Does Conformation Affect the Analytical Response? A Structural and Infrared Spectral Evaluation of Phenethylamines (2C-H, 25H-NBOH, and 25I-NBOMe) Using In Silico Methodology

L. Mariotto, C. Rodrigues, A. Bruni
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Abstract

The identification of new psychoactive substances (compounds that mimic the effects of outlawed substances) poses a significant challenge due to their rapid emergence and continuous modifications. This phenomenon results in these molecules escaping legal regulation, allowing them to circumvent legislation. The phenethylamine class has garnered attention because its molecules replicate the effects of LSD and are associated with numerous cases of intoxication. In this study, we focused on three phenethylamines—2C-H, 25H-NBOH, and 25I-NBOMe—with crystallographic structures available in the Cambridge Crystallographic Data Center (CCDC) database. We conducted a systematic conformational analysis and compared the structural information obtained. Subsequently, we compared the spectra derived from this analysis with experimental details from the ENFSI database. Structural comparisons were made based on the RMSDs between the lower energy conformations and experimental crystallographic structures. Additionally, structures obtained from direct optimization were compared. We then simulated the spectra based on the X-ray structures and compared them with those in the experimental database. Interpretation was carried out using heat maps and PCA in Pirouette software. Combining in silico methods with experimental approaches provides a more comprehensive understanding of the characterization process of new psychoactive substances (NPSs).
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构象会影响分析反应吗?利用硅学方法对苯乙胺(2C-H、25H-NBOH 和 25I-NBOMe)进行结构和红外光谱评估
由于新精神活性物质(模仿违禁物质效果的化合物)的快速出现和不断变化,对其识别构成了巨大挑战。这种现象导致这些分子逃避法律监管,从而规避立法。苯乙胺类药物之所以备受关注,是因为其分子复制了迷幻剂的效果,并与大量中毒案例有关。在本研究中,我们重点研究了三种苯乙胺-2C-H、25H-NBOH 和 25I-NBOM--它们的晶体结构可从剑桥晶体学数据中心(CCDC)数据库中获得。我们对所获得的结构信息进行了系统的构象分析和比较。随后,我们将分析得出的光谱与 ENFSI 数据库中的实验细节进行了比较。结构比较是根据低能构象与实验晶体结构之间的 RMSD 进行的。此外,我们还对直接优化得到的结构进行了比较。然后,我们根据 X 射线结构模拟光谱,并与实验数据库中的光谱进行比较。我们使用 Pirouette 软件中的热图和 PCA 进行了解读。将硅学方法与实验方法相结合,可以更全面地了解新精神活性物质(NPSs)的表征过程。
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