Spectroscopically Well-Characterized RGD Optical Probe as a Prerequisite for Lifetime-Gated Tumor Imaging

2011 | journal article. A publication with affiliation to the University of Göttingen.

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​Spectroscopically Well-Characterized RGD Optical Probe as a Prerequisite for Lifetime-Gated Tumor Imaging​
Mathejczyk, J. E.; Pauli, J.; Dullin, C.; Napp, J.; Tietze, L. F. ; Kessler, H. & Resch-Genger, U. et al.​ (2011) 
Molecular Imaging10(6) pp. 469​-480​.​ DOI: https://doi.org/10.2310/7290.2011.00018 

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Authors
Mathejczyk, Julia Eva; Pauli, Jutta; Dullin, Christian; Napp, Joanna; Tietze, Lutz F. ; Kessler, Horst; Resch-Genger, Ute; Alves, Frauke 
Abstract
Labeling of RGD peptides with near-infrared fluorophores yields optical probes for noninvasive imaging of tumors overexpressing alpha(v)beta(3) integrins. An important prerequisite for optimum detection sensitivity in vivo is strongly absorbing and highly emissive probes with a known fluorescence lifetime. The RGD-Cy5.5 optical probe was derived by coupling Cy5.5 to a cyclic arginine-glycine-aspartic acid-D-phenylalanine lysine (RGDfK) peptide via an aminohexanoic acid spacer. Spectroscopic properties of the probe were studied in different matrices in comparison to Cy5.5. For in vivo imaging, human glioblastoma cells were subcutaneously implanted into nude mice, and in vivo fluorescence intensity and lifetime were measured. The fluorescence quantum yield and lifetime of Cy5.5 were found to be barely affected on RGD conjugation but dramatically changed in the presence of proteins. By time domain fluorescence imaging, we demonstrated specific binding of RGD-Cy5.5 to glioblastoma xenografts in nude mice. Discrimination of unspecific fluorescence by lifetime-gated analysis further enhanced the detection sensitivity of RGD-Cy5.5-derived signals. We characterized RGD-Cy5.5 as a strongly emissive and stable probe adequate for selective targeting of alpha(v)beta(3) integrins. The specificity and thus the overall detection sensitivity in vivo were optimized with lifetime gating, based on the previous determination of the probes fluorescence lifetime under application-relevant conditions.
Issue Date
2011
Journal
Molecular Imaging 
ISSN
1535-3508
Language
English
Sponsor
Deutsche Forschungsgemeinschaft [Sonderforschungsbereich 416]

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