Bone marrow stem cell dysfunction in radiation-induced abscopal bone loss

Journal of Orthopaedic Surgery and Research(2016)

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摘要
Background Bone-related complications are commonly reported in cancer patients receiving radiotherapy and are collectively referred to as the abscopal effect of irradiation, the mechanism of which remains poorly understood. When patients receive targeted radiotherapy to a tumor, the local skeleton is exposed to radiation, particularly within the bone marrow. We therefore investigated the hypothesis that single bone irradiation can induce deterioration of the skeleton outside the radiation field and is mediated by the bone marrow. Methods Using 4-month-old male Sprague-Dawley rats, the effects of irradiation (20 Gy, right distal femur and proximal tibia) on bone quality, microarchitecture and bone marrow, were evaluated prospectively by microcomputed tomography, histomorphometry, real-time polymerase chain reaction, and Western blot analysis. Results At 12 weeks post-irradiation, bone loss of the non-irradiated bone was induced and marrow adiposity was increased. Expression of runt-related transcription factor-2 by bone mesenchymal stem cells (BMSCs) decreased after irradiation by 88.0 % ( P < 0.01) at the contralateral and 82.3 % ( P < 0.01) at the irradiation site 2 weeks post-irradiation and decreased by 94.5 % ( P < 0.001) at the contralateral and 44.1 % ( P < 0.05) at the irradiation site 12 weeks post-irradiation. Interestingly, peroxisome proliferator-activated receptor gamma expression decreased by 61.8 % ( P < 0.05) at the contralateral and by 48.3 % ( P < 0.05) at the irradiation site 2 weeks post-irradiation but increased by 9-fold at the contralateral ( P < 0.001) and by 13-fold ( P < 0.001) at the irradiation site 12 weeks post-irradiation. Conclusions These data highlight that radiation-induced bone complications are partly BMSC-mediated, with important implications for bone health maintenance in patients receiving radiotherapy.
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orthopedics
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