Macrophage PET imaging in mouse models of cardiovascular disease and cancer with an apolipoprotein-inspired radiotracer

Yohana C. Toner, Geoffrey Prévot, Mandy M. T. van Leent, Jazz Munitz, Roderick Oosterwijk, Anna Vera D. Verschuur, Yuri van Elsas, Vedran Peric, Rianne J. F. Maas, Anna Ranzenigo, Judit Morla-Folch, William Wang, Martin Umali, Anne de Dreu, Jessica Chimene Fernandes, Nathaniel A. T. Sullivan, Alexander Maier, Christian Mason, Thomas Reiner, Zahi A. Fayad, Willem J. M. Mulder, Abraham J. P. Teunissen, Carlos Pérez-Medina
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Abstract

Macrophages are key inflammatory mediators in many pathological conditions, including cardiovascular disease (CVD) and cancer, the leading causes of morbidity and mortality worldwide. This makes macrophage burden a valuable diagnostic marker and several strategies to monitor these cells have been reported. However, such strategies are often high-priced, non-specific, invasive, and/or not quantitative. Here, we developed a positron emission tomography (PET) radiotracer based on apolipoprotein A1 (ApoA1), the main protein component of high-density lipoprotein (HDL), which has an inherent affinity for macrophages. We radiolabeled an ApoA1-mimetic peptide (mA1) with zirconium-89 (89Zr) to generate a lipoprotein-avid PET probe (89Zr-mA1). We first characterized 89Zr-mA1’s affinity for lipoproteins in vitro by size exclusion chromatography. To study 89Zr-mA1’s in vivo behavior and interaction with endogenous lipoproteins, we performed extensive studies in wildtype C57BL/6 and Apoe-/- hypercholesterolemic mice. Subsequently, we used in vivo PET imaging to study macrophages in melanoma and myocardial infarction using mouse models. The tracer’s cell specificity was assessed by histology and mass cytometry (CyTOF). Our data show that 89Zr-mA1 associates with lipoproteins in vitro. This is in line with our in vivo experiments, in which we observed longer 89Zr-mA1 circulation times in hypercholesterolemic mice compared to C57BL/6 controls. 89Zr-mA1 displayed a tissue distribution profile similar to ApoA1 and HDL, with high kidney and liver uptake as well as substantial signal in the bone marrow and spleen. The tracer also accumulated in tumors of melanoma-bearing mice and in the ischemic myocardium of infarcted animals. In these sites, CyTOF analyses revealed that natZr-mA1 was predominantly taken up by macrophages. Our results demonstrate that 89Zr-mA1 associates with lipoproteins and hence accumulates in macrophages in vivo. 89Zr-mA1’s high uptake in these cells makes it a promising radiotracer for non-invasively and quantitatively studying conditions characterized by marked changes in macrophage burden.

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在心血管疾病和癌症小鼠模型中使用脂蛋白放射性示踪剂进行巨噬细胞 PET 成像研究
巨噬细胞是许多病理情况下的关键炎症介质,包括心血管疾病(CVD)和癌症,它们是全球发病率和死亡率的主要原因。因此,巨噬细胞负担是一种有价值的诊断标志物,目前已报道了几种监测这些细胞的方法。然而,这些方法往往价格昂贵、非特异性、侵入性和/或不能定量。在这里,我们开发了一种基于载脂蛋白 A1(ApoA1)的正电子发射断层扫描(PET)放射性示踪剂,载脂蛋白 A1 是高密度脂蛋白(HDL)的主要蛋白质成分,对巨噬细胞有内在的亲和力。我们用锆-89(89Zr)对载脂蛋白 A1 拟态肽(mA1)进行放射性标记,生成了一种脂蛋白亲和 PET 探针(89Zr-mA1)。我们首先通过尺寸排阻色谱法在体外鉴定了 89Zr-mA1 对脂蛋白的亲和力。为了研究 89Zr-mA1 在体内的行为以及与内源性脂蛋白的相互作用,我们在野生型 C57BL/6 和载脂蛋白/-高胆固醇血症小鼠体内进行了大量研究。随后,我们利用体内 PET 成像,使用小鼠模型研究了黑色素瘤和心肌梗塞中的巨噬细胞。示踪剂的细胞特异性通过组织学和质谱细胞计数法(CyTOF)进行了评估。我们的数据显示,89Zr-mA1 在体外与脂蛋白结合。这与我们的体内实验结果一致,我们观察到与 C57BL/6 对照组相比,高胆固醇血症小鼠体内 89Zr-mA1 的循环时间更长。89Zr-mA1 的组织分布与载脂蛋白 A1 和高密度脂蛋白相似,肾脏和肝脏摄取量高,骨髓和脾脏也有大量信号。该示踪剂还在黑色素瘤小鼠的肿瘤和梗死动物的缺血性心肌中积累。在这些部位,CyTOF分析显示,natZr-mA1主要被巨噬细胞吸收。我们的研究结果表明,89Zr-mA1 能与脂蛋白结合,从而在体内的巨噬细胞中蓄积。89Zr-mA1 在这些细胞中的高摄取率使其成为一种很有前途的放射性示踪剂,可用于无创定量研究巨噬细胞负担发生明显变化的情况。
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