首页> 外文期刊>American Journal of Nuclear Medicine and Molecular Imaging >Preparation and evaluation of a 68Ga-labeled RGD-containing octapeptide for noninvasive imaging of angiogenesis: biodistribution in non-human primate
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Preparation and evaluation of a 68Ga-labeled RGD-containing octapeptide for noninvasive imaging of angiogenesis: biodistribution in non-human primate

机译:68Ga标记的含RGD的八肽的血管生成非侵入性成像的制备和评估:非人灵长类动物中的生物分布。

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Monitoring general disease marker such as angiogenesis may contribute to the development of personalized medicine and improve therapy outcome. Readily availability of positron emitter based imaging agents providing quantification would expand clinical positron emission tomography (PET) applications. Generator produced 68Ga provides PET images of high resolution and the half-life time frame is compatible with the pharmacokinetics of small peptides comprising arginine-glycine-aspartic acid (RGD) sequence specific to αvβ3 integrin receptors. The main objective of this study was to develop a method for 68Ga-labeling of RGD containing bicyclic octapeptide ([68Ga]Ga-DOTA-RGD) with high specific radioactivity and preclinically assess its imaging potential. DOTA-RGD was labeled using generator eluate preconcentration technique and microwave heating. The binding and organ distribution properties of [68Ga]Ga-DOTA-RGD were tested in vitro by autoradiography of frozen tumor sections, and in vivo in mice carrying a Lewis Lung carcinoma graft (LL2), and in non-human primate (NHP). Another peptide with aspartic acid-glycine-phenylalanine sequence was used as a negative control. The full 68Ga radioactivity eluted from two generators was quantitatively incorporated into 3-8 nanomoles of the peptide conjugates. The target binding specificity was confirmed by blocking experiments. The specific uptake in the LL2 mice model was observed in vivo and confirmed in the corresponding ex vivo biodistribution experiments. Increased accumulation of the radioactivity was detected in the wall of the uterus of the female NHP probably indicating neovascularization. [68Ga]Ga-DOTA-RGD demonstrated potential for the imaging of angiogenesis.
机译:监测诸如血管生成的一般疾病标志可能有助于个性化医学的发展并改善治疗效果。提供定量的基于正电子发射体的成像剂的可用性将扩展临床正电子发射断层扫描(PET)应用。发生器生产的68Ga可提供高分辨率的PET图像,并且半衰期与包含特定于αvβ3整联蛋白受体的精氨酸-甘氨酸-天冬氨酸(RGD)序列的小肽的药代动力学兼容。这项研究的主要目的是开发一种具有高比放射性的含双环八肽([68Ga] Ga-DOTA-RGD)的RGD的68Ga标记方法,并在临床前评估其成像潜能。使用发生器洗脱液预浓缩技术和微波加热标记DOTA-RGD。通过放射自显影的冷冻肿瘤切片在体外测试[68Ga] Ga-DOTA-RGD的结合和器官分布特性,并在携带路易斯肺癌移植物(LL2)的小鼠和非人类灵长类动物(NHP)中进行体内测试。具有天冬氨酸-甘氨酸-苯丙氨酸序列的另一种肽用作阴性对照。从两个发生器洗脱下来的全部68Ga放射性被定量地掺入3-8纳摩尔的肽缀合物中。通过阻断实验确认了靶标结合特异性。在体内观察到LL2小鼠模型中的特异性摄取,并在相应的离体生物分布实验中得到证实。在女性NHP的子宫壁中检测到放射性增加,这可能表明是新血管形成。 [68Ga] Ga-DOTA-RGD展示了血管生成成像的潜力。

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