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Inclusion of the Phytoalexin trans-Resveratrol in Native Cyclodextrins A Thermal, Spectroscopic, and X-Ray Structural Study

机译:天然环糊精中包含植物抗毒素新白藜芦醇的热学,光谱学和X射线结构研究

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The aim of the study was to determine the feasibility of complexation between the antioxidant trans-resveratrol (RSV) and underivatized cyclodextrins (CDs) using a variety of preparative methods, including physical mixing, kneading, microwave irradiation, co-evaporation, and co-precipitation techniques. Products were characterized using differential scanning calorimetry (DSC), simultaneous thermogravimetric/DSC analysis (TGA/DSC), Fourier transform infrared (FT-IR) spectroscopy, and powder X-ray diffraction (PXRD). With α-CD and RSV, sample amorphization was revealed by PXRD and FT-IR, but no definitive inclusion complexation was evident. Similar results were obtained in attempts to complex RSV with β-CD. However, complex formation between γ-CD and RSV was evident from observation of an endo-/exothermic effect appearing in the DSC trace of the product from kneading and was further corroborated by FT-IR and PXRD methods. The latter technique indicated complexation unequivocally as the diffraction peak profile for the product matched that for known isostructural γ-CD complexes. Single crystal X-ray analysis followed, confirming the predicted complex between γ-CD and RSV. A combination of 1H NMR and TGA data yielded the complex formula (γ-CD)3·(RSV)4·(H2O)62. However, severe disorder of the RSV molecules prevented their modeling. In contrast, our previous studies of the inclusion of RSV in methylated CDs yielded crystals with only minor guest disorder.
机译:该研究的目的是使用多种制备方法,包括物理混合,捏合,微波辐射,共蒸发和共蒸发,确定抗氧化剂反白藜芦醇(RSV)与未衍生化环糊精(CD)之间络合的可行性。沉淀技术。使用差示扫描量热法(DSC),同时热重/ DSC分析(TGA / DSC),傅里叶变换红外(FT-IR)光谱和粉末X射线衍射(PXRD)对产品进行表征。对于α-CD和RSV,通过PXRD和FT-IR揭示了样品的非晶化,但没有明显的夹杂物络合。尝试将RSV与β-CD络合获得相似的结果。然而,通过观察捏合产物的DSC痕迹中出现的内吸/放热效应,可以明显看出γ-CD和RSV之间形成了络合物,并且通过FT-IR和PXRD方法进一步证实了内/放热效应。后一种技术毫无疑问地表明了络合,因为产物的衍射峰轮廓与已知的同构γ-CD络合物的衍射峰轮廓相匹配。随后进行单晶X射线分析,确认了γ-CD和RSV之间的预测络合物。 1H NMR和TGA数据的结合得到了复式(γ-CD)3·(RSV)4·(H2O)62。但是,RSV分子的严重紊乱阻碍了它们的建模。相反,我们以前对甲基化CD中包含RSV的研究产生的晶体只有轻微的来宾障碍。

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