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首页> 外文期刊>The Journal of Nuclear Medicine >Effects of insulinlike growth factor binding proteins on insulinlike growth factor-I biodistribution in tumor-bearing nude mice.
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Effects of insulinlike growth factor binding proteins on insulinlike growth factor-I biodistribution in tumor-bearing nude mice.

机译:胰岛素样生长因子结合蛋白对荷瘤裸鼠胰岛素样生长因子-I生物分布的影响。

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摘要

This study evaluated the biodistribution and tumor targeting ability of radiolabeled insulinlike growth factor (IGF)-I. Because IGF binding proteins (IGFBPs) play a critical role in modulating IGF activity, the binding properties of 125I-labeled IGF-I to IGFBPs were investigated in vitro and in vivo. Because a large amount of the IGF-I was catabolized in vivo, we also studied the catabolism of IGF-I by tumor cells in vitro. METHODS: 125I-labeled-IGF-I was prepared using the chloramine T method. The biodistribution of 125I-labeled-IGF-I in tumor-bearing nude mice was compared between groups injected with 125I-labeled IGF-I alone or coinjected with unlabeled peptide. In vitro and in vivo chromatography studies were performed to evaluate the binding profile to IGFBPs and the degree of catabolites in serum as well as urine. RESULTS: Data indicated that the binding of radiolabeled IGF-I to IGFBPs in vitro was dose dependent. However, there was a difference in complex formation between the serum and the heparinized plasma. In heparinized plasma, the radioactivity shifted from a 30- to 50-kDa complex to a 150-kDa complex and to a free ligand, because the binding of heparin with IGFBPs decreased its affinity for IGF-I. In plasma prepared with acid citrate dextrose a binding pattern identical to that of serum was observed. Moreover, there was a binding difference between mouse and rat. The 125I-labeled IGF-I catabolized very quickly when incubated at 37 degrees C but not at all at 4 degrees C. In tumor-bearing nude mice, the uptake of radioactivity in normal tissues decreased quickly, particularly in the kidneys. In mice coinjected with unlabeled carrier, the radioactivity in most normal tissues was lower and the tumor uptake higher than in the mice without carrier. CONCLUSION: These data confirm that 125I-labeled IGF-I is avidly bound to IGFBPs, both in vitro and in vivo. By partially saturating this binding with unlabeled peptides, a favorable biodistribution was achieved, including faster clearance from normal tissue and higher tumor uptake, which resulted in better tumor-to-nontumor ratios. Nevertheless, the rapid catabolism and release of the radiolabel from tumor tissue result in a suboptimal targeting agent.
机译:这项研究评估了放射性标记的胰岛素样生长因子(IGF)-I的生物分布和肿瘤靶向能力。由于IGF结合蛋白(IGFBP)在调节IGF活性中起关键作用,因此在体外和体内研究了125I标记的IGF-I与IGFBP的结合特性。因为大量的IGF-1在体内被分解代谢,所以我们还研究了肿瘤细胞在体外对IGF-1的分解代谢。方法:采用氯胺T法制备125I标记的IGF-1。在单独注射125I标记的IGF-I或未注射肽的共注射组之间比较了125I标记的IGF-1在荷瘤裸鼠中的生物分布。进行了体外和体内色谱研究,以评估与IGFBPs的结合情况以及血清和尿液中分解代谢物的程度。结果:数据表明放射性标记的IGF-I与IGFBPs的体外结合是剂量依赖性的。但是,血清和肝素化血浆之间的复合物形成存在差异。在肝素化血浆中,放射性从30 kDa到50 kDa复合物转移到150 kDa复合物和游离配体,因为肝素与IGFBP的结合降低了其对IGF-1的亲和力。在用柠檬酸酸性葡萄糖制备的血浆中,观察到与血清相同的结合模式。此外,小鼠和大鼠之间存在结合差异。 125I标记的IGF-1在37摄氏度下孵育时很快分解代谢,而在4摄氏度下根本没有分解。在荷瘤裸鼠中,正常组织(尤其是肾脏)中放射性的吸收迅速下降。与没有载体的小鼠相比,在与未标记载体共注射的小鼠中,大多数正常组织的放射性较低,而肿瘤的吸收较高。结论:这些数据证实125I标记的IGF-1在体外和体内均与IGFBP紧密结合。通过用未标记的肽部分饱和该结合,获得了良好的生物分布,包括从正常组织中清除得更快和更高的肿瘤吸收率,从而导致了更好的肿瘤与非肿瘤比率。然而,放射标记物从肿瘤组织的快速分解代谢和释放导致亚最佳靶向剂。

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