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In vivo biodistribution and accumulation of 89Zr in mice.

机译:小鼠体内89Zr的体内生物分布和积累。

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INTRODUCTION: The present investigation focuses on the chemical and biological fate of (89)Zr in mice. Electrophoreses of (89)Zr solvated or chelated in different conditions are here presented. The biological fate of mice injected with [(89)Zr]Zr-oxalate, [(89)Zr]Zr-chloride, [(89)Zr]Zr-phosphate, [(89)Zr]Zr-desferrioxamine and [(89)Zr]Zr-citrate is studied with the biodistribution, the clearances and positron emission tomography images. A special focus is also given regarding the quality of (89)Zr bone accumulation. METHODS: Electrophoreses were carried out on chromatography paper and read by gamma counting. Then, the solutions were intravenously injected in mice, imaged at different time points and sacrificed. The bones, the epiphysis and the marrow substance were separated and evaluated with gamma counts. RESULTS: The clearances of [(89)Zr]Zr-chloride and [(89)Zr]Zr-oxalate reached 20% of injected dose (ID) after 6 days whereas [(89)Zr]Zr-phosphate was only 5% of ID. [(89)Zr]Zr-citrate and [(89)Zr]Zr-DFO were noticeably excreted after the first day postinjection (p.i.). [(89)Zr]Zr-chloride and [(89)Zr]Zr-oxalate resulted in a respective bone uptake of approximately 15% ID/g and approximately 20% ID/g at 8 h p.i. with minor losses after 6 days. [(89)Zr]Zr-citrate bone uptake was also observed, but [(89)Zr]Zr-phosphate was absorbed in high amounts in the liver and the spleen. The marrow cells were insignificantly radioactive in comparison to the calcified tissues. CONCLUSION: Despite the complexity of Zr coordination, the electrophoretic analyses provided detailed evidences of Zr charges either as salts or as complexes. This study also shows that weakly chelated, (89)Zr is a bone seeker and has a strong affinity for phosphate.
机译:引言:本研究侧重于(89)Zr在小鼠中的化学和生物学命运。本文介绍了在不同条件下溶剂化或螯合的(89)Zr电泳。注射[(89)Zr] Zr-草酸盐,[(89)Zr] Zr-氯化物,[(89)Zr] Zr-磷酸盐,[(89)Zr] Zr-去铁胺和[(89)的小鼠的生物命运用柠檬酸锆的生物分布,清除率和正电子发射断层扫描图像研究了柠檬酸锆。还特别关注(89)Zr骨堆积的质量。方法:电泳在色谱纸上进行,并通过伽玛计数读取。然后,将溶液静脉内注射到小鼠中,在不同时间点成像并处死。分离骨骼,骨physi和骨髓物质,并用伽马计数进行评估。结果:[(89)Zr] Zr-氯化物和[(89)Zr] Zr-草酸盐的清除率在6天后达到注射剂量(ID)的20%,而[(89)Zr] Zr-磷酸盐的清除率仅为5%的ID。注射后第一天(p.i.)明显排泄了[(89)Zr] Zr-柠檬酸柠檬酸盐和[(89)Zr] Zr-DFO。 [(89)Zr] Zr-氯化物和[(89)Zr] Zr-草酸在8 h p.i时分别引起大约15%ID / g和大约20%ID / g的骨吸收。 6天后损失不大。还观察到[(89)Zr] Zr-柠檬酸盐的骨吸收,但是[(89)Zr] Zr-磷酸盐在肝脏和脾脏中大量吸收。与钙化组织相比,骨髓细胞的放射性微不足道。结论:尽管Zr配位很复杂,电泳分析还是提供了Zr电荷的盐或络合物的详细证据。该研究还表明,弱螯合的(89)Zr是一种寻骨剂,对磷酸盐具有很强的亲和力。

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