Mayer Brian P, Kennedy Daniel J, Lau Edmond Y, Valdez Carlos A
Forensic Science Center, Lawrence Livermore National Laboratory , Livermore, California 94550, United States.
Biosciences and Biotechnology Division, Physical and Life Sciences Directorate, Lawrence Livermore National Laboratory , Livermore, California 94550, United States.
J Phys Chem B. 2016 Mar 10;120(9):2423-33. doi: 10.1021/acs.jpcb.5b12333. Epub 2016 Feb 18.
Cyclodextrins (CDs) are investigated for their ability to form inclusion complexes with the analgesic fentanyl and three similar molecules: acetylfentanyl, thiofentanyl, and acetylthiofentanyl. Stoichiometry, binding strength, and complex structure are revealed through nuclear magnetic resonance (NMR) techniques and discussed in terms of molecular dynamics (MD) simulations. It was found that β-cyclodextrin is generally capable of forming the strongest complexes with the fentanyl panel. Two-dimensional NMR data and computational chemical calculations are used to derive solution-state structures of the complexes. Binding of the fentanyls to the CDs occurs at the amide phenyl ring, leaving the majority of the molecule solvated by water, an observation common to all four fentanyls. This finding suggests a universal binding behavior, as the vast majority of previously synthesized fentanyl analogues contain this structural moiety. This baseline study serves as the most complete work on CD:fentanyl complexes to date and provides the insights into strategies for producing future generations of designer cyclodextrins capable of stronger and more selective complexation of fentanyl and its analogues.
研究了环糊精(CDs)与镇痛剂芬太尼以及三种类似分子:乙酰芬太尼、硫代芬太尼和乙酰硫代芬太尼形成包合物的能力。通过核磁共振(NMR)技术揭示了化学计量、结合强度和复合物结构,并根据分子动力学(MD)模拟进行了讨论。结果发现,β-环糊精通常能够与芬太尼类分子形成最强的复合物。利用二维NMR数据和计算化学计算得出复合物的溶液态结构。芬太尼类分子与环糊精的结合发生在酰胺苯环处,分子的大部分被水溶剂化,这是所有四种芬太尼类分子共有的观察结果。这一发现表明了一种普遍的结合行为,因为绝大多数先前合成的芬太尼类似物都含有这种结构部分。这项基础研究是迄今为止关于环糊精:芬太尼复合物最完整的工作,并为生产能够更强、更有选择性地络合芬太尼及其类似物的新一代设计环糊精的策略提供了见解。