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PET Imaging of FSHR Expression in Tumors with 68Ga-Labeled FSH1 Peptide

机译:带有68Ga标签的FSH1肽的肿瘤中FSHR表达的PET成像

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摘要

FSHR is an appealing target for cancer theranostics. Radiolabeled FSH1 and its derivatives have shown potential to in vivo detect FSHR expression. However, moderate labeling yields (~50% nondecay-corrected) may partially limit their wide use. 68Ga is an excellent PET nuclide due to availability, nearly quantitative reaction, and short physical half-life. In this study, 68Ga labeled FSH1 peptide was developed for imaging of FSHR in cancers. In vitro studies and MicroPET imaging were performed in PC-3 prostate tumor model. [68Ga] Ga-NOTA-MAL-FSH1 can be produced within 20 min with 93.2 ± 2.1% yield and the radiochemical purity was greater than 95%. It showed that [68Ga] Ga-NOTA-MAL-FSH1 possessed FSHR binding affinities. The tracer was stable in PBS and human serum for at least 2 hours. MicroPET imaging revealed that the PC-3 xenografts were clearly visualized and the tumor uptakes were 1.87 ± 0.10, 1.26 ± 0.06, and 0.71 ± 0.10% ID/g at 0.5, 1 h, and 2 h postinjection. The corresponding tumor to blood and tumor to muscle ratios were 1.77 ± 0.70, 7.94 ± 1.35, and 10.37 ± 1.16 and 7.42 ± 0.46, 26.13 ± 2.99, and 36.40 ± 2.54, respectively. FSHR binding specificity was also demonstrated by reduced tumor uptake of [68Ga] Ga-NOTA-MAL-FSH1 after coinjecting excess unlabeled FSH1 peptide. The favorable characters of [68Ga] Ga-NOTA-MAL-FSH1 such as convenient synthesis and specific tumor uptake warrant its further investigation for FSHR expression imaging.
机译:FSHR是癌症治疗法的诱人靶标。放射性标记的FSH1及其衍生物已显示出在体内检测FSHR表达的潜力。但是,中等的标签产量(约50%未衰减校正)可能会部分限制其广泛使用。 68 Ga是一种优异的PET核素,因为它具有可用性,几乎定量的反应和较短的物理半衰期。在这项研究中,开发了 68 Ga标记的FSH1肽用于癌症中FSHR的成像。在PC-3前列腺肿瘤模型中进行了体外研究和MicroPET成像。 [ 68 Ga] Ga-NOTA-MAL-FSH1可以在20分钟内生产,产率为93.2±2.1%,放射化学纯度大于95%。结果表明,[ 68 Ga] Ga-NOTA-MAL-FSH1具有FSHR结合亲和力。示踪剂在PBS和人血清中稳定至少2小时。 MicroPET成像显示清晰可见了PC-3异种移植物,注射后0.5、1?h和2?h的肿瘤摄取分别为1.87±0.10、1.26±0.06和0.71±0.10%ID / g。相应的肿瘤与血液和肿瘤与肌肉的比率分别为1.77±0.70、7.94±1.35和10.37±1.16和7.42±0.46、26.13±2.99和36.40±2.54。共注射过量的未标记FSH1肽后,肿瘤对[ 68 Ga] Ga-NOTA-MAL-FSH1的摄取减少,从而证明了FSHR结合特异性。 [ 68 Ga] Ga-NOTA-MAL-FSH1的有利特征,如方便合成和特异性肿瘤吸收等,值得进一步研究。

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