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Application of the functionalized congener approach to dendrimer-based signaling agents acting through A2A adenosine receptors
Authors:Yoonkyung Kim  Athena M. Klutz  Béatrice Hechler  Zhan-Guo Gao  Christian Gachet  Kenneth A. Jacobson
Affiliation:(1) Molecular Recognition Section, Laboratory of Bioorganic Chemistry, National Institute of Diabetes and Digestive & Kidney Diseases, National Institutes of Health, Bethesda, MD 20892, USA;(2) INSERM U.311, Strasbourg, France;(3) EFS-Alsace, Strasbourg, France;(4) Université Louis Pasteur, Strasbourg, France;(5) Present address: Biomedical Research Center, Korea Institute of Science and Technology, 39-1 Hawolgok-dong, Seongbuk-gu, Seoul, 136-791, Korea
Abstract:As a continued effort to develop multivalent ligands to enhance the pharmacological effects of monomeric drugs, DITC-APEC, a chemically reactive nucleoside A(2A) adenosine receptor (AR) agonist, was employed to derivatize the surface of third-generation (G3) polyamidoamine (PAMAM) dendrimers. The resulting conjugates carried multiple copies of the agonist attached through a thiourea linkage and differed in the number of attachments and in the presence of a fluorophore or additional surface modification. Computer modeling studies suggested that these DITC-APEC-loaded dendrimers extended the overall diameter of the previously reported PAMAM-CGS21680 dendrimer derivatives (Kim et al., Bioconjugate Chem 2008 19:406-411) by ca. 20 A, potentially increasing the conformational flexibility of the appended ligands to achieve optimal geometry for efficient binding at A(2A) ARs. Increased affinity and selectivity in binding in comparison to the CGS21680 conjugate were envisioned, due to the presence of an extended linker, i.e., a dithioureylenephenyl functionality. In vitro radioligand competition experiments showed effective binding of these PAMAM-DITC-APEC dendrimer conjugates at the human A(2A) and A(3) ARs with submicromolar K (i) values and selectivity in comparison to the human A(1) AR. Furthermore, these nucleoside-loaded dendrimers exhibited an A(2A) AR-mediated inhibitory effect on ADP-induced aggregation of human platelets. The present study demonstrates the potential of applying the functionalized congener concept to engineer dendrimer-based multivalent ligands for G protein-coupled receptors.
Keywords:A2A adenosine receptors  Dendrimers  Functionalized congeners  G protein-coupled receptors  Antithrombotic  Nanotechnology
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