As the applications of metabolic imaging are expanding, radiolabeled amino acids may gain increased clinical interest. This review first describes the basic aspects of amino acid metabolism,'/> Radiolabeled Amino Acids: Basic Aspects and Clinical Applications in Oncology*
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Radiolabeled Amino Acids: Basic Aspects and Clinical Applications in Oncology*

机译:放射性标记的氨基酸:肿瘤学的基本方面和临床应用*

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id="p-1">As the applications of metabolic imaging are expanding, radiolabeled amino acids may gain increased clinical interest. This review first describes the basic aspects of amino acid metabolism, then continues with basic aspects of radiolabeled amino acids, and finally describes clinical applications, with an emphasis on diagnostic value. A special focus is on 11C-methionine, 11C-tyrosine, and 123I-iodomethyltyrosine, because these have been most used clinically, although their common affinity for the L-transport systems may limit generalization to other classes of amino acids. The theoretic and preclinical background of amino acid imaging is sound and supports clinical applications. The fact that amino acid imaging is less influenced by inflammation may be advantageous in comparison with 18F-FDG PET imaging, although tumor specificity is not absolute. In brain tumor imaging, the use of radiolabeled amino acids is established, the diagnostic accuracy of amino acid imaging seems adequate, and the diagnostic value seems advantageous. The general feasibility of amino acid imaging in other tumor types has sufficiently been shown, but more research is required in larger patient series and in well-defined clinical settings.
机译:id =“ p-1”>随着代谢成像的应用不断扩展,放射性标记的氨基酸可能会引起越来越多的临床兴趣。这篇综述首先描述了氨基酸代谢的基本方面,然后继续了放射性标记氨基酸的基本方面,最后描述了临床应用,重点是诊断价值。特别关注 11 C-蛋氨酸, 11 C-酪氨酸和 123 I-碘甲基酪氨酸,因为它们在临床上使用最多,尽管它们对L-转运系统的共同亲和力可能将泛化限于其他类别的氨基酸。氨基酸成像的理论和临床前背景是合理的,并支持临床应用。尽管肿瘤特异性不是绝对的,但与 18 F-FDG PET成像相比,氨基酸成像受炎症影响较小的事实可能是有利的。在脑肿瘤成像中,建立了放射性标记氨基酸的使用,氨基酸成像的诊断准确性似乎足够,并且诊断价值似乎是有利的。已经充分显示了在其他肿瘤类型中进行氨基酸成像的一般可行性,但是在更大的患者系列和明确的临床环境中还需要进行更多的研究。

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