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Guest-Host Chemistry with Dendrimers—Binding of Carboxylates in Aqueous Solution

机译:具树状聚合物的客体-主体化学—水溶液中羧酸盐的结合

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摘要

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.
机译:由于水分子形成强氢键和使阴离子溶剂化的能力,因此很难识别和结合水中的阴离子。使用NMR和ITC结合模型研究了两种不同的羧酸盐与1-(4-羰甲氧基吡咯烷酮)封端的PAMAM树状聚合物的络合物。选择2-萘甲酸钠和3-羟基-2-萘甲酸钠作为羧酸盐模型化合物,因为它们与许多非甾体类抗炎药具有结构相似性,并且仅具有有限的官能团,因此非常适合研究羧酸盐-树状聚合物的相互作用。发现3-羟基-2-萘甲酸的结合化学计量是每个树枝状大分子两个牢固结合的客体分子,以及另外40个具有弱结合亲和力的分子。 NOESY NMR显示3-羟基-2-萘甲酸钠与亲液性树状聚合物核心(可能与两个高亲和性客体分子)具有明显的结合相关性。相比之下,2-萘甲酸钠显示较弱的结合强度,每个树状聚合物的化学计量为2个客体,而没有其他弱结合的客体。与3-羟基-2-萘甲酸钠的更强的树枝状聚合物相互作用可能是树枝状聚合物与额外的羟基的额外相互作用以及由于羟基导致的负电荷内部稳定的结果。这些发现说明了G4 1-(4-甲氧基甲氧基)吡咯烷酮树枝状大分子在水中络合羧酸盐客体并充当此类分子的可能载体的潜力。

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