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首页> 外文期刊>American Journal of Pathology >{beta}-Catenin Is a Mediator of the Response of Fibroblasts to Irradiation
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{beta}-Catenin Is a Mediator of the Response of Fibroblasts to Irradiation

机译:β-连环蛋白是成纤维细胞对辐射反应的介体

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摘要

Radiation causes soft tissue complications that include fibrosis and deficient wound healing. β-Catenin, a key component in the canonical Wnt-signaling pathway, is activated in fibrotic processes and wound repair and, as such, could play a role in mediating cellular responses to irradiation. β-Catenin can form a transcriptionally active complex with members of the Tcf family. A reporter mouse model, in addition to human cell cultures, was used to demonstrate that ionizing radiation activates β-catenin-mediated, Tcf-dependent transcription both in vitro and in vivo. Furthermore, radiation activates β-catenin via a Wnt-mediated mechanism, as in the presence of dickkopf-1, an inhibitor of Wnt receptor activation, β-catenin levels did not increase after irradiation. Fibroblast cell cultures were derived from mice expressing either null or stabilized β-catenin alleles. Cells expressing stabilized β-catenin alleles had a higher proliferation rate and formed more colony-forming units than wild-type or null cells after irradiation. Wound healing was studied in these same mice after irradiation. There was a positive correlation between the tensile strength of the wound, the expression levels of type 1 collagen in the skin, and β-catenin levels. Mice treated with lithium showed increased β-catenin levels and increased wound strength. β-Catenin mediates the effects of ionizing radiation in fibroblasts, and its modulation has the potential to decrease the severity of radiation-induced soft tissue complications.
机译:辐射会导致软组织并发症,包括纤维化 和伤口愈合不良。 β-连环蛋白是典型的Wnt信号通路中的关键成分 ,在纤维化 过程和伤口修复过程中被激活,因此可以在中发挥作用介导细胞对辐射的反应。 β-Catenin 可以与Tcf家族的 形成转录活性复合物。除人类 细胞培养物外,还使用报告基因小鼠模型来证明电离辐射 激活β-catenin介导的Tcf依赖性转录 体外和体内。此外,辐射通过Wnt介导的机制激活 β-catenin,如在Wnt受体活化抑制剂dickkopf-1存在的 中,β-catenin 水平在辐照后没有增加。成纤维细胞培养物 来自表达无效或稳定的 β-catenin等位基因的小鼠。表达稳定的β-catenin 等位基因的细胞比野生型或空细胞照射后具有更高的增殖率并形成更多的菌落形成 单位。在照射后,在这些相同的小鼠中研究了伤口的愈合。 伤口的拉伸强度与皮肤中1型胶原蛋白的表达水平, 和β-catenin水平呈正相关。锂处理的小鼠显示 升高β-catenin水平并增加伤口强度。 β-catenin介导 成纤维细胞及其细胞的电离辐射作用调制可能会降低 辐射诱发的软组织并发症的严重性。

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  • 来源
    《American Journal of Pathology》 |2009年第1期|248-255|共8页
  • 作者单位

    From the Program in Developmental and Stem Cell Biology,Hospital for Sick Children, Toronto|the Department of Laboratory Medicine and Pathobiology,Princess Margaret Hospital and Department of Medical Biophysics, University of Toronto, Toronto;

    From the Program in Developmental and Stem Cell Biology,Hospital for Sick Children, Toronto|the Department of Laboratory Medicine and Pathobiology,Princess Margaret Hospital and Department of Medical Biophysics, University of Toronto, Toronto;

    and the Ontario Cancer Institute,Princess Margaret Hospital and Department of Medical Biophysics, University of Toronto, Toronto;

    and The Samuel Lunenfeld Research Institute,Mount Sinai Hospital, Toronto, Canada|the Division of Orthopaedic Surgery,Princess Margaret Hospital and Department of Medical Biophysics, University of Toronto, Toronto;

    From the Program in Developmental and Stem Cell Biology,Hospital for Sick Children, Toronto|the Department of Laboratory Medicine and Pathobiology,Princess Margaret Hospital and Department of Medical Biophysics, University of Toronto, Toronto|the Division of Orthopaedic Surgery,Princess Margaret Hospital and Department of Medical Biophysics, University of Toronto, Toronto;

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