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      Multimeric cyclic RGD peptides as potential tools for tumor targeting: solid-phase peptide synthesis and chemoselective oxime ligation.

      Chemistry (Weinheim an Der Bergstrasse, Germany)
      Animals, Integrin alphaVbeta3, antagonists & inhibitors, metabolism, Mice, Mice, Nude, Neoplasms, Experimental, Oligopeptides, chemical synthesis, pharmacology, Oximes, Peptides, Cyclic, Vitronectin

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          Abstract

          The alpha v beta 3 integrin receptor plays an important role in human metastasis and tumor-induced angiogenesis. Targeting this receptor may provide information about the receptor status of the tumor and enable specific therapeutic planning. Solid-phase peptide synthesis of multimeric cyclo(-RGDfE-)-peptides is described, which offer the possibility of enhanced integrin targeting due to polyvalency effects. These peptides contain an aminooxy group for versatile chemoselective oxime ligation. Conjugation with para-trimethylstannylbenzaldehyde results in a precursor for radioiododestannylation, which would allow them to be used as potential tools for targeting and imaging alpha v beta 3-expressing tumor cells. The conjugates were obtained in good yield without the need of a protection strategy and under mild conditions.

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