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Biogenic and Synthetic Polyamines Bind Cationic Dendrimers

Biogenic polyamines are essential for cell growth and differentiation, while polyamine analogues exert antitumor activity in multiple experimental model systems, including breast and lung cancer. Dendrimers are widely used for drug delivery in vitro and in vivo. We report the bindings of biogenic po...

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Autores principales: Mandeville, Jean-Sebastian, Bourassa, Phillipe, Thomas, Thekkumkattil John, Tajmir-Riahi, Heidar-Ali
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3338638/
https://www.ncbi.nlm.nih.gov/pubmed/22558341
http://dx.doi.org/10.1371/journal.pone.0036087
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author Mandeville, Jean-Sebastian
Bourassa, Phillipe
Thomas, Thekkumkattil John
Tajmir-Riahi, Heidar-Ali
author_facet Mandeville, Jean-Sebastian
Bourassa, Phillipe
Thomas, Thekkumkattil John
Tajmir-Riahi, Heidar-Ali
author_sort Mandeville, Jean-Sebastian
collection PubMed
description Biogenic polyamines are essential for cell growth and differentiation, while polyamine analogues exert antitumor activity in multiple experimental model systems, including breast and lung cancer. Dendrimers are widely used for drug delivery in vitro and in vivo. We report the bindings of biogenic polyamines, spermine (spm), and spermidine (spmd), and their synthetic analogues, 3,7,11,15-tetrazaheptadecane.4HCl (BE-333) and 3,7,11,15,19-pentazahenicosane.5HCl (BE-3333) to dendrimers of different compositions, mPEG-PAMAM (G3), mPEG-PAMAM (G4) and PAMAM (G4). FTIR and UV-visible spectroscopic methods as well as molecular modeling were used to analyze polyamine binding mode, the binding constant and the effects of polyamine complexation on dendrimer stability and conformation. Structural analysis showed that polyamines bound dendrimers through both hydrophobic and hydrophilic contacts with overall binding constants of K (spm-mPEG-G3) = 7.6×10(4) M(−1), K (spm-mPEG-PAMAM-G4) = 4.6×10(4) M(−1), K(spm-PAMAM-G4) = 6.6×10(4) M(−1), K (spmd-mPEG-G3) = 1.0×10(5) M(−1), K (spmd-mPEG-PAMAM-G4) = 5.5×10(4) M(−1), K(spmd-PAMAM-G4) = 9.2×10(4) M(−1), K (BE-333-mPEG-G3) = 4.2×10(4) M(−1), K (Be-333-mPEG-PAMAM-G4) = 3.2×10(4) M(−1), K(BE-333-PAMAM-G4) = 3.6×10(4) M(−1), K (BE-3333-mPEG-G3) = 2.2×10(4) M(−1), K (Be-3333-mPEG-PAMAM-G4) = 2.4×10(4) M(−1), K(BE-3333-PAMAM-G4) = 2.3×10(4) M(−1). Biogenic polyamines showed stronger affinity toward dendrimers than those of synthetic polyamines, while weaker interaction was observed as polyamine cationic charges increased. The free binding energies calculated from docking studies were: −3.2 (spermine), −3.5 (spermidine) and −3.03 (BE-3333) kcal/mol, with the following order of binding affinity: spermidine-PAMAM-G-4>spermine-PAMMAM-G4>BE-3333-PAMAM-G4 consistent with spectroscopic data. Our results suggest that dendrimers can act as carrier vehicles for delivering antitumor polyamine analogues to target tissues.
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spelling pubmed-33386382012-05-03 Biogenic and Synthetic Polyamines Bind Cationic Dendrimers Mandeville, Jean-Sebastian Bourassa, Phillipe Thomas, Thekkumkattil John Tajmir-Riahi, Heidar-Ali PLoS One Research Article Biogenic polyamines are essential for cell growth and differentiation, while polyamine analogues exert antitumor activity in multiple experimental model systems, including breast and lung cancer. Dendrimers are widely used for drug delivery in vitro and in vivo. We report the bindings of biogenic polyamines, spermine (spm), and spermidine (spmd), and their synthetic analogues, 3,7,11,15-tetrazaheptadecane.4HCl (BE-333) and 3,7,11,15,19-pentazahenicosane.5HCl (BE-3333) to dendrimers of different compositions, mPEG-PAMAM (G3), mPEG-PAMAM (G4) and PAMAM (G4). FTIR and UV-visible spectroscopic methods as well as molecular modeling were used to analyze polyamine binding mode, the binding constant and the effects of polyamine complexation on dendrimer stability and conformation. Structural analysis showed that polyamines bound dendrimers through both hydrophobic and hydrophilic contacts with overall binding constants of K (spm-mPEG-G3) = 7.6×10(4) M(−1), K (spm-mPEG-PAMAM-G4) = 4.6×10(4) M(−1), K(spm-PAMAM-G4) = 6.6×10(4) M(−1), K (spmd-mPEG-G3) = 1.0×10(5) M(−1), K (spmd-mPEG-PAMAM-G4) = 5.5×10(4) M(−1), K(spmd-PAMAM-G4) = 9.2×10(4) M(−1), K (BE-333-mPEG-G3) = 4.2×10(4) M(−1), K (Be-333-mPEG-PAMAM-G4) = 3.2×10(4) M(−1), K(BE-333-PAMAM-G4) = 3.6×10(4) M(−1), K (BE-3333-mPEG-G3) = 2.2×10(4) M(−1), K (Be-3333-mPEG-PAMAM-G4) = 2.4×10(4) M(−1), K(BE-3333-PAMAM-G4) = 2.3×10(4) M(−1). Biogenic polyamines showed stronger affinity toward dendrimers than those of synthetic polyamines, while weaker interaction was observed as polyamine cationic charges increased. The free binding energies calculated from docking studies were: −3.2 (spermine), −3.5 (spermidine) and −3.03 (BE-3333) kcal/mol, with the following order of binding affinity: spermidine-PAMAM-G-4>spermine-PAMMAM-G4>BE-3333-PAMAM-G4 consistent with spectroscopic data. Our results suggest that dendrimers can act as carrier vehicles for delivering antitumor polyamine analogues to target tissues. Public Library of Science 2012-04-27 /pmc/articles/PMC3338638/ /pubmed/22558341 http://dx.doi.org/10.1371/journal.pone.0036087 Text en Mandeville et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Mandeville, Jean-Sebastian
Bourassa, Phillipe
Thomas, Thekkumkattil John
Tajmir-Riahi, Heidar-Ali
Biogenic and Synthetic Polyamines Bind Cationic Dendrimers
title Biogenic and Synthetic Polyamines Bind Cationic Dendrimers
title_full Biogenic and Synthetic Polyamines Bind Cationic Dendrimers
title_fullStr Biogenic and Synthetic Polyamines Bind Cationic Dendrimers
title_full_unstemmed Biogenic and Synthetic Polyamines Bind Cationic Dendrimers
title_short Biogenic and Synthetic Polyamines Bind Cationic Dendrimers
title_sort biogenic and synthetic polyamines bind cationic dendrimers
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3338638/
https://www.ncbi.nlm.nih.gov/pubmed/22558341
http://dx.doi.org/10.1371/journal.pone.0036087
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