4.7 Article

64Cu-Labeled Tetrameric and octameric RGD peptides for small-animal PET of Tumor αvβ3 integrin expression

期刊

JOURNAL OF NUCLEAR MEDICINE
卷 48, 期 7, 页码 1162-1171

出版社

SOC NUCLEAR MEDICINE INC
DOI: 10.2967/jnumed.107.039859

关键词

integrin alpha(v)beta(3); RGD multimer; tumor angiogenesis; positron emission tomography (PET); Cu-64

资金

  1. NCI NIH HHS [U54 CA119367, R24 CA93862, R21 CA102123, P50 CA114747] Funding Source: Medline
  2. NIBIB NIH HHS [R21 EB001785] Funding Source: Medline

向作者/读者索取更多资源

Integrin alpha(v)beta(3) plays a critical role in tumor angiogenesis and metastasis. Suitably radiolabeled cyclic arginine-glycine-aspartic (RGD) peptides can be used for noninvasive imaging of alpha(v)beta(3) expression and targeted radionuclide therapy. In this study, we developed Cu-64-labeled multimeric RGD peptides, E{E[c(RGDyK)](2)}(2) (RGD tetramer) and E(E{E[c(RGDyK](2)}(2))(2) (RGD octamer), for PET imaging of tumor integrin alpha(v)beta(3) expression. Methods: Both RGD tetramer and RGD octamer were synthesized with glutamate as the linker. After conjugation with 1,4,7,10-tetra-azacyclododecane-N, N ',N '',N '''-tetraacetic acid (DOTA), the peptides were labeled with Cu-64 for biodistribution and small-animal PET imaging studies (U87MG human glioblastoma xenograft model and c-neu oncomouse model). A cell adhesion assay, a cell-binding assay, receptor blocking experiments, and immunohistochemistry were also performed to evaluate the alpha(v)beta(3)-binding affinity/specificity of the RGD peptide-based conjugates in vitro and in vivo. Results: RGD octamer had significantly higher integrin alpha(v)beta(3)-binding affinity and specificity than RGD tetramer analog (inhibitory concentration of 50% was 10 nM for octamer vs. 35 nM for tetramer). Cu-64-DOTA-RGD octamer had higher tumor uptake and longer tumor retention than Cu-64-DOTA-RGD tetramer in both tumor models tested. The integrin alpha(v)beta(3) specificity of both tracers was confirmed by successful receptor-blocking experiments. The high uptake and slow clearance of Cu-64-DOTA-RGD octamer in the kidneys was attributed mainly to the integrin positivity of the kidneys, significantly higher integrin alpha(v)beta(3)-binding affinity, and the larger molecular size of the octamer, as compared with the other RGD analogs. Conclusion: Polyvalency has a profound effect on the receptor-binding affinity and in vivo kinetics of radiolabeled RGD multimers. The information obtained here may guide the future development of RGD peptide-based imaging and internal radiotherapeutic agents targeting integrin alpha(v)beta(3).

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