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Hydrotrope accumulation around the drug: the driving force for solubilization and minimum hydrotrope concentration for nicotinamide and urea

机译:药物周围的水溶助长剂积累:增溶的驱动力和烟酰胺和尿素的最低水溶助长剂浓度

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摘要

Nicotinamide is an effective non-micellar hydrotrope (solubilizer) for drugs with low aqueous solubility. To clarify the molecular basis of nicotinamide's hydrotropic effectiveness, we present here a rigorous statistical thermodynamic theory, based on the Kirkwood-Buff theory of solutions, and our recent application of it to hydrotropy. We have shown that (i) nicotinamide self-association reduces solubilization efficiency, contrary to the previous hypothesis which claimed that self-association drives solubilization and (ii) the minimum hydrotrope concentration (MHC), namely, the threshold concentration above which solubility suddenly increases, is caused not by the bulk-phase self-association of nicotinamides as has been postulated previously, but by the enhancement of nicotinamide-nicotinamide interaction around the drug molecules. We have thus established a new view of hydrotropy - it is nicotinamide's non-stoichiometric accumulation around the drug that is the basis of solubility increase above MHC.
机译:烟酰胺是用于水溶性低的药物的有效非胶束状水溶助长剂(增溶剂)。为了阐明烟酰胺水溶助剂的分子基础,在此我们基于柯克伍德-巴夫溶液的理论提出了严格的统计热力学理论,并将其应用于水溶。我们已经表明,(i)烟酰胺的自缔合降低了增溶效率,这与先前的假设相反,该假设声称自缔合会促进增溶,并且(ii)最小水溶助长剂浓度(MHC),即高于此阈值浓度时,溶解度突然增加,不是由先前假设的烟酰胺的本体相自缔合引起的,而是由药物分子周围烟酰胺-烟酰胺相互作用的增强引起的。因此,我们建立了新的亲水性观点-烟酰胺在药物周围的非化学计量积累是溶解度提高到MHC以上的基础。

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