4.7 Article

Protease-Activatable Organometal-Peptide Bioconjugates with Enhanced Cytotoxicity on Cancer Cells

Journal

BIOCONJUGATE CHEMISTRY
Volume 21, Issue 7, Pages 1288-1296

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/bc100089z

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Over the past years, numerous promising new metalorganic lead structures have been developed exhibiting highly active cytostatic properties. However, the efficiency of such chemotherapeutics in the treatment of tumors is often limited by their low therapeutic index due to their short half-life, lack of tumor selectivity, and associated side effects. Furthermore, the membrane barrier often restricts their cellular uptake by passive diffusion. In this contribution, we describe the synthesis, cellular uptake, and biologic activity of a series of cymantrene peptide conjugates. Cymantrene CpMn(C0)3 is 'I robust or.,!anometallic group, which is stable in air and water and easy to functionalize. In this work, some new cymantrene derivatives with different linkers between the half-sandwich complex and the carboxylate group were attached to the cell-penetrating peptide sC18 that should act as a transporter for the metal moiety. All conjugates were characterized for their cytotoxic activity on huatan breast adenocarcinoma cells (MCF-7) and human colon carcinoma cells (HT-29). We found that bioconjugates bearing two cymantrcne groups were more active than the monofunctionalized ones. By the introduction of a cathepsin B cleavage site next to the organometallic group, the biologic activity could be in increased even further. Fluorescence microscopy studies and apoptosis assays gave preliminary hints on the 1-node of action of these systems.

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