首页> 外文期刊>Anticancer Research: International Journal of Cancer Research and Treatment >Radiolabelling of glucose-Tyr3-octreotate with 125I and analysis of its metabolism in rats: comparison with radiolabelled DOTA-Tyr3-octreotate.
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Radiolabelling of glucose-Tyr3-octreotate with 125I and analysis of its metabolism in rats: comparison with radiolabelled DOTA-Tyr3-octreotate.

机译:葡萄糖-TYR3-八羟胺酸盐的放射性标记与125I的含量分析,大鼠代谢分析:与放射性标记的DOTA-TYR3- octreotate的比较。

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摘要

BACKGROUND: Somatostatin analogues labelled with radiometals or radiohalogens are useful for the imaging and treatment of somatostatin receptor-containing tumours. In this study, the procedures for the radioiodination of glucose-Tyr3-octreotate (gluc-Tyr3-tate) and radiolabelling of DOTA-Tyr3-octreotate (DOTA-Tyr3-tate) with 111In, 177Lu and 125I were compared and their metabolism in rats was analyzed. The usefulness of high performance liquid chromatography (HPLC) analysis and instant thin-layer chromatography on silica gel (ITLC-SG) for both radiochemical purity determination and analysis of metabolism in urine was investigated. MATERIALS AND METHODs: For labelling with radiometals, the formation of a complex with the 1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid (DOTA) functionality of the peptide was employed. Radioiodination was performed by the chloramime-T method. The radiochemical purity of radiolabelled peptides and the analyses of rat urine were determined by HPLC and/or ITLC-SG methods. Male Wistar rats were used in the elimination studies. RESULTS: DOTA-Tyr3-tate was simply radiolabelled with radiometals with high yield and high radiochemical purity. Stopping of the reaction was a critical step for radioiodination, therefore labelling of gluc-Tyr3-tate and DOTA-Tyr3-tate with 125I was not so simple and the reaction product had to be purified by preparative HPLC analysis. Whereas 111In-DOTA-Tyr3-tate and 177Lu-DOTA-Tyr3-tate were eliminated in rat urine in a practically unchanged form, a significant proportion of metabolites was observed with radioiodinated peptides, particularly at longer time intervals. CONCLUSION: Labelling of DOTA-Tyr3-tate with radiometals is simple and the radiochemical purity of prepared compounds is very high, while iodination of the peptides demands purification of the product by preparative HPLC. The analysis of rat urine showed that excretion of radioiodinated peptides included a significant proportion of metabolites.
机译:背景:用辐射素或放射性卤代标记的生长抑素类似物可用于成像和治疗含生长抑素受体的肿瘤。在这项研究中,比较了葡萄糖-TYR3-奥曲霉(Gluc-Tyr3-octreotate(Gluc-Tyr3-Tate)和达达-TYR3-辛脂(DOTA-TYR3-TATE)的放射性碘化的程序,并进行了111in,177Lu和125i,以及大鼠的代谢分析了。研究了高效液相色谱(HPLC)分析及瞬时薄层色谱对硅胶(ITLC-SG)的用于硅凝胶(ITLC-SG)的有用性,并进行了尿液中代谢分析。材料和方法:为了用辐射摩量标记,采用与肽的1,4,7,10-四酶二癸烷-1,4,7,10-四乙酸(DOTA)官能团的复合物的形成。通过氯酰胺-T方法进行放射性碘。通过HPLC和/或ITLC-SG方法测定放射性标记肽的放射化学纯度和大鼠尿液的分析。雄性Wistar大鼠用于消除研究。结果:Dota-Tyr3-tate简单地用高产率和高放射化学纯度的放射性散布。反应的停止是用于放射性碘的关键步骤,因此Gluc-Tyr3-Tate和Dota-Tyr3-tate的标记并不是如此简单,并且必须通过制备型HPLC分析纯化反应产物。然而,在几乎不变的形式中在大鼠尿液中消除111in-dota-tyr3-tate和177lu-dota-tyr3-tate,用放射性碘肽观察到显着比例的代谢物,特别是以更长的时间间隔。结论:用辐射摩量标记DOTA-Tyr3 - attate简单,制备的化合物的放射化学纯度非常高,而肽的碘化通过制备型HPLC需要纯化产物。大鼠尿液分析表明放射性碘肽的排泄包括显着比例的代谢物。

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