首页> 外文期刊>European Journal of Nuclear Medicine and Molecular Imaging >Pairwise comparison of 89Zr- and 124I-labeled cG250 based on positron emission tomography imaging and nonlinear immunokinetic modeling: In vivo carbonic anhydrase IX receptor binding and internalization in mouse xenografts of clear-cell renal cell carcinoma
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Pairwise comparison of 89Zr- and 124I-labeled cG250 based on positron emission tomography imaging and nonlinear immunokinetic modeling: In vivo carbonic anhydrase IX receptor binding and internalization in mouse xenografts of clear-cell renal cell carcinoma

机译:基于正电子发射断层扫描成像和非线性免疫动力学建模的89Zr和124I标记的cG250的成对比较:透明细胞肾细胞癌小鼠异种移植物中的体内碳酸酐酶IX受体结合和内在化

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摘要

Purpose: The PET tracer, 124I-cG250, directed against carbonic anhydrase IX (CAIX) shows promise for presurgical diagnosis of clear-cell renal cell carcinoma (ccRCC) (Divgi et al. in Lancet Oncol 8:304-310, 2007; Divgi et al. in J Clin Oncol 31:187-194, 2013). The radiometal 89Zr, however, may offer advantages as a surrogate PET nuclide over 124I in terms of greater tumor uptake and retention (Rice et al. in Semin Nucl Med 41:265-282, 2011). We have developed a nonlinear immunokinetic model to facilitate a quantitative comparison of absolute uptake and antibody turnover between 124I-cG250 and 89Zr-cG250 using a human ccRCC xenograft tumor model in mice. We believe that this unique model better relates quantitative imaging data to the salient biological features of tumor antibody-antigen binding and turnover. Methods: We conducted experiments with 89Zr-cG250 and 124I-cG250 using a human ccRCC cell line (SK-RC-38) to characterize the binding affinity and internalization kinetics of the two tracers in vitro. Serial PET imaging was performed in mice bearing subcutaneous ccRCC tumors to simultaneously detect and quantify time-dependent tumor uptake in vivo. Using the known specific activities of the two tracers, the equilibrium rates of antibody internalization and turnover in the tumors were derived from the PET images using nonlinear compartmental modeling. Results: The two tracers demonstrated virtually identical tumor cell binding and internalization but showed markedly different retentions in vitro. Superior PET images were obtained using 89Zr-cG250, owing to the more prolonged trapping of the radiolabel in the tumor and simultaneous washout from normal tissues. Estimates of cG250/CAIX complex turnover were 1.35 - 5.51×10 12 molecules per hour per gram of tumor (20 % of receptors internalized per hour), and the ratio of 124I/89Zr atoms released per unit time by tumor was 17.5. Conclusion: Pairwise evaluation of 89Zr-cG250 and 124I-cG250 provided the basis for a nonlinear immunokinetic model which yielded quantitative information about the binding and internalization of radioantibody bound to CAIX on tumor cells in vivo. 89Zr-cG250 is likely to provide high-quality PET images and may be a useful tool to quantify CAIX/cG250 receptor turnover and cG250-accessible antigen density noninvasively in humans.
机译:目的:针对碳酸酐酶IX(CAIX)的PET示踪剂124I-cG250显示出有望在术前诊断透明细胞肾细胞癌(ccRCC)(Divgi等人,Lancet Oncol 8:304-310,2007; Divgi等人,J Clin Oncol 31:187-194,2013)。然而,就更大的肿瘤吸收和保留而言,放射性金属89Zr可提供替代124 I的PET核素的优势(Rice等人,Semin Nucl Med 41:265-282,2011)。我们已经开发了一种非线性免疫动力学模型,以利于在小鼠中使用人ccRCC异种移植肿瘤模型对124I-cG250和89Zr-cG250之间的绝对摄取和抗体更新进行定量比较。我们相信,这种独特的模型可以更好地将定量成像数据与肿瘤抗体-抗原结合和周转的显着生物学特征相关联。方法:我们使用人ccRCC细胞系(SK-RC-38)对89Zr-cG250和124I-cG250进行了实验,以表征两种示踪剂的体外结合亲和力和内在动力学。在携带皮下ccRCC肿瘤的小鼠中进行连续PET成像,以同时检测和量化体内时间依赖性肿瘤的摄取。使用这两种示踪剂的已知比活,使用非线性区室建模从PET图像得出肿瘤中抗体内在化和更新的平衡速率。结果:两种示踪剂显示出实质上相同的肿瘤细胞结合和内在化,但在体外显示出明显不同的保留。使用89Zr-cG250获得了优异的PET图像,这是由于放射性标记物在肿瘤中的捕获时间更长,并且同时从正常组织中被洗脱出来。估计每克肿瘤每小时cG250 / CAIX复合物的更新量为1.35-5.51×10 12个分子(每小时内化20%的受体),肿瘤每单位时间释放的124I / 89Zr原子的比率为17.5。结论:89Zr-cG250和124I-cG250的成对评估为非线性免疫动力学模型提供了基础,该模型产生了与CAIX结合的放射抗体在体内肿瘤细胞上的结合和内在化的定量信息。 89Zr-cG250可能会提供高质量的PET图像,并且可能是有用的工具,可以无创地量化CAIX / cG250受体的更新和cG250可及的抗原密度。

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