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Characterization of 5-(2-18F-fluoroethoxy)-L-tryptophan for PET imaging of the pancreas

机译:5-(2-18F-氟乙氧基)-L-色氨酸用于胰腺PET成像

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摘要

Purpose: In diabetes, pancreatic beta cell mass declines significantly prior to onset of fasting hyperglycemia. This decline may be due to endoplasmic reticulum (ER) stress, and the system L amino acid transporter LAT1 may be a biomarker of this process. In this study, we used 5-(2- 18F-fluoroethoxy)-L-tryptophan ( 18F-L-FEHTP) to target LAT1 as a potential biomarker of beta cell function in diabetes. Procedures: Uptake of 18F-L-FEHTP was determined in wild-type C57BL/6 mice by ex vivo biodistribution. Both dynamic and static positron emission tomography (PET) images were acquired in wild-type and Akita mice, a model of ER stress-induced diabetes, as well as in mice treated with streptozotocin (STZ). LAT1 expression in both groups of mice was evaluated by immunofluorescence microscopy. Results: Uptake of 18F-L-FEHTP was highest in the pancreas, and static PET images showed highly specific pancreatic signal. Time-activity curves showed significantly reduced 18F-L-FEHTP uptake in Akita mice, and LAT1 expression was also reduced. However, mice treated with STZ, in which beta cell mass was reduced by 62%, showed no differences in 18F-L-FEHTP uptake in the pancreas, and there was no significant correlation of 18F-L-FEHTP uptake with beta cell mass. Conclusions: 18F-L-FEHTP is highly specific for the pancreas with little background uptake in kidney or liver. We were able to detect changes in LAT1 in a mouse model of diabetes, but these changes did not correlate with beta cell function or mass. Therefore, 18F-L-FEHTP PET is not a suitable method for the noninvasive imaging of changes in beta cell function during the progression of diabetes.
机译:目的:在糖尿病中,在空腹高血糖发作之前,胰腺β细胞量会明显下降。这种下降可能是由于内质网(ER)应激所致,系统L氨基酸转运蛋白LAT1可能是该过程的生物标记。在这项研究中,我们使用了5-(2- 18 F-氟乙氧基)-L-色氨酸( 18 FL-FEHTP)靶向LAT1作为β细胞的潜在生物标志物在糖尿病中起作用。方法:通过离体生物分布测定野生型C57BL / 6小鼠中 18 F-L-FEHTP的摄取。动态和静态正电子发射断层扫描(PET)图像均在野生型和秋田小鼠(ER应激诱发的糖尿病模型)以及经链脲佐菌素(STZ)治疗的小鼠中获得。通过免疫荧光显微镜评估两组小鼠中LAT1的表达。结果:胰腺中 18 F-L-FEHTP的摄取最高,静态PET图像显示高度特异性的胰腺信号。时间-活动曲线显示,秋田小鼠的 18 F-L-FEHTP摄取显着降低,LAT1表达也降低。但是,用STZ处理的小鼠的β细胞量减少了62%,胰腺中的 18 FL-FEHTP摄取量无差异,并且 18 < / sup> FL-FEHTP的摄取与β细胞量有关。结论: 18 F-L-FEHTP对胰腺高度特异性,肾脏或肝脏的背景摄取很少。我们能够在糖尿病小鼠模型中检测到LAT1的变化,但这些变化与β细胞功能或质量无关。因此, 18 F-L-FEHTP PET不适用于对糖尿病进展期间的β细胞功能变化进行无创成像的方法。

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