Hughes S
Ann R Coll Surg Engl. 1977 Jul;59(4):322-7.
Technetium-labelled ethane hydroxydiphosphonate (99mTc-EHDP) is a commonly used bone-scanning agent. After injection it leaves the circulation to enter bone and to be cleared by the kidney. The transcapillary exchange of 99mTc-EHDP in bone was examined and found to be low. The capillary movement was compared with that of sucrose, a freely diffusible substance, and it was found that the permeability ratio of 99mTc-EHDP to 14C-sucrose was similar to the diffusion coefficient ratio, suggesting that 99mTc-EHDP passes through the capillaries by the process of passive diffusion. The renal clearance of 99mTc-EHDP was 24 ml/min and was unaffected by the action of parathyroid hormone. After a fracture the bone blood flow increases, although the transcapillary extraction of 99mTc-EHDP does not change. This is because there is an increase, from recruitment and dilatation of capillaries, in the surface area available for exchange. Therefore the increased isotopic activity seen on a bone scan after a fracture is primarily related to an increase in bone blood supply from capillary enhancement within the cortex.
锝标记的乙烷羟基二膦酸盐(99mTc-EHDP)是一种常用的骨扫描剂。注射后,它离开循环系统进入骨骼,并由肾脏清除。对99mTc-EHDP在骨中的跨毛细血管交换进行了检查,发现其交换率较低。将其毛细血管运动与蔗糖(一种可自由扩散的物质)的运动进行了比较,发现99mTc-EHDP与14C-蔗糖的渗透比与扩散系数比相似,这表明99mTc-EHDP通过被动扩散过程穿过毛细血管。99mTc-EHDP的肾脏清除率为24毫升/分钟,不受甲状旁腺激素作用的影响。骨折后骨血流量增加,尽管99mTc-EHDP的跨毛细血管摄取没有变化。这是因为毛细血管的募集和扩张导致可用于交换的表面积增加。因此,骨折后骨扫描上看到的同位素活性增加主要与皮质内毛细血管增强导致的骨血供增加有关。