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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Intercalation of L-Dopa into Layered Double Hydroxides:Enhancement of Both Chemical and Stereochemical Stabilities of a Drug through Host-Guest Interactions
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Intercalation of L-Dopa into Layered Double Hydroxides:Enhancement of Both Chemical and Stereochemical Stabilities of a Drug through Host-Guest Interactions

机译:左旋多巴插入层状双氢氧化物:通过主客体相互作用增强药物的化学和立体化学稳定性

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This paper describes a systematic study on the intercalation of an unstable chiral drug L-dopa into layered double hydroxides(LDHs) and the enhancement of its chemical and stereochemical stabilities through host-guest interactions,by virtue of combining experimental and theoretical investigations.L-Dopa has been intercalated into a magnesium-aluminum LDH,and the structural characterization reveals that L-dopa anions are accommodated vertically in the interlayer region as a monolayer of partially superimposed species.Thermogravimetry-mass spectroscopy and polarimetry indicate that both the chemical and stereochemical stabilities of L-dopa are enhanced significantly in a confined region between LDH sheets compared with pristine L-dopa.The racemization phenomenon of pristine L-dopa has been rationalized by quantum mechanical calculations at the B 3PW91/6-31G(d,p) level.The computed results suggest that in the solid state L-dopa undergoes racemization via an enol intermediate formed by hydrogen transfer from the chiral carbon atom to the carboxylate group.After intercalation in the interlayer galleries of the LDH,the carboxylate group of the L-dopa becomes involved in strong host-guest interactions with the layers,with the computed binding energy of L-dopa to the LDH layers being ca.-1100 kJ/mol.The host-guest interactions,including electrostatic and hydrogen bonding between L-dopa and LDH host,thus inhibit the racemization reaction of the guest because the carboxylate group is no longer able to act as a hydrogen acceptor.Therefore,the results of theoretical study are in good agreement with those of the experimental ones.The results show that these layered materials have potential applications as the basis of a novel storage and delivery system for L-dopa or other unstable chiral pharmaceutical agents.
机译:本文通过实验和理论研究相结合,系统地研究了不稳定的手性药物左旋多巴插入层状双氢氧化物(LDHs)中以及通过客体-客体相互作用增强其化学和立体化学稳定性的系统研究。多巴已插入到镁铝LDH中,并且结构表征表明L-多巴阴离子在层间区域中垂直容纳为部分重叠物种的单层。热重-质谱和极化表明化学和立体化学稳定性与原始L-多巴相比,LDH片之间的狭窄区域中L-多巴的显着增强。通过B 3PW91 / 6-31G(d,p)水平的量子力学计算已将原始L-多巴的外消旋现象合理化计算结果表明,在固态下,左旋多巴通过水合形成的烯醇中间体经历消旋作用氢从手性碳原子转移到羧酸根基团。在LDH的层间画廊中插入后,L-多巴的羧酸根基团参与了与各层的强烈的客体相互作用,并计算出L-的结合能。到LDH层的多巴约为-1100 kJ / mol.L-多巴与LDH主体之间的主体-客体相互作用,包括静电键和氢键,因此抑制了客体的消旋反应,因为羧酸酯基不再能够因此,理论研究的结果与实验结果吻合良好。结果表明,这些层状材料具有潜在的应用前景,可作为新型左旋多巴或其他药物的储存和输送系统的基础。不稳定的手性药剂。

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