Gabriel Michael, Decristoforo Clemens, Maina Theodosia, Nock Berthold, vonGuggenberg Elisabeth, Cordopatis Paul, Moncayo Roy
Universität-Klinik für Nuklearmedizin, Innsbruck, Austria.
Cancer Biother Radiopharm. 2004 Feb;19(1):73-9. doi: 10.1089/108497804773391702.
Tetraamine-[Tyr3]octreotate (Demotate) is a somatostatin (SST) analogue that can be easily labeled with 99mTc at high specific activities and showed promising preclinical properties for SST receptor scintigraphy. This study reports on the first intra-patient comparison of 99mTc-Demotate and another 99mTc-labeled SST analogue, 99mTc-EDDA/HYNIC-TOC (HYNIC-TOC). Five patients with carcinoid tumors (n = 2) and endocrine pancreatic tumors (n = 3) were investigated with both radiopharmaceuticals. 99mTc-Demotate rapidly visualized somatostatin receptor positive tumors as early as 15 minutes post-injection (p.i.) with maximum tumor uptake and tumor/organ ratios already 1 hour p.i. Organs of predominant physiological uptake were the spleen and the kidneys with no intestinal excretion detectable up to 24 hours. 99mTc-Demotate exhibited faster pharmacokinetic properties compared to HYNIC-TOC. Tumor/organ ratios at equivalent time points were higher or comparable for 99mTc-Demotate in three patients with a matching scan result. Equivocal findings were observed in two patients, i.e. comparable uptake behavior in larger lesions with differences in smaller ones. 99mTc-Demotate is a promising agent for somatostatin receptor scintigraphy providing images of excellent quality as early as 1 hour after injection.
四胺 - [酪氨酸3]奥曲肽(德莫肽)是一种生长抑素(SST)类似物,可轻松用高比活度的99mTc标记,并在SST受体闪烁显像方面显示出有前景的临床前特性。本研究报告了99mTc - 德莫肽与另一种99mTc标记的SST类似物99mTc - EDDA/HYNIC - TOC(HYNIC - TOC)在同一患者体内的首次比较。对5例类癌肿瘤患者(n = 2)和内分泌胰腺肿瘤患者(n = 3)使用这两种放射性药物进行了研究。99mTc - 德莫肽在注射后15分钟即可快速显示生长抑素受体阳性肿瘤,注射后1小时肿瘤摄取量和肿瘤/器官比值达到最大值。主要生理性摄取器官为脾脏和肾脏,直至24小时均未检测到肠道排泄。与HYNIC - TOC相比,99mTc - 德莫肽表现出更快的药代动力学特性。在扫描结果匹配的3例患者中,99mTc - 德莫肽在等效时间点的肿瘤/器官比值更高或相当。在2例患者中观察到不确定的结果,即较大病变中的摄取行为相当,但较小病变存在差异。99mTc - 德莫肽是一种有前景的生长抑素受体闪烁显像剂,注射后1小时即可提供高质量图像。