Kelly P J, Bassingthwaighte J B
Fed Proc. 1977 Nov;36(12):2634-9.
Free diffusion appears to be the principal mechanism for movement of ions, known to concentrate in bone, across the capillaries of bone. The interstitial fluid space appears large enough to allow for determination of instantaneous fractional escape by the indicator-dilution method. The mechanism by which large molecules, such as the diphosphonate 99mTc-labeled EHDP or 99mTc-labeled pyrophosphate, pass through capillaries in bone is by passive diffusion. These molecules are larger than 85Sr and their lower extraction rate is presumably due to the effect of their sizes on passage through transcapillary clefts. A corollary of these studies might be that if transcapillary exchange is passive, then partition of anions and cations likely lies beyond the capillary and therefore is controlled by osteal cellular processes.
自由扩散似乎是离子(已知其在骨骼中聚集)穿过骨毛细血管的主要机制。组织间隙液空间似乎足够大,可通过指示剂稀释法测定瞬时分数逸出量。大分子,如二膦酸盐99mTc标记的EHDP或99mTc标记的焦磷酸盐,穿过骨毛细血管的机制是被动扩散。这些分子比85Sr大,其较低的摄取率可能是由于其大小对通过跨毛细血管裂隙的影响。这些研究的一个推论可能是,如果跨毛细血管交换是被动的,那么阴离子和阳离子的分配可能在毛细血管之外,因此受骨细胞过程控制。