Design, Preparation and Characterization of Cyclic RGD Dimer for Targeting Integrin aVb3

Journal of Convergence Information Technology(2011)

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摘要
This paper was to design a cyclic RGD peptide tumor inhibitor by molecular docking technique, determinate the characteristics of the cRGD dimer in vitro and prepare 99mTc-cRGD dimer tumor probe. cRGD molecule library was built and an optimal structure of cRGD peptide with the best score that was Cys-Arg-Gly-Asp-(D)Ser-Cys was screened out using DOCK procedure of V-life software. A dimer containing two cRGD peptides linked by Tyr-(D)Ser-Lys-(D)Ser -Ser and with a side chain Gly-Gly-(D)Ala-Gly on lysine residue was synthesized and 99mTc-cRGD dimer was prepared. The radiolabeled efficiency, stability, water-soluble and affinity of cRGD dimer in vitro were evaluated. Under the reaction condition of room temperature, 1g/L SnCl 2·2H 2O and the 30 min of reaction time, 99mTc labeling efficiency reached (87.42±3.21)%. With Sephadex G10 purification, the radiochemical purity was no less than 95%. In both mediums of saline and fresh human serum, the radiochemical purity kept high stability at room temperature and 37°C. The equilibrium dissociation constant (Kd) to U87MG human glioma cells was determined and the octanol-water partition coefficient was mearsured. The Kd value is (3.867±0.052)×10 -9 mol/L and octanol-water partition coefficient log P value is -1.96±0.01. This in vitro study provides evidence that cRGD peptide screened by computeraided drug design (CADD) system can bind to integrin α νβ 3 with high affinity, and may be a potential candidate radiotracer for integrin α νβ 3-positive tumors imaging.
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关键词
125I,99mTC,Dock,Equilibrium dissociation constant(Kd),Rgd peptides
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