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Acyclovir as an Ionic Liquid Cation or Anion Can Improve Aqueous Solubility

机译:作为离子液体阳离子或阴离子的阿昔洛韦可以改善水溶液的溶解度

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Six ionic liquid (IL)-forming ions (choline, tetrabutylphosphonium, tetrabutylammonium, and trimethylhexadecylammonium cations, and chloride and docusate anions) were paired with acyclovir as the counterion to form four low melting solid salts and two waxes; five of these compounds could be classified as ILs. All of the newly synthesized acyclovir ILs exhibited increased aqueous solubilities by at least 2 orders of magnitude when compared to that of neutral acyclovir. For three of the prepared compounds, the solubilities in simulated body fluids (phosphate-buffered saline, simulated gastric, and simulated intestinal fluids) were also greatly enhanced when compared to that of neutral acyclovir. Acyclovir in its anionic form was more water- or buffer-soluble than acyclovir in its cationic form, though this might be the effect of the particular ions, indicating that the solubilities can be finely tuned by proper choice of the cationic or anionic form of acyclovir and the counterion paired with it.
机译:将六种形成离子液体(IL)的离子(胆碱,四丁基phosph,四丁基铵和三甲基十六烷基铵阳离子,以及氯离子和多库酯阴离子)与无环鸟苷配对作为抗衡离子,形成四种低熔点固体盐和两种蜡;这些化合物中有五个可以归类为IL。与中性无环鸟苷相比,所有新合成的无环鸟苷IL的水溶性都增加了至少2个数量级。对于三种制备的化合物,与中性无环鸟苷相比,在模拟体液(磷酸盐缓冲液,模拟胃液和模拟肠液)中的溶解度也大大提高。阿昔洛韦其阴离子形式是多种水或比其阳离子形式阿昔洛韦可溶于缓冲液,虽然这可能是特定离子的作用,表明所述溶解度可以通过阿昔洛韦的阳离子或阴离子形式的适当选择进行微调反离子与之配对。

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