The complexation behavior of two bile salts sodium cholate (NaC) and sodium deoxycholate (NaDC) with β-cyclodextrin (β-CD), 6-deoxy-6-amino-β-cyclodextrin (β-CDNH 2 ), and dimer I ( N, N ‘-bis(6-deoxy-β-cyclodextrin)pyromellic acid diamide) was studied by NMR techniques. Complexes formed between β-CD and β-CDNH 2 with NaC and NaDC have 1:1 and 2:1 (host:guest) stoichiometries, respectively. Complexes with β-CDNH 2 show higher equilibrium constants than those with β-CD because of the electrostatic effect of the protonated amine group. Dimer I showed 1:2 and n: n stoichiometries with NaC and NaDC, respectively. ROESY spectra stated that bile salts enter first with their 5-C ring forward the inner cavity by the side of the secondary hydroxyl groups of cyclodextrins. In the complexes formed with β-CDNH 2, the steroid body of the bile salt enters deeper in the cavity, while the carboxylated side chain is extended toward the protonated amine group at C-6, allowing an electrostatic interaction between both groups. In the case of the 2:1 stoichiometry, the second cyclodextrin complexes ring A of the steroid body.
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Meijide et al. (1999) studied this question.
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