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Glycine N-Methylation in NGR-Tagged Nanocarriers Prevents Isoaspartate Formation and Integrin Binding without Impairing CD13 Recognition and Tumor Homing

Academic Article
Publication Date:
2017
Short description:
Glycine N-Methylation in NGR-Tagged Nanocarriers Prevents Isoaspartate Formation and Integrin Binding without Impairing CD13 Recognition and Tumor Homing / Corti, A., Gasparri, A.M., Ghitti, M., Sacchi, A., Sudati, F., Fiocchi, M., Buttiglione, V., Perani, L., Gori, A., Valtorta, S., Moresco, R.M., Pastorino, F., Ponzoni, M., Musco, G., Curnis, F.. - In: ADVANCED FUNCTIONAL MATERIALS. - ISSN 1616-301X. - 27:36(2017), p. 1701245. [Epub ahead of print] [10.1002/adfm.201701245]
abstract:
NGR (asparagine-glycine-arginine) is a tumor vasculature-homing peptide motif widely used for the functionalization of drugs, nanomaterials, and imaging compounds for cancer treatment and diagnosis. Unfortunately, this motif has a strong propensity to undergo rapid deamidation. This reaction, which converts NGR into isoDGR, is associated with receptor switching from CD13 to integrins, with potentially important manufacturing and pharmacological and toxicological implications. It is found that glycine N-methylation of NGR-tagged nanocarriers completely prevents asparagine deamidation without impairing CD13 recognition. Studies in animal models have shown that the methylated NGR motif can be exploited for delivering radiolabeled compounds and nanocarriers, such as tumor necrosis factor-α-bearing nanogold and liposomal doxorubicin, to tumors with improved selectivity. These findings suggest that this NGR derivative is a stable and efficient tumor-homing ligand that can be used for delivering functional nanomaterials to tumor vasculature.
Iris type:
1.1 Articolo in rivista
Keywords:
Deamidation; Enzymes; Molecular docking; N-methylglycine; Peptides; Electronic, Optical and Magnetic Materials; Biomaterials; Condensed Matter Physics; Electrochemistry
List of contributors:
Corti, Angelo; Gasparri, Anna Maria; Ghitti, Michela; Sacchi, Angelina; Sudati, Francesco; Fiocchi, Martina; Buttiglione, Valentina; Perani, Laura; Gori, Alessandro; Valtorta, Silvia; Moresco, Rosa Maria; Pastorino, Fabio; Ponzoni, Mirco; Musco, Giovanna; Curnis, Flavio
Handle:
https://iris.unisr.it/handle/20.500.11768/61148
Published in:
ADVANCED FUNCTIONAL MATERIALS
Journal
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URL

http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1616-3028
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