Literature DB >> 12175256

Static and dynamic behavior of 2:1 inclusion complexes of cyclodextrins and charged porphyrins in aqueous organic media.

Koji Kano1, Ryuhei Nishiyabu, Takuji Asada, Yasuhisa Kuroda.   

Abstract

Two heptakis(2,3,6-tri-O-methyl)-beta-cyclodextrin (TMe-beta-CD) molecules strongly include the peripheral substituents at the 5- and 15-positions of the charged meso-tetrasubstituted porphyrins, PorSub(4) [TPPS(4) (Sub = p-C(6)H(4)-SO(3)(-)), TPPOC3PS (p-C(6)H(4)-O-(CH(2))(3)-p-C(6)H(4)-SO(3)(-)), TCPP (Sub = p-C(6)H(4)-CO(2)(-)), and TPPOC3Py (p-C(6)H(4)-O-(CH(2))(3)-Py(+)Br(-)), where Py(+) = N-alkylpyridinium] in aqueous ethylene glycol. The binding constants (K(1) and K(2)) and the rate constants (k(1) and k(2)) for formation of the 1:1 and 2:1 complexes of TMe-beta-CD and PorSub(4) were determined. Both the binding constants and the rate constants for anionic TPPS(4), TCPP, and TPPOC3PS were much larger than those for cationic TPPOC3Py. The smaller k(1) and k(2) values for TPPOC3Py indicate a higher barrier for penetration of a cationic guest into the TMe-beta-CD cavity. The methyl groups at the rims and the cavity wall of the host are positively polarized due to the inductive effect of the ethereal oxygens. The positively polarized rims and interior of the host cavity should prevent the penetration of the cationic substituent of TPPOC3Py into the TMe-beta-CD cavity. The 2:1 TMe-beta-CD-PorSub(4) complexes are extraordinary stable in aqueous solutions, even in the case of cationic TPPOC3Py. Formation of both 1:1 and 2:1 complexes is promoted by negative and large enthalpy changes, suggesting a strong van der Waals interaction as the main binding force.

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Year:  2002        PMID: 12175256     DOI: 10.1021/ja020253n

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  8 in total

1.  Photodynamic Activities of Porphyrin Derivative-Cyclodextrin Complexes by Photoirradiation.

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Journal:  ACS Med Chem Lett       Date:  2017-04-19       Impact factor: 4.345

2.  Porphyrinoid rotaxanes: building a mechanical picket fence.

Authors:  T H Ngo; J Labuta; G N Lim; W A Webre; F D'Souza; P A Karr; J E M Lewis; J P Hill; K Ariga; S M Goldup
Journal:  Chem Sci       Date:  2017-08-04       Impact factor: 9.825

3.  Complexation of a guanidinium-modified calixarene with diverse dyes and investigation of the corresponding photophysical response.

Authors:  Yu-Ying Wang; Yong Kong; Zhe Zheng; Wen-Chao Geng; Zi-Yi Zhao; Hongwei Sun; Dong-Sheng Guo
Journal:  Beilstein J Org Chem       Date:  2019-06-25       Impact factor: 2.883

4.  Self-Assembly of Discrete Porphyrin/Calix[4]tube Complexes Promoted by Potassium Ion Encapsulation.

Authors:  Massimiliano Gaeta; Elisabetta Rodolico; Maria E Fragalà; Andrea Pappalardo; Ilenia Pisagatti; Giuseppe Gattuso; Anna Notti; Melchiorre F Parisi; Roberto Purrello; Alessandro D'Urso
Journal:  Molecules       Date:  2021-01-29       Impact factor: 4.411

5.  Fullerene-porphyrin hybrid nanoparticles that generate activated oxygen by photoirradiation.

Authors:  Kouta Sugikawa; Kosuke Masuda; Kentaro Kozawa; Riku Kawasaki; Atsushi Ikeda
Journal:  RSC Adv       Date:  2021-01-05       Impact factor: 3.361

6.  Adsorption of tetrakis(4-sulfophenyl)porphyrin onto liposomal surfaces composed of neutral diacylphosphatidylcholine and release by cyclodextrin.

Authors:  Yuki Tsuchiya; Toshimi Nakaya; Tomoyuki Kakigi; Kouta Sugikawa; Atsushi Ikeda
Journal:  RSC Adv       Date:  2018-03-27       Impact factor: 3.361

7.  Improving the stability of insulin in solutions containing intestinal proteases in vitro.

Authors:  Liefeng Zhang; Hui Jiang; Wenjie Zhu; Lin Wu; Lingling Song; Qiuyan Wu; Yong Ren
Journal:  Int J Mol Sci       Date:  2008-12-01       Impact factor: 6.208

Review 8.  Probing the Interactions of Porphyrins with Macromolecules Using NMR Spectroscopy Techniques.

Authors:  Ilche Gjuroski; Julien Furrer; Martina Vermathen
Journal:  Molecules       Date:  2021-03-30       Impact factor: 4.411

  8 in total

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