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铟和铁作为红系前体细胞的示踪剂。

Indium and iron as tracers for erythroid precursors.

作者信息

Jeffcoat M K, McNeil B J, Davis M A

出版信息

J Nucl Med. 1978 May;19(5):496-500.

PMID:641571
Abstract

External visualization and delineation of functional bone marrow is important for diagnostic, prognostic and therapeutic purposes. Because of difficulties in using the isotopes of iron for bone-marrow imaging, indium-111 chloride has been used extensively for this purpose. In this investigation we attempted to solve the problem of cellular localization of indium chloride by employing a rat model with erythropoietic precursors selectively damaged by lethal intracellular radiation from the Auger electrons of Fe-55. In the rat, we have shown that the absolute marrow uptakes of indium and iron are different, whereas the absolute uptakes of indium and sulfur colloid are the same. However, in animals whose erythroid activity was partially destroyed with Fe-55, the fractional depressions of iron and indium uptakes were the same and corresponded to the extent of the remaining erythroid activity. In addition, following an in vitro separation of the cellular elements of marrow with iron carbonyl, both iron and indium were found in the erythroid-rich supernatant, whereas sulfur colloid was in the precipitate. These results indicate that, in the rat, In-111 chloride is an effective in vivo marker for the early phases of iron uptake by the bone marrow.

摘要

功能性骨髓的外部可视化和描绘对于诊断、预后及治疗目的而言至关重要。由于使用铁的同位素进行骨髓成像存在困难,氯化铟-111已被广泛用于此目的。在本研究中,我们试图通过采用一种大鼠模型来解决氯化铟的细胞定位问题,该模型中红细胞生成前体被来自Fe-55俄歇电子的致死性细胞内辐射选择性损伤。在大鼠中,我们已表明铟和铁的绝对骨髓摄取量不同,而铟和硫胶体的绝对摄取量相同。然而,在红细胞生成活性被Fe-55部分破坏的动物中,铁和铟摄取量的分数降低是相同的,且与剩余红细胞生成活性的程度相对应。此外,在用羰基铁对骨髓细胞成分进行体外分离后,在富含红细胞的上清液中发现了铁和铟,而硫胶体则在沉淀物中。这些结果表明,在大鼠中,氯化铟-111是骨髓摄取铁早期阶段的一种有效的体内标志物。

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