| Literature DB >> 23209527 |
Abstract
Various heptasubstituted derivatives of β-cyclodextrin (β-CD) bearing 1, 2 and 3 methyl substituents per glucose unit were synthesized by regioselective methods. Binding free energies and binding enthalpies of these hosts towards 4-tert-butylbenzoate and adamantane-1-carboxylate were determined by isothermal titration microcalorimetry (ITC). It was found that methyl substituents at the secondary positions of β-CD lead to a tremendous reduction of the binding potential, while methylation at the primary positions significantly improved binding. Stabilizing intramolecular hydrogen bonds between the glucose units were made responsible for the high binding potentials of those β-CD derivatives that possess secondary hydroxy groups.Entities:
Keywords: binding constant; cyclodextrin; hydrogen bond; methylation; regioselective
Year: 2012 PMID: 23209527 PMCID: PMC3511027 DOI: 10.3762/bjoc.8.218
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Structures of the methylated β-CD derivatives investigated.
Thermodynamics of the inclusion of 4-tert-butyl-benzoate in β-cyclodextrin 1 and its methyl derivatives 2–6.
| Host | No. | Δ | Δ | − | |
| unsubstituted β-CD | 16400 ± 4 | −24.34 | −19.00 ± 0.08 | −3.82 | |
| 2,6-di- | 17000 ± 485 | −24.13 | −19.98 ± 0.14 | −4.18 | |
| 2,3,6-tri- | 1190 ± 21 | −17.54 | −30.54 ± 0.37 | 12.98 | |
| 6- | 30700 ± 898 | −25.60 | −20.14 ± 0.12 | −5.49 | |
| 2- | 12300 ± 428 | −23.33 | −14.30 ± 0.11 | −9.05 | |
| 2,3-di- | 869 ± 28 | −16.77 | −19.24 ± 0.84 | +2.45 | |
| RAMEBa | 14700 ± 363 | −23.77 | −14.60 ± 0.09 | −9.20 | |
arandomly methylated β-CDs.
Thermodynamics of the inclusion of adamantane-1-carboxylate in β-cyclodextrin 1 and its methyl derivatives 2–6.
| Host | No. | Δ | Δ | ||
| unsubstituted β-CD | 38100 ± 1150 | −26.13 | −22.38 ± 0.09 | −3.78 | |
| 2,6-di- | 20400 ± 975 | −24.58 | −20.75 ± 0.22 | −3.87 | |
| 2,3,6-tri- | 606 ± 43 | −15.87 | −19.94 ± 0.82 | +4.04 | |
| 6- | 56400 ± 2400 | −27.10 | −19.11 ± 0.15 | −8.02 | |
| 2- | 18700 ± 275 | −24.37 | −20.85 ± 0.05 | −3.57 | |
| 2,3-di- | 586 ± 65 | −15.79 | −12.72 ± 0.70 | −3.09 | |
| RAMEBa | 15300 ± 341 | −23.87 | −15.48 ± 0.09 | −8.41 | |
arandomly methylated β-CDs.
Figure 2Temperature dependence of −TΔS°, ΔH° and ΔG° for the inclusion of 1-adamantane carboxylate in heptakis-2,3,6-tri-O-methyl-β-CD (3) measured by ITC.
Figure 3Structural drawing of β-CD [43], according to structural data (CSD-ID BUVSEQ03) from Zabel et al. [38], generated by VMD 1.8.4 showing the intramolecular hydrogen bonds between OH-3 and O-2.
List of the methylated β-CD derivatives used in this contribution.
| Host | No. | CAS Registry No. | Reference |
| unsubstituted β-CD | 7585-39-9 | ||
| 2,6-di- | 51166-71-3 | [ | |
| 2,3,5-tri- | 55216-11-0 | [ | |
| 6- | 84337-62-2 | [ | |
| 2- | 60786-23-4 | [ | |
| 2,3-di- | 123155-05-5 | [ | |
| RAMEBa | 343249-39-8 | [ | |
arandomly methylated β-CDs.