| Literature DB >> 23992105 |
Lukas O Dialer1, Svetlana V Selivanova, Carmen J Müller, Adrienne Müller, Timo Stellfeld, Keith Graham, Ludger M Dinkelborg, Stefanie D Krämer, Roger Schibli, Markus Reiher, Simon M Ametamey.
Abstract
Silicon-containing prosthetic groups have been conjugated to peptides to allow for a single-step labeling with (18)F radioisotope. The fairly lipophilic di-tert-butylphenylsilane building block contributes unfavorably to the pharmacokinetic profile of bombesin conjugates. In this article, theoretical and experimental studies toward the development of more hydrophilic silicon-based building blocks are presented. Density functional theory calculations were used to predict the hydrolytic stability of di-tert-butylfluorosilanes 2-23 with the aim to improve the in vivo properties of (18)F-labeled silicon-containing biomolecules. As a further step toward improving the pharmacokinetic profile, hydrophilic linkers were introduced between the lipophilic di-tert-butylphenylsilane building block and the bombesin congeners. Increased tumor uptake was shown with two of these peptides in xenograft-bearing mice using positron emission tomography and biodistribution studies. The introduction of a hydrophilic linker is thus a viable approach to improve the tumor uptake of (18)F-labeled silicon-bombesin conjugates.Entities:
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Year: 2013 PMID: 23992105 DOI: 10.1021/jm400857f
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446