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β-环糊精在深共晶溶剂瑞利中的溶剂化结构特征。

Structural Features of β-Cyclodextrin Solvation in the Deep Eutectic Solvent, Reline.

机构信息

Laboratorio Liquidi Ionici, Istituto Struttura della Materia, Consiglio Nazionale delle Ricerche (ISM-CNR), 00133 Rome, Italy.

Dipartimento di Fisica e Chimica 'Emilio Segrè', Università degli studi di Palermo, 90128 Palermo, Italy.

出版信息

J Phys Chem B. 2020 Apr 2;124(13):2652-2660. doi: 10.1021/acs.jpcb.0c00876. Epub 2020 Mar 5.

Abstract

The inherently amphiphilic nature of native cyclodextrins (CDs) determines their peculiar molecular encapsulation features, enabling applications such as targeted drug nanodelivery, aroma protection, etc. On the contrary, it may also lead to poor solubility in water and other organic solvents and to potentially detrimental flocking in these media, thus posing limitations to more extensive usage. Here we use small angle X-ray scattering to show that deep eutectic solvent reline (1:2 choline chloride:urea) succeeds in dissolving large amounts of β-CD (at least 800 mg/mL, compared with the solubility in water of 18 mg/mL), without aggregation phenomena occurring. At the microscopic level, molecular dynamics simulations highlight the complex interplay of hydrogen bonding-mediated hydrophilic interactions and hydrophobic force mitigation occurring between β-CD and reline components, leading to energetically favorable β-CD solvation. The possibility of achieving very high concentration conditions for unaggregated β-CD in an environmentally responsible media, such as reline, can open the way to new, so far unpredictable applications, addressing multiple societal challenges.

摘要

天然环糊精(CDs)具有内在的两亲性,决定了其独特的分子包封特性,使其能够应用于靶向药物纳米递送、香气保护等领域。然而,这也可能导致其在水中和其他有机溶剂中的溶解度较差,并在这些介质中潜在地产生有害的聚集,从而限制了其更广泛的应用。在这里,我们使用小角 X 射线散射表明,深共晶溶剂再循环(1:2 氯化胆碱:尿素)成功地溶解了大量的β-CD(至少 800mg/mL,而在水中的溶解度为 18mg/mL),而不会发生聚集现象。在微观水平上,分子动力学模拟突出了氢键介导的亲水性相互作用和β-CD 与再循环成分之间的疏水力缓解之间的复杂相互作用,导致β-CD 溶剂化的能量有利。在环境友好的介质(如再循环)中实现未聚集的β-CD 的非常高浓度条件的可能性,可以为新的、迄今为止不可预测的应用开辟道路,解决多个社会挑战。

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