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用于黑色素瘤模型中不同血管生成受体的放射性示踪剂。

Radiotracers for different angiogenesis receptors in a melanoma model.

机构信息

Radiopharmacy Center, Institute of Energetic and Nuclear Research, Sao Paulo, Sao Paulo, Brazil.

出版信息

Melanoma Res. 2012 Feb;22(1):45-53. doi: 10.1097/CMR.0b013e32834e6a7e.

Abstract

Early and reliable diagnosis of melanoma, a skin tumor with a poor prognosis, is extremely important. Phage display peptide libraries are a convenient screening resource for identifying bioactive peptides that interact with cancer targets. The aim of this study was to evaluate two technetium-99m tracers for angiogenesis detection in a melanoma model, using cyclic pegylated pentapeptide with RGD and NGR motifs conjugated with the bifunctional chelator mercaptoacetyltriglycine (MAG(3)). The conjugated peptides (10 μl of a μg/μl solution) were labeled with technetium-99m using a sodium tartrate buffer. Radiochemical evaluation was carried out by instant thin-layer chromatography and confirmed by high-performance liquid chromatography. The partition coefficient was determined and internalization assays were performed in two melanoma cell lines (B16F10 and SKMEL28). Biodistribution evaluation of the tracers was carried out in healthy animals at different time points and also in tumor-bearing mice, 120 min post injection. Blocking studies were also conducted by coinjection of cold peptides. The conjugates displayed a rather similar pharmacokinetic profile. They were radiolabeled with high radiochemical purity (>97%) and both were hydrophilic with preferential renal excretion. Yet, tumor uptake was higher for human than for murine melanoma cells, especially for [(99m)Tc]-MAG(3)-PEG(8)-c(RGDyk) (7.85±2.34%injected dose/g 120 min post injection). The performance of [(99m)Tc]-MAG(3)-PEG(8)-c(RGDyk) was better than the NGR tracer with regard to human melanoma uptake. In this sense, it should be considered for future radiotracer studies of tumor diagnosis.

摘要

早期、可靠地诊断预后不良的皮肤肿瘤黑色素瘤极其重要。噬菌体展示肽文库是一种方便的筛选资源,可用于鉴定与癌症靶标相互作用的生物活性肽。本研究旨在评估两种用于黑色素瘤模型中血管生成检测的锝-99m 示踪剂,使用与双功能螯合剂巯基乙酰三甘氨酸(MAG(3))缀合的环聚乙二醇化五肽 RGD 和 NGR 基序。将缀合的肽(10 μl,μg/μl 溶液)用酒石酸钠缓冲液标记锝-99m。通过即时薄层层析法进行放射化学评价,并通过高效液相色谱法确认。测定分配系数,并在两种黑色素瘤细胞系(B16F10 和 SKMEL28)中进行内化试验。在不同时间点对健康动物和荷瘤小鼠进行示踪剂的生物分布评估,注射后 120 分钟。还通过冷肽共注射进行了阻断研究。这些缀合物显示出相当相似的药代动力学特征。它们的放射性标记具有很高的放射化学纯度(>97%),均具有亲水性,优先经肾脏排泄。然而,与鼠源黑色素瘤细胞相比,人源黑色素瘤细胞的摄取更高,尤其是对于 [(99m)Tc]-MAG(3)-PEG(8)-c(RGDyk)(注射后 120 分钟时为 7.85±2.34%注入剂量/g)。与 NGR 示踪剂相比,[(99m)Tc]-MAG(3)-PEG(8)-c(RGDyk)在人源黑色素瘤摄取方面的性能更好。在这方面,它应该被考虑用于未来的肿瘤诊断放射性示踪剂研究。

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