Adachi I, Sueyoshi K, Sugioka Y, Komori T, Ogura Y, Tabuchi K, Nakata Y, Namba R, Tatsu Y, Matsui R
Department of Radiology, Osaka Medical College.
Kaku Igaku. 1994 Feb;31(2):131-42.
The newly developed 99mTc-labeled renal imaging agent, mercaptoacetyltriglycine (MAG3), is a tubular secreted compound. It is expected the most suitable agent to measure renal function and image urinary tract because of the excellent imaging properties and availability of 99mTc and preferred biological qualities of radiohippurates. We examined 15 patients (8 males, 7 females, mean age 55 years old) with renal and urinary tract disease. After drinking 400 ml of water, 185, 370 or 555 MBq of 99mTc-MAG3 was injected with the supine position. Dynamic scans were acquired for 20 minutes on a large field of view gamma camera (ZLC-7500 Siemens Medical Inc.) linked to a computer system (Scintipac-2400 Shimadzu Co.) in a 64 x 64 matrix. Regions of interest (ROI) were placed around each kidney. Curves of 12 seconds frame rate were generated from all two ROIs over the 20 minutes study. The time to peak count (Tmax) and time from peak count to a half count (T1/2) were calculated from the curve data. 99mTc-DTPA renal imaging was examined to the same patients with the same method like 99mTc-MAG3. The renogram of 131I-orthoiodohippurate (OIH) was performed with probe method. The excellent quality of the renal image was obtained with 185-555 MBq of 99mTc-MAG3 compared with the same dose of 99mTc-DTPA respectively. The diagnostic value of 99mTc-MAG3 renal imaging was as well as 99mTc-DMSA renal imaging. The Tmax of 99mTc-MAG3 renogram was same value of that of both 99mTc-DTPA and 131I-OIH renogram. The T1/2 of 99mTc-MAG3 renogram was significantly lower than that of 99mTc-DTPA renogram. The T1/2 of 99mTc-MAG3 renogram was slightly higher that of 131I-OIH renogram. We conclude that the renal imaging of 99mTc-MAG3 was able to acquire the most excellent image and the proper renogram pattern as same as 131I-OIH renogram.
新开发的99mTc标记的肾显像剂,巯基乙酰三甘氨酸(MAG3),是一种经肾小管分泌的化合物。由于99mTc具有出色的显像特性且易于获取,以及放射性马尿酸盐具有良好的生物学性质,它有望成为测量肾功能和泌尿系统成像的最合适的试剂。我们检查了15例患有肾脏和泌尿系统疾病的患者(8例男性,7例女性,平均年龄55岁)。在饮用400毫升水后,于仰卧位注射185、370或555兆贝可的99mTc-MAG3。使用与计算机系统(岛津公司的Scintipac-2400)相连的大视野γ相机(西门子医疗公司的ZLC-7500)在64×64矩阵下进行20分钟的动态扫描。在每个肾脏周围放置感兴趣区(ROI)。在20分钟的研究过程中,从所有两个ROI生成12秒帧率的曲线。根据曲线数据计算出峰值计数时间(Tmax)和从峰值计数到半值计数的时间(T1/2)。对同一批患者采用与99mTc-MAG3相同的方法进行99mTc-DTPA肾显像检查。采用探头法进行131I-邻碘马尿酸(OIH)肾图检查。与相同剂量的99mTc-DTPA相比,185 - 555兆贝可的99mTc-MAG3获得了质量优异的肾脏图像。99mTc-MAG3肾显像的诊断价值与99mTc-DMSA肾显像相同。99mTc-MAG3肾图的Tmax与99mTc-DTPA和131I-OIH肾图的Tmax值相同。99mTc-MAG3肾图的T1/2显著低于99mTc-DTPA肾图的T1/2。99mTc-MAG3肾图的T1/2略高于131I-OIH肾图的T1/2。我们得出结论,99mTc-MAG3肾显像能够获得与131I-OIH肾图一样最优异的图像和合适的肾图模式。