| Literature DB >> 28503206 |
Franca Castiglione1, Fabio Ganazzoli1, Luciana Malpezzi1, Andrea Mele1,2, Walter Panzeri2, Giuseppina Raffaini1.
Abstract
Tricyclic fused-ring cyclobenzaprine (1) and amitriptyline (2) form 1:1 inclusion complexes with β-cyclodextrin (β-CD) in the solid state and in water solution. Rotating frame NOE experiments (ROESY) showed the same geometry of inclusion for both 1/β-CD and 2/β-CD complexes, with the aromatic ring system entering the cavity from the large rim of the cyclodextrin and the alkylammonium chain protruding out of the cavity and facing the secondary OH rim. These features matched those found in the molecular dynamics (MD) simulations in solution and in the solid state from single-crystal X-ray diffraction of 1/β-CD and 2/β-CD complexes. The latter complex was found in a single conformation in the solid state, whilst the MD simulations in explicit water reproduced the conformational transitions observed experimentally for the free molecule.Entities:
Keywords: NOE; amitriptyline; crystal structure; cyclobenzaprine; molecular dynamics simulations; β-cyclodextrin
Year: 2017 PMID: 28503206 PMCID: PMC5405689 DOI: 10.3762/bjoc.13.70
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Molecular formulae and atom numbering of cyclobenzaprine (1, left) and amitriptyline (2, right). E and Z symbols are arbitrarily introduced to identify the two aromatic rings.
Figure 2Left: Job’s plot for H3’ chemical shift variations of the complex β-CD/1. Right: Job’s plot for H11 (see Figure 1 for atom numbering) chemical shift variations of the complex β-CD/2.
Figure 3Expansion of 2D-ROESY of 1/β-CD (left) and 2/β-CD (right) complexes. Atom numbering is referred to Figure 1. Primed numbers are used for glucose units.
Figure 4X-ray diffraction structures of 1/β-CD (top) and 2/β-CD (bottom) complexes.
Figure 5The distance between the center of mass (c.o.m.) of molecule 1 (at left) and of molecule 2 (at right) from the c.o.m. of the β-CD.
Figure 6The value of the C9–C10 dihedral angle as a function of time for the complexes of molecule 1 and 2 (left and right, respectively).
Figure 7Snapshots of the conformational transition in 2/β-CD in water taken at a 1 ps interval.