Guest-host chemistry with dendrimers—binding of carboxylates in aqueous solution

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Standard

Guest-host chemistry with dendrimers—binding of carboxylates in aqueous solution. / Ficker, Mario; Petersen, Johannes Fabritius; Hansen, Jon Stefan; Christensen, Jørn Bolstad.

I: PloS one, Bind 10, Nr. 10, e0138706, 2015.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Ficker, M, Petersen, JF, Hansen, JS & Christensen, JB 2015, 'Guest-host chemistry with dendrimers—binding of carboxylates in aqueous solution', PloS one, bind 10, nr. 10, e0138706. https://doi.org/10.1371/journal.pone.0138706

APA

Ficker, M., Petersen, J. F., Hansen, J. S., & Christensen, J. B. (2015). Guest-host chemistry with dendrimers—binding of carboxylates in aqueous solution. PloS one, 10(10), [e0138706]. https://doi.org/10.1371/journal.pone.0138706

Vancouver

Ficker M, Petersen JF, Hansen JS, Christensen JB. Guest-host chemistry with dendrimers—binding of carboxylates in aqueous solution. PloS one. 2015;10(10). e0138706. https://doi.org/10.1371/journal.pone.0138706

Author

Ficker, Mario ; Petersen, Johannes Fabritius ; Hansen, Jon Stefan ; Christensen, Jørn Bolstad. / Guest-host chemistry with dendrimers—binding of carboxylates in aqueous solution. I: PloS one. 2015 ; Bind 10, Nr. 10.

Bibtex

@article{841e9d51906c4a4fa74058413c6d734f,
title = "Guest-host chemistry with dendrimers—binding of carboxylates in aqueous solution",
abstract = "Recognition and binding of anions in water is difficult due to the ability of water molecules to form strong hydrogen bonds and to solvate the anions. The complexation of two different carboxylates with 1-(4-carbomethoxypyrrolidone)-terminated PAMAM dendrimers was studied in aqueous solution using NMR and ITC binding models. Sodium 2-naphthoate and sodium 3-hydroxy-2-naphthoate were chosen as carboxylate model compounds, since they carry structural similarities to many non-steroidal anti-inflammatory drugs and they possess only a limited number of functional groups, making them ideal to study the carboxylate-dendrimer interaction selectively. The binding stoichiometry for 3-hydroxy-2-naphthoate was found to be two strongly bound guest molecules per dendrimer and an additional 40 molecules with weak binding affinity. The NOESY NMR showed a clear binding correlation of sodium 3-hydroxy-2-naphthoate with the lyophilic dendrimer core, possibly with the two high affinity guest molecules. In comparison, sodium 2-naphthoate showed a weaker binding strength and had a stoichiometry of two guests per dendrimer with no additional weakly bound guests. This stronger dendrimer interaction with sodium 3-hydroxy-2-naphthoate is possibly a result of the additional interactions of the dendrimer with the extra hydroxyl group and an internal stabilization of the negative charge due to the hydroxyl group. These findings illustrate the potential of the G4 1-(4-carbomethoxy) pyrrolidone dendrimer to complex carboxylate guests in water and act as a possible carrier of such molecules.",
author = "Mario Ficker and Petersen, {Johannes Fabritius} and Hansen, {Jon Stefan} and Christensen, {J{\o}rn Bolstad}",
year = "2015",
doi = "10.1371/journal.pone.0138706",
language = "English",
volume = "10",
journal = "PLoS ONE",
issn = "1932-6203",
publisher = "Public Library of Science",
number = "10",

}

RIS

TY - JOUR

T1 - Guest-host chemistry with dendrimers—binding of carboxylates in aqueous solution

AU - Ficker, Mario

AU - Petersen, Johannes Fabritius

AU - Hansen, Jon Stefan

AU - Christensen, Jørn Bolstad

PY - 2015

Y1 - 2015

N2 - Recognition and binding of anions in water is difficult due to the ability of water molecules to form strong hydrogen bonds and to solvate the anions. The complexation of two different carboxylates with 1-(4-carbomethoxypyrrolidone)-terminated PAMAM dendrimers was studied in aqueous solution using NMR and ITC binding models. Sodium 2-naphthoate and sodium 3-hydroxy-2-naphthoate were chosen as carboxylate model compounds, since they carry structural similarities to many non-steroidal anti-inflammatory drugs and they possess only a limited number of functional groups, making them ideal to study the carboxylate-dendrimer interaction selectively. The binding stoichiometry for 3-hydroxy-2-naphthoate was found to be two strongly bound guest molecules per dendrimer and an additional 40 molecules with weak binding affinity. The NOESY NMR showed a clear binding correlation of sodium 3-hydroxy-2-naphthoate with the lyophilic dendrimer core, possibly with the two high affinity guest molecules. In comparison, sodium 2-naphthoate showed a weaker binding strength and had a stoichiometry of two guests per dendrimer with no additional weakly bound guests. This stronger dendrimer interaction with sodium 3-hydroxy-2-naphthoate is possibly a result of the additional interactions of the dendrimer with the extra hydroxyl group and an internal stabilization of the negative charge due to the hydroxyl group. These findings illustrate the potential of the G4 1-(4-carbomethoxy) pyrrolidone dendrimer to complex carboxylate guests in water and act as a possible carrier of such molecules.

AB - Recognition and binding of anions in water is difficult due to the ability of water molecules to form strong hydrogen bonds and to solvate the anions. The complexation of two different carboxylates with 1-(4-carbomethoxypyrrolidone)-terminated PAMAM dendrimers was studied in aqueous solution using NMR and ITC binding models. Sodium 2-naphthoate and sodium 3-hydroxy-2-naphthoate were chosen as carboxylate model compounds, since they carry structural similarities to many non-steroidal anti-inflammatory drugs and they possess only a limited number of functional groups, making them ideal to study the carboxylate-dendrimer interaction selectively. The binding stoichiometry for 3-hydroxy-2-naphthoate was found to be two strongly bound guest molecules per dendrimer and an additional 40 molecules with weak binding affinity. The NOESY NMR showed a clear binding correlation of sodium 3-hydroxy-2-naphthoate with the lyophilic dendrimer core, possibly with the two high affinity guest molecules. In comparison, sodium 2-naphthoate showed a weaker binding strength and had a stoichiometry of two guests per dendrimer with no additional weakly bound guests. This stronger dendrimer interaction with sodium 3-hydroxy-2-naphthoate is possibly a result of the additional interactions of the dendrimer with the extra hydroxyl group and an internal stabilization of the negative charge due to the hydroxyl group. These findings illustrate the potential of the G4 1-(4-carbomethoxy) pyrrolidone dendrimer to complex carboxylate guests in water and act as a possible carrier of such molecules.

U2 - 10.1371/journal.pone.0138706

DO - 10.1371/journal.pone.0138706

M3 - Journal article

C2 - 26448138

VL - 10

JO - PLoS ONE

JF - PLoS ONE

SN - 1932-6203

IS - 10

M1 - e0138706

ER -

ID: 146203106