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Radiosynthesis and Quality Control of 67Ga-34-dimethoxylated Porphyrin Complex as a Possible Imaging agent

机译:67Ga -34-二甲氧基化卟啉配合物作为可能的显像剂的放射性合成和质量控制

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摘要

Radiolabeled porphyrins are potential tumor avid radiopharmaceuticals because of their impersonation in the human body, ability to complex various radionuclides, water solubility, low toxicity etc. In this work a radiogallium porphyrin complex has been developed. [67Ga] labeled 5,10,15,20-tetrakis(3,4-dimethoxyphenyl) porphyrin ([67Ga]-TDMPP) was prepared using freshly prepared [67Ga]GaCl3 and 5,10,15,20-tetrakis(3,4-dimethoxyphenyl) porphyrin (H2TDMPP) for 60 min at 100°C. Stability of the complex was checked in final formulation and human serum for 24 h, followed by biodistribution and imaging studies in wild type rats up to 24 h. The radiocomplex was obtained with radiochemical purity >99% (ITLC) and >98% (HPLC), specific activity: 12-15 GBq/mmol. The partition coefficient was determined (log P=1.63). A detailed comparative pharmacokinetic study performed for 67Ga cation and [67Ga]-TDMPP. The complex was mostly washed out from the circulation through kidneys. Myocardial uptake was significantly observed by SPECT and biodistribution studies. Knee and shoulder joints demonstrated significant activity uptake in 2h post injection>. Higher water solubility of the complex due to ionic nature of the complex is an advantage for rapid wash-out of the complex from the system, the complex has significant joint uptake compared to other radiolabeled porphyrins which the mechanisms are explained.
机译:放射性标记的卟啉由于其在人体中的模仿,与各种放射性核素的络合能力,水溶性,低毒性等原因,是潜在的肿瘤狂热放射性药物。在这项工作中,开发了放射性镓卟啉络合物。使用新鲜制备的[[sup> 67 Ga]标记的5,10,15,20-四(3,4-二甲氧基苯基)卟啉([ 67 Ga] -TDMPP) 67 Ga] GaCl3和5,10,15,20-四(3,4-二甲氧基苯基)卟啉(H2TDMPP)在100°C下放置60分钟。在最终制剂和人血清中检查复合物的稳定性24小时,然后在野生型大鼠中进行长达24小时的生物分布和成像研究。获得放射性复合物,其放射化学纯度> 99%(ITLC)和> 98%(HPLC),比活度:12-15 GBq / mmol。确定分配系数(log P = 1.63)。对 67 Ga阳离子和[ 67 Ga] -TDMPP进行了详细的比较药代动力学研究。该复合物大部分被从肾脏循环中清除掉。通过SPECT和生物分布研究可明显观察到心肌摄取。注射后2h膝关节和肩关节显示出明显的活动性摄取>。 由于复合物的离子性质,复合物的较高水溶性是从系统中快速洗出复合物的一个优势,与其他放射性标记的卟啉相比,该复合物具有显着的联合摄取,并解释了机理。

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