4.5 Article

Functionalization of Ruthenium(II) Terpyridine Complexes with Cyclic RGD Peptides To Target Integrin Receptors in Cancer Cells

期刊

EUROPEAN JOURNAL OF INORGANIC CHEMISTRY
卷 -, 期 12, 页码 1667-1672

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/ejic.201601094

关键词

Antitumor agents; Bioconjugation; Peptides; Receptors; Ruthenium

资金

  1. Cardiff University
  2. August-Wilhelm Scheer Visiting Professorship at the Technical University of Munich (TUM)
  3. Hans Fischer Senior Fellowship of TUM IAS (Institute for Advanced Study) - German Excellence Initiative
  4. Hans Fischer Senior Fellowship of TUM IAS (Institute for Advanced Study) - European Union Seventh Framework Program [291763]
  5. TUM Graduate School of Chemistry
  6. COST action [CM1105]
  7. FCT (Portugal) [UID/Multi/04349/2013]

向作者/读者索取更多资源

The lack of selectivity for cancer cells and the resulting negative impact on healthy tissue is a severe drawback of actual cancer chemotherapy. Tethering of cytotoxic drugs to targeting vectors such as peptides, which recognize receptors overexpressed on the surface of tumor cells, is one possible strategy to overcome such a problem. The pentapeptide cyc(RGDfK) targets the integrin receptor a(v)beta 3, important for tumor growth and metastasis formation. In this work, two terpyridine-based Ru-II complexes were prepared and for the first time conjugated to cyc(RGDfK) through amide bond formation, which resulted in a monomeric and a dimeric bioconjugate. Both RuII complexes were found to bind strongly and selectively to integrin a(v)beta 3, and the dimeric molecule displayed a 20-fold higher affinity to the receptor than the monomeric one. However, the cytotoxicity of the complexes and related bioconjugates against human A549 and SKOV-3 cell lines is still not sufficient for application as anticancer agents. Nevertheless, considering the high selectivity for integrin receptor a(v)beta 3, the synthesis of Ru-based bioconjugates with cyc(RGDfK) paves a promising way towards the design of effective targeted anticancer agents.

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