From the Department of Nuclear Medicine (X.L., I.I., M.C.K., D.R., A.B., S.S.), Medizinische Klinik und Poliklinik I (W.B., J.W., E.B., S.F.), IFB CHFC Wuerzburg (X.L., W.B., E.B., S.F., S.S.), and Department of Experimental Physics 5 (V.H., P.J.), University of Wuerzburg, Wuerzburg, Germany.
Arterioscler Thromb Vasc Biol. 2014 Aug;34(8):1661-7. doi: 10.1161/ATVBAHA.114.303485. Epub 2014 Jun 5.
Nuclear imaging of active plaques still remains challenging. Advanced atherosclerotic plaques have a strong expression of P-selectin by the endothelium overlying active atherosclerotic plaques, but not on the endothelium overlying inactive fibrous plaques. We proposed a new approach for noninvasive in vivo characterization of P-selectin on active plaques based on (68)Ga-Fucoidan, which is a polysaccharidic ligand of P-selectin with a nanomolar affinity.
(68)Ga-Fucoidan was tested for its potential to discriminate vulnerable plaques on apolipoprotein E-deficient mice receiving a high cholesterol diet by positron emission tomography and in correlation with 17.6T MRI. Furthermore, (68)Ga-Fucoidan was evaluated on endothelial cells in vitro and ex vivo on active plaques using autoradiography. The cellular uptake rate was increased ≈2-fold by lipopolysaccharide induction. Interestingly, on autoradiography, more intensive tracer accumulation at active plaques with thin fibrous caps and high-density foam cells were observed in comparison with a weaker focal uptake in inactive fibrous plaque segments (R=1.7±0.3; P<0.05) and fatty streaks (R=2.4±0.4; P<0.01). Strong uptake of radiotracer colocalized with increased P-selectin expression and high-density macrophage. Focal vascular uptake (mean of target to background ratio=5.1±0.8) of (68)Ga-Fucoidan was detected in all apolipoprotein E-deficient mice. Anatomic structures of plaque were confirmed by 17.6T MRI. The autoradiography showed a good agreement of (68)Ga-Fucoidan uptake with positron emission tomography.
Our data suggest that (68)Ga-Fucoidan represents a versatile imaging biomarker for P-selectin with the potential to specifically detect P-selectin expression using positron emission tomography and to discriminate vulnerable plaques in vivo.
主动斑块的核成像仍然具有挑战性。在活跃的动脉粥样硬化斑块上,内皮细胞强烈表达 P 选择素,而在不活跃的纤维斑块上,内皮细胞则不表达 P 选择素。我们提出了一种基于(68)Ga-Fucoidan 的新方法,用于非侵入性地体内描述主动斑块上的 P 选择素,(68)Ga-Fucoidan 是一种与 P 选择素有纳米摩尔亲和力的多糖配体。
通过正电子发射断层扫描(PET)和与 17.6T MRI 相关联,在接受高胆固醇饮食的载脂蛋白 E 缺陷小鼠上测试(68)Ga-Fucoidan 区分易损斑块的潜力。此外,还通过放射性自显影评估了(68)Ga-Fucoidan 在体外的内皮细胞和体内的活性斑块。通过脂多糖诱导,细胞摄取率增加了约 2 倍。有趣的是,在放射性自显影中,与不活跃的纤维斑块段(R=1.7±0.3;P<0.05)和脂肪条纹(R=2.4±0.4;P<0.01)相比,在薄纤维帽和高密度泡沫细胞的活性斑块上观察到更强的示踪剂积累。放射性示踪剂的摄取与 P 选择素表达的增加和高密度巨噬细胞的摄取高度一致。在所有载脂蛋白 E 缺陷小鼠中均检测到(68)Ga-Fucoidan 的局灶性血管摄取(靶标与背景比值的平均值=5.1±0.8)。17.6T MRI 证实了斑块的解剖结构。放射性自显影显示(68)Ga-Fucoidan 的摄取与正电子发射断层扫描具有良好的一致性。
我们的数据表明,(68)Ga-Fucoidan 是一种多功能的 P 选择素成像生物标志物,具有使用正电子发射断层扫描特异性检测 P 选择素表达的潜力,并能在体内区分易损斑块。