INSA Rouen, CNRS, Groupe de Physique des Matériaux, and ‡Sciences et Méthodes Séparatives, Normandie Univ, UNIROUEN Normandie , 76000 Rouen, France.
J Phys Chem B. 2017 Aug 17;121(32):7729-7740. doi: 10.1021/acs.jpcb.7b05667. Epub 2017 Aug 4.
A dielectric relaxation spectroscopy (DRS) study was performed to investigate the molecular mobility of amorphous chiral diprophylline (DPL). For this purpose, both racemic DPL and a single enantiomer of DPL were considered. After fast cooling from the melt at very low temperature (-140 °C), progressive heating below and above the glass transition (T ≈ 37 °C) induces two secondary relaxations (γ- and δ-) and primary relaxations (α-) for both enantiomeric compositions. After chemical purification of our samples by means of cooling recrystallization, no γ-process could be detected by DRS. Hence, it was highlighted that the molecular mobility in the glassy state is influenced by the presence of theophylline (TPH), the main impurity in DPL samples. We also proved that the dynamic behavior of a single enantiomer and the racemic mixture of the same purified compound are quasi-identical. This study demonstrates that the relative stability and the molecular mobility of chiral amorphous drugs are strongly sensitive to chemical purity.
介电弛豫光谱(DRS)研究用于研究无定形手性二氢可待因酮(DPL)的分子迁移率。为此,研究了外消旋 DPL 和 DPL 的单一对映异构体。在非常低的温度(-140°C)下从熔体快速冷却后,在玻璃化转变(T≈37°C)以下和以上的逐步加热会导致两种次级弛豫(γ-和δ-)和主要弛豫(α-)对于两种对映异构体组成。通过冷却重结晶对我们的样品进行化学纯化后,DRS 无法检测到γ过程。因此,我们强调了玻璃态中分子迁移率受到茶碱(TPH)的影响,TPH 是 DPL 样品中的主要杂质。我们还证明了单一对映异构体和相同纯化化合物的外消旋混合物的动态行为几乎相同。这项研究表明,手性无定形药物的相对稳定性和分子迁移率对化学纯度非常敏感。