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1.
Beilstein J Org Chem ; 14: 1758-1768, 2018.
Article in English | MEDLINE | ID: mdl-30112081

ABSTRACT

Photoactive ruthenium-based complexes are actively studied for their biological applications as potential theragnostic agents against cancer. One major issue of these inorganic complexes is to penetrate inside cells in order to fulfil their function, either sensing the internal cell environment or exert a photocytotoxic activity. The use of lipophilic ligands allows the corresponding ruthenium complexes to passively diffuse inside cells but limits their structural and photophysical properties. Moreover, this strategy does not provide any cell selectivity. This limitation is also faced by complexes anchored on cell-penetrating peptides. In order to provide a selective cell targeting, we developed a multivalent system composed of a photoreactive ruthenium(II) complex tethered to a calix[4]arene platform bearing multiple RGD-containing cyclopentapeptides. Extensive photophysical and photochemical characterizations of this Ru(II)-calixarene conjugate as well as the study of its photoreactivity in the presence of guanosine monophosphate have been achieved. The results show that the ruthenium complex should be able to perform efficiently its photoinduced cytotoxic activity, once incorporated into targeted cancer cells thanks to the multivalent platform.

2.
Bioconjug Chem ; 28(9): 2241-2245, 2017 09 20.
Article in English | MEDLINE | ID: mdl-28767233

ABSTRACT

A new class of "polymultivalent" ligands combining several ligand clusters and a water-soluble biocompatible polymer is introduced. These original conjugates bear two levels of multivalency. They are prepared by covalent coupling of a controlled number of tetrameric cRGD peptide clusters along a well-defined copolymer synthesized by RAFT polymerization. The presence of multiple copies of peptide clusters on the same polymer backbone resulted in a much-higher relative potency than the free cluster reference. Thanks to the "polymultivalency", up to ∼2 orders of magnitude potency enhancement was reached in a competitive cell adhesion assay (nanomolar-range IC50 values). In addition, confocal microscopy and flow cytometry demonstrated that fluorescent "polymultivalent" conjugates (emitting in the far-red/near-infrared region) were able to specifically and selectively label cells expressing αvß3-integrin, the natural receptor of cRGD.


Subject(s)
Integrin alphaVbeta3/metabolism , Peptides, Cyclic/metabolism , Peptides/metabolism , Polymers/metabolism , Cell Adhesion , Cell Line, Tumor , Drug Delivery Systems , Humans , Integrin alphaVbeta3/analysis , Ligands , Microscopy, Confocal , Peptides/chemical synthesis , Peptides/chemistry , Peptides, Cyclic/chemical synthesis , Peptides, Cyclic/chemistry , Polymers/chemical synthesis , Polymers/chemistry
3.
Chembiochem ; 17(6): 515-20, 2016 Mar 15.
Article in English | MEDLINE | ID: mdl-26748810

ABSTRACT

Multimeric RGD-containing compounds were designed to study the influence of ligand architecture on binding avidity. We report the synthesis of a series of tetrameric RGD compounds and their in vitro biological evaluation. The further application of molecular dynamic simulations for structural studies of RGD derivatives reveals that the observed affinities correlate with the accessibility of segregated RGD motif.


Subject(s)
Cell Adhesion , Oligopeptides/chemistry , Ligands , Molecular Dynamics Simulation
4.
Chemistry ; 21(16): 6022-6, 2015 Apr 13.
Article in English | MEDLINE | ID: mdl-25801963

ABSTRACT

The access to multifunctional biomolecular compounds involves multistep reactions usually with a complicated protection scheme and lengthy separation processes. The development of a strategy combining several orthogonal ligations is highly desirable. Herein, we introduce a new method that involves two orthogonal copper-mediated ligations of azide with alkyne, and amine with thioacid. We established compatible conditions to carry out molecular assemblies of three different chemical components in a single one-pot reaction. The effectiveness of the method was demonstrated in the synthesis of biomolecular compounds that are known to target tumor tissue. The simple reaction conditions suggest that this strategy of combining several orthogonal ligations could have wide potential for the chemical synthesis of complex macromolecules.


Subject(s)
Alkynes/chemistry , Azides/chemistry , Click Chemistry , Copper/chemistry , Alkynes/chemical synthesis , Amines/chemical synthesis , Amines/chemistry , Azides/chemical synthesis , Catalysis , Cyclization , Sulfhydryl Compounds/chemical synthesis , Sulfhydryl Compounds/chemistry
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