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用于正电子发射断层扫描测量局部脑血流量的11C-碘安替比林。验证研究。

11C-Iodoantipyrine for the measurement of regional cerebral blood flow by positron emission tomography. Validation studies.

作者信息

Ginsberg M D, Lockwood A H, Busto R, Finn R D, Campbell J A, Boothe T E

出版信息

Stroke. 1981 Nov-Dec;12(6):745-50. doi: 10.1161/01.str.12.6.745.

Abstract

Positron emission tomography (PET) makes it possible to employ an in vivo autoradiographic paradigm to measure regional cerebral blood flow (rCBF) in man. In this study, we synthesized the positron-emitting radiopharmaceutical 11C-iodoantipyrine (11C-IAP) and validated its suitability as a CBF tracer. 11C ( T and one-half 20.4 min) was produced by the (p,alpha) nuclear reaction on 14N. 11C-methyl iodide was used to methylate 3-methyl-1-phenyl-2-pyrazolin-5-one to form 11C-antipyrine, which was iodinated. Radiochemical purity of the 11C-IAP product was 93-98% except as described below. rCBF was measured with 11C-IAP in nitrous oxide-anesthetized Wistar rats by the method of indicator fractionation, and values were compared with rCBF values measured with simultaneously administered commercially produced 14C-IAP. rCBF was studied over a range of arterial Pco2 values (31-58 mm Hg, mean 43.0 +/- 3.5). Mean rCBF data for the 2 tracers agreed to within 4.8% for cerebral hemispheral samples, 3.8% for cerebellum, and 5.3% for brainstem. Mean values (+/- SEM) for rCBF using 11C-IAP were 1.67 +/- 0.20 ml gm-1 min-1 for cerebral hemispheres; 1.32 +/- 0.17 for cerebellum; and 1.50 +/- 0.21 for brainstem. When chromatographic analysis revealed tracer impurity, rCBF, as measured with 11C-IAP, fell consistently below values obtained with 14C-IAP. The data indicate that 11C-IAP, when properly synthesized and submitted to batch-by-batch quality control, may be suitable for measuring rCBF in man by emission tomography.

摘要

正电子发射断层扫描(PET)使得采用活体放射自显影范式来测量人体局部脑血流量(rCBF)成为可能。在本研究中,我们合成了正电子发射放射性药物11C-碘安替比林(11C-IAP),并验证了其作为CBF示踪剂的适用性。11C(半衰期20.4分钟)通过14N上的(p,α)核反应产生。用11C-碘甲烷将3-甲基-1-苯基-2-吡唑啉-5-酮甲基化以形成11C-安替比林,然后进行碘化。11C-IAP产物的放射化学纯度为93 - 98%,如下所述除外。采用指示剂稀释法,用11C-IAP在氧化亚氮麻醉的Wistar大鼠中测量rCBF,并将测量值与同时给予的商业生产的14C-IAP所测得的rCBF值进行比较。在一系列动脉Pco2值(31 - 58 mmHg,平均43.0±3.5)范围内研究rCBF。两种示踪剂的平均rCBF数据在大脑半球样本中相差4.8%以内,在小脑相差3.8%,在脑干相差5.3%。使用11C-IAP时,大脑半球rCBF的平均值(±SEM)为1.67±0.20 ml·g-1·min-1;小脑为1.32±0.17;脑干为1.50±0.21。当色谱分析显示示踪剂有杂质时,用11C-IAP测量的rCBF始终低于用14C-IAP获得的值。数据表明,11C-IAP在正确合成并逐批进行质量控制时,可能适用于通过发射断层扫描测量人体的rCBF。

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