Practical Theoretic Guidance for the Design of Tumor-Targeting Agents

Theoretical analyses of targeting agent pharmacokinetics provides specific guidance with respect to desirable design objectives such as agent size, affinity, and target antigen. These analyses suggest that IgG-sized macromolecular constructs exhibit the most favorable balance between systemic cleara...

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Veröffentlicht in:Methods in Enzymology 2012, Vol.503, p.255-268
Hauptverfasser: Wittrup, K. Dane, Thurber, Greg M., Schmidt, Michael M., Rhoden, John J.
Format: Artikel
Sprache:eng
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Zusammenfassung:Theoretical analyses of targeting agent pharmacokinetics provides specific guidance with respect to desirable design objectives such as agent size, affinity, and target antigen. These analyses suggest that IgG-sized macromolecular constructs exhibit the most favorable balance between systemic clearance and vascular extravasation, resulting in maximal tumor uptake. Quantitative predictions of the effects of dose and binding affinity on tumor uptake and penetration are also provided. The single bolus dose required for saturation of xenografted tumors in mice can be predicted from knowledge of antigen expression level and metabolic half-life. The role of high binding affinity in tumor uptake can be summarized as: essential for small peptides, less important for antibodies, and negligible for nanoparticles.
ISSN:0076-6879
1557-7988
DOI:10.1016/B978-0-12-396962-0.00010-0