Department of Radiology, Keck School of Medicine University of Southern California, Los Angeles, CA 90033, United States of America.
Department of Medicine, Keck School of Medicine University of Southern California, Los Angeles 90033, CA, United States of America.
Prostaglandins Leukot Essent Fatty Acids. 2022 Nov;186:102510. doi: 10.1016/j.plefa.2022.102510. Epub 2022 Oct 20.
Dysreglulated brain arachidonic acid (AA) metabolism is involved in chronic inflammation and is influenced by apolipoprotein E4 (APOE4) genotype, the strongest genetic risk factor of late-onset Alzheimer's disease (AD). Visualization of AA uptake and distribution in the brain can offer insight into neuroinflammation and AD pathogenesis. Here we present a novel synthesis and radiosynthesis of 20-[F]fluoroarachidonic acid ([F]-FAA) for PET imaging using a convergent route and a one-pot, single-purification radiolabeling procedure, and demonstrate its brain uptake in human ApoE4 targeted replacement (ApoE4-TR) mice. By examining p38 phosphorylation in astrocytes, we found that fluorination of AA at the ω-position did not significantly alter its biochemical role in cells. The brain incorporation coefficient (K*) of [F]-FAA was estimated via multiple methods by using an image-derived input function from the right ventricle of the heart as a proxy of the arterial input function and brain tracer concentrations assessed by dynamic PET-MR imaging. This new synthetic approach should facilitate the practical [F]-FAA production and allow its translation into clinical use, making investigations of dysregulation of lipid metabolism more feasible in the study of neurodegenerative diseases.
大脑花生四烯酸(AA)代谢失调与慢性炎症有关,并且受到载脂蛋白 E4(APOE4)基因型的影响,APOE4 基因型是迟发性阿尔茨海默病(AD)的最强遗传风险因素。AA 在大脑中的摄取和分布的可视化可以深入了解神经炎症和 AD 的发病机制。在这里,我们提出了一种新的合成方法和放射性合成 20-[F]氟花生四烯酸 ([F]-FAA) 用于 PET 成像,采用了一种收敛途径和一锅单纯化放射性标记程序,并在人类 ApoE4 靶向替换(ApoE4-TR)小鼠中证明了其脑摄取。通过检查星形胶质细胞中的 p38 磷酸化,我们发现 AA 在 ω 位的氟化并没有显著改变其在细胞中的生化作用。通过使用源自心脏右心室的图像衍生输入函数作为动脉输入函数的替代物,并通过动态 PET-MR 成像评估脑示踪剂浓度,通过多种方法估计 [F]-FAA 的脑摄取系数(K*)。这种新的合成方法应该促进实际的 [F]-FAA 生产,并允许其转化为临床应用,使脂质代谢失调的研究在神经退行性疾病的研究中变得更加可行。