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Synthesis of sulphanylaminoderivatives of cyclodextrines and computational simulations of their complexes formation
Provazníková, Adéla ; Jindřich, Jindřich (advisor) ; Míšek, Jiří (referee)
This master thesis deals with synthesis of 6I -N-monosubstituted β-CD bearing a linear spacer of various lenghts containing disulfidic bond and terminated by amine. Whole series was succesfully prepared by nucleophilic substitution of toluenesulfonyl group on tosyl β-CD by a spacer's amine group. In case of the shortest spacer (cystamine) 35 % yield was achieved. Synthesis of β-CD derivatives using longer and more lipophilic spacer derived from di-, tri- and tetraethylenglycol yielded 66 to 85 %. The oligoethylene spacers were prepared by standard chemical modifications. A separation method using n-butanol elution mixtures was optimized for isolation of β-CD derivatives. To better understand the β-CD derivative behavior in solution, molecular dynamics (MD) computations were used. The synthetized species were intended to be used for fluorescent sensor construction. For the same reason the inclusion of small organic molecules in β-CD cavity was studied with molecular dynamic simulations. MD method for computation of relative binding energy was optimized and gave values of right sign and order of magnitude.
Synthesis of sulphanylaminoderivatives of cyclodextrines and computational simulations of their complexes formation
Provazníková, Adéla ; Jindřich, Jindřich (advisor) ; Míšek, Jiří (referee)
This master thesis deals with synthesis of 6I -N-monosubstituted β-CD bearing a linear spacer of various lenghts containing disulfidic bond and terminated by amine. Whole series was succesfully prepared by nucleophilic substitution of toluenesulfonyl group on tosyl β-CD by a spacer's amine group. In case of the shortest spacer (cystamine) 35 % yield was achieved. Synthesis of β-CD derivatives using longer and more lipophilic spacer derived from di-, tri- and tetraethylenglycol yielded 66 to 85 %. The oligoethylene spacers were prepared by standard chemical modifications. A separation method using n-butanol elution mixtures was optimized for isolation of β-CD derivatives. To better understand the β-CD derivative behavior in solution, molecular dynamics (MD) computations were used. The synthetized species were intended to be used for fluorescent sensor construction. For the same reason the inclusion of small organic molecules in β-CD cavity was studied with molecular dynamic simulations. MD method for computation of relative binding energy was optimized and gave values of right sign and order of magnitude.

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