Oest Megan E, Damron Timothy A
Department of Orthopedic Surgery, SUNY Upstate Medical University, Syracuse, New York, 13210.
Radiat Res. 2014 Apr;181(4):439-43. doi: 10.1667/RR13451.1. Epub 2014 Apr 4.
Advanced glycation end products (AGEs) are an abnormal modification of the collagenous matrix in bone, and their accumulation contributes to alteration of mechanical properties. Using a mouse model of focal external radiotherapy, we quantified the time-dependent changes in the glycation of bone collagen after 4 daily fractions of 5 Gy exposure to unilateral hindlimb. Fluorometric analysis of decalcified femurs demonstrated a significant and transient increase in the quantity of pentosidine, pyridinolines and nonspecific AGEs per unit of collagen at one week postirradiation. These differences did not persist at 4, 8, 12 or 26 weeks postirradiation. Radiation had no effect on bone collagen content. We hypothesize that following the transient increase in glycation products, these crosslinks are then removed as a result of increased postirradiation osteoclast activity and continued mineralization of the bone.
晚期糖基化终末产物(AGEs)是骨骼中胶原基质的一种异常修饰,其积累会导致力学性能改变。利用局部外照射小鼠模型,我们对单侧后肢每天接受4次5 Gy照射后骨胶原糖基化的时间依赖性变化进行了量化。对脱钙股骨的荧光分析表明,照射后1周时,每单位胶原中戊糖苷、吡啶啉和非特异性AGEs的量显著且短暂增加。这些差异在照射后4周、8周、12周或26周时不再存在。辐射对骨胶原含量没有影响。我们推测,在糖基化产物短暂增加之后,由于照射后破骨细胞活性增加和骨骼持续矿化,这些交联物随后被去除。