Melissa A.
    Thompson, William R.
    Warden, Stuart J.
    Burr, David B.
    Allen, Matthew R.
    Robling, Alexander G.
    Sankar, Uma
    JOURNAL OF BONE AND MINERAL RESEARCH, 2018, 33 (05) : 930 - 944
  • [3] Chronic psychosocial stress compromises the immune response and endochondral ossification during bone fracture healing via β-AR signaling
    Haffner-Luntzer, Melanie
    Foertsch, Sandra
    Fischer, Verena
    Prystaz, Katja
    Tschaffon, Miriam
    Modinger, Yvonne
    Bahney, Chelsea S.
    Marcucio, Ralph S.
    Miclauc, Theodore
    Ignatius, Anita
    Reber, Stefan O.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2019, 116 (17) : 8615 - 8622
  • [4] Exogenous PTH 1-34 Attenuates Impaired Fracture Healing in Endogenous PTH Deficiency Mice via Activating Indian Hedgehog Signaling Pathway and Accelerating Endochondral Ossification
    Ma, Cheng
    Liu, Huan
    Wei, Yifan
    Li, He
    Miao, Dengshun
    Ren, Yongxin
    FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY, 2022, 9