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Novel supramolecular system based on a cationic amphiphile bearing glucamine fragment: structural behavior and hydrophobic probe binding

Dinar Rashidovich Gabdrakhmanov 1, 2
Dinar Rashidovich Gabdrakhmanov
Farida Garafeevna Valeeva 1, 2
Farida Garafeevna Valeeva
Victor Vasil'evich Syakaev 1
Victor Vasil'evich Syakaev
Svetlana Sergeevna Lukashenko 1, 2
Svetlana Sergeevna Lukashenko
Sergey Vladimirovich Zakharov 2
Sergey Vladimirovich Zakharov
Dmitry Aleksandrovich Kuryashov 2
Dmitry Aleksandrovich Kuryashov
Natalia Yuryevna Bashkirtseva 2
Natalia Yuryevna Bashkirtseva
Lucia Yarullovna Zakharova 1, 2
Lucia Yarullovna Zakharova
Shamil Kamil'evich Latypov 1
Shamil Kamil'evich Latypov
Oleg Gerol'dovich Sinyashin
Published 2015-04-28
CommunicationVolume 25, Issue 3, 174-176
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Gabdrakhmanov D. R. et al. Novel supramolecular system based on a cationic amphiphile bearing glucamine fragment: structural behavior and hydrophobic probe binding // Mendeleev Communications. 2015. Vol. 25. No. 3. pp. 174-176.
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Gabdrakhmanov D. R., Valeeva F. G., Syakaev V. V., Lukashenko S. S., Zakharov S. V., Kuryashov D. A., Bashkirtseva N. Y., Zakharova L. Y., Latypov S. K., Sinyashin O. G. Novel supramolecular system based on a cationic amphiphile bearing glucamine fragment: structural behavior and hydrophobic probe binding // Mendeleev Communications. 2015. Vol. 25. No. 3. pp. 174-176.
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TY - JOUR
DO - 10.1016/j.mencom.2015.05.004
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2015.05.004
TI - Novel supramolecular system based on a cationic amphiphile bearing glucamine fragment: structural behavior and hydrophobic probe binding
T2 - Mendeleev Communications
AU - Gabdrakhmanov, Dinar Rashidovich
AU - Valeeva, Farida Garafeevna
AU - Syakaev, Victor Vasil'evich
AU - Lukashenko, Svetlana Sergeevna
AU - Zakharov, Sergey Vladimirovich
AU - Kuryashov, Dmitry Aleksandrovich
AU - Bashkirtseva, Natalia Yuryevna
AU - Zakharova, Lucia Yarullovna
AU - Latypov, Shamil Kamil'evich
AU - Sinyashin, Oleg Gerol'dovich
PY - 2015
DA - 2015/04/28
PB - Mendeleev Communications
SP - 174-176
IS - 3
VL - 25
ER -
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@article{2015_Gabdrakhmanov,
author = {Dinar Rashidovich Gabdrakhmanov and Farida Garafeevna Valeeva and Victor Vasil'evich Syakaev and Svetlana Sergeevna Lukashenko and Sergey Vladimirovich Zakharov and Dmitry Aleksandrovich Kuryashov and Natalia Yuryevna Bashkirtseva and Lucia Yarullovna Zakharova and Shamil Kamil'evich Latypov and Oleg Gerol'dovich Sinyashin},
title = {Novel supramolecular system based on a cationic amphiphile bearing glucamine fragment: structural behavior and hydrophobic probe binding},
journal = {Mendeleev Communications},
year = {2015},
volume = {25},
publisher = {Mendeleev Communications},
month = {Apr},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2015.05.004},
number = {3},
pages = {174--176},
doi = {10.1016/j.mencom.2015.05.004}
}
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Gabdrakhmanov, Dinar Rashidovich, et al. “Novel supramolecular system based on a cationic amphiphile bearing glucamine fragment: structural behavior and hydrophobic probe binding.” Mendeleev Communications, vol. 25, no. 3, Apr. 2015, pp. 174-176. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2015.05.004.

Abstract

The synthesized cationic surfactant bearing a glucamine fragment forms spherical micelles at about 0.7mmoldm–3 and displays specific aggregation characterized by a sharp growth of micelles and a change in their properties within a narrow concentration range about 10mmoldm–3.

References

1.
Dzyurkevich M.S., Timofeeva K.N., Faizullin D.A., Zuev Y.F., Stoikov I.I., Plemenkov V.V.
Mendeleev Communications, 2014
3.
Cationic agents for DNA compaction
Gawęda S., Morán M.C., Pais A.A., Dias R.S., Schillén K., Lindman B., Miguel M.G.
Journal of Colloid and Interface Science, 2008
4.
Micellization of glucose-based surfactants with different counter ions and their interaction with DNA
Li Y., Zhang X., Li Y., Li C., Guo X.
Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2014
5.
Sugar-Based Surfactants: Fundamentals and Applications, ed. C. C. Ruiz, CRC Press, Boca Raton, 2009, p. 640.
6.
Koloskova O.O., Budanova U.A., Sumina A.M., Sarychev G.A., Sebyakin Y.L.
Mendeleev Communications, 2014
7.
Supramolecular Systems Based on Novel Mono- and Dicationic Pyrimidinic Amphiphiles and Oligonucleotides: A Self-Organization and Complexation Study
Zakharova L., Voronin M., Semenov V., Gabdrakhmanov D., Syakaev V., Gogolev Y., Giniyatullin R., Lukashenko S., Reznik V., Latypov S., Konovalov A., Zuev Y.
ChemPhysChem, 2012
8.
Tunable biomimetic systems based on a novel amphiphilic pyrimidinophane and a helper nonionic surfactant
Kharlamov S.V., Voronin M.A., Semenov V.E., Gabdrakhmanov D.R., Strobykina A.S., Nikolaev A.E., Reznik V.S., Zakharova L.Y., Konovalov A.I.
Colloids and Surfaces B: Biointerfaces, 2013
9.
Supramolecular design of biocompatible nanocontainers based on amphiphilic derivatives of a natural compound isosteviol
Gabdrakhmanov D.R., Voronin M.A., Zakharova L.Y., Konovalov A.I., Khaybullin R.N., Strobykina I.Y., Kataev V.E., Faizullin D.A., Gogoleva N.E., Konnova T.A., Salnikov V.V., Zuev Y.F.
Physical Chemistry Chemical Physics, 2013
10.
Novel biomimetic systems based on amphiphilic compounds with a diterpenoid fragment: Role of counterions in self-assembly
Voronin M.A., Gabdrakhmanov D.R., Khaibullin R.N., Strobykina I.Y., Kataev V.E., Idiyatullin B.Z., Faizullin D.A., Zuev Y.F., Zakharova L.Y., Konovalov A.I.
Journal of Colloid and Interface Science, 2013
11.
Amphiphilic macrocycles bearing biofragment: Molecular design as factor controlling self-assembly
Zakharova L.Y., Semenov V.E., Syakaev V.V., Voronin M.A., Gabdrakhmanov D.R., Valeeva F.G., Mikhailov A.S., Voloshina A.D., Reznik V.S., Latypov S.K., Konovalov A.I.
Materials Science and Engineering C, 2014
12.
Novel N-methyl-D-glucamine-based water-soluble polymer and its potential application in the removal of arsenic
Toledo L., Rivas B.L., Urbano B.F., Sánchez J.
Separation and Purification Technology, 2013
15.
Hofmeister Phenomena: An Update on Ion Specificity in Biology
Lo Nostro P., Ninham B.W.
Chemical Reviews, 2012
16.
Counterion Effect on Interfacial Water at Charged Interfaces and Its Relevance to the Hofmeister Series
Nihonyanagi S., Yamaguchi S., Tahara T.
Journal of the American Chemical Society, 2014
18.
Micellization and catalytic activity of the cetyltrimethylammonium bromide–Brij 97–water mixed micellar system
Zakharova L., Valeeva F., Zakharov A., Ibragimova A., Kudryavtseva L., Harlampidi H.
Journal of Colloid and Interface Science, 2003
20.
An Improved Diffusion-Ordered Spectroscopy Experiment Incorporating Bipolar-Gradient Pulses
Wu D.H., Chen A.D., Johnson C.S.
Journal of Magnetic Resonance Series A, 1995
21.
Surfactants and Polymers in Aqueous Solution, 2nd edn., eds. K. Holmberg, B. Jonsson, B. Kronberg and B. Lindman, John Wiley & Sons, Chichester, 2003, p. 562.
23.
Computation of molecular volume
Connolly M.L.
Journal of the American Chemical Society, 1985
24.
Critical micelle concentration of some surfactants and thermodynamic parameters of their micellization
Zdziennicka A., Szymczyk K., Krawczyk J., Jańczuk B.
Fluid Phase Equilibria, 2012
26.
Viscoelastic micellar water/CTAB/NaNO3 solutions: Rheology, SANS and cryo-TEM analysis
Kuperkar K., Abezgauz L., Danino D., Verma G., Hassan P.A., Aswal V.K., Varade D., Bahadur P.
Journal of Colloid and Interface Science, 2008
28.
In Vitro Liberation of Indomethacin from Chitosan Gels Containing Microemulsion in Different Dissolution Mediums
Starýchová L., Žabka M., Špaglová M., Čuchorová M., Vitková M., Čierna M., Bartoníková K., Gardavská K.
Journal of Pharmaceutical Sciences, 2014
30.
Self-assembling systems based on amphiphilic alkyltriphenylphosphonium bromides: Elucidation of the role of head group
Gainanova G.A., Vagapova G.I., Syakaev V.V., Ibragimova A.R., Valeeva F.G., Tudriy E.V., Galkina I.V., Kataeva O.N., Zakharova L.Y., Latypov S.K., Konovalov A.I.
Journal of Colloid and Interface Science, 2012