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褪黑素的热/结构性质和高压弛豫动力学的 H/D 交换影响。

The impact of H/D exchange on the thermal and structural properties as well as high-pressure relaxation dynamics of melatonin.

机构信息

Institute of Chemistry, Faculty of Science and Technology, University of Silesia in Katowice, 40-007, Katowice, Poland.

Department of Pharmacognosy and Phytochemistry, Faculty of Pharmaceutical Sciences in Sosnowiec, Medical University of Silesia in Katowice, 41-200, Sosnowiec, Poland.

出版信息

Sci Rep. 2022 Aug 22;12(1):14324. doi: 10.1038/s41598-022-18478-0.

Abstract

In this paper, thermal properties, atomic-scale structure, and molecular dynamics (at ambient and high pressure) of native melatonin (MLT) and its partially-deuterated derivative (MLT-d) have been investigated. Based on infrared spectroscopy, it was shown that treating MLT with DO causes the replacement of hydrogen atoms attached to the nitrogen by deuterium. The degree of such substitution was very high (> 99%) and the deuterated sample remained stable after exposure to the air as well as during the melting and vitrification processes. Further calorimetric studies revealed the appearance of a peculiar thermal event before the melting of crystalline MLT-d, which was assigned by the X-ray diffraction to a local negative thermal expansion of the unit cell. Finally, the high-pressure dielectric experiments indicated a few interesting findings, including the variation in the shape of the structural relaxation peak during compression, the difference in the pressure evolution of the glass transition temperature, and the temperature dependence of activation volume for both MLT species. The variations in these parameters manifest a different impact of the compression/densification on the dynamics of hydrogen and deuterium bonds in the native and partially-deuterated MLT, respectively.

摘要

本文研究了天然褪黑素 (MLT) 及其部分氘代衍生物 (MLT-d) 的热性质、原子尺度结构和分子动力学 (在环境和高压下)。基于红外光谱,我们发现用 DO 处理 MLT 会导致与氮相连的氢原子被氘取代。这种取代的程度非常高 (>99%),并且氘代样品在暴露于空气以及在熔融和玻璃化过程中仍然稳定。进一步的量热研究揭示了在结晶 MLT-d 熔融之前出现了一个特殊的热事件,该事件通过 X 射线衍射被分配给单元晶格的局部负热膨胀。最后,高压介电实验指出了一些有趣的发现,包括在压缩过程中结构弛豫峰的形状变化、玻璃化转变温度的压力演化差异以及两种 MLT 物种的激活体积的温度依赖性。这些参数的变化表明,压缩/致密化对天然和部分氘代 MLT 中氢和氘键动力学的影响不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4f1/9395371/4fe5ef785948/41598_2022_18478_Fig1_HTML.jpg

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