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Título
Rupture of pluronic micelles by Di-Methylated β-Cyclodextrin Is not due to polypseudorotaxane formation
Autor(es)
Palabras clave
Micelles
Poloxamer
Cyclodextrins
Fluorescence
Fecha de publicación
2012
Editor
American Chemical Society
Citación
Valero, M., Grillo, I., & Dreiss, C. A. (2012). Rupture of pluronic micelles by Di-methylated β-cyclodextrin is not due to polypseudorotaxane formation. Journal of Physical Chemistry B, 116(4), 1273-1281. https://doi.org/10.1021/JP210439N
Resumen
[EN]Spectroscopic measurements (uv/vis absorbance and fluorescence)
and time-resolved small-angle neutron scattering experiments (TR-SANS) were
used to follow the breakdown of Pluronic micelles by heptakis(2,6-di-O-methyl)-
β-cyclodextrin (DIMEB) over time in order to elucidate the mechanism of
micellar rupture, generally attributed to polypseudotorotaxane (PR) formation
between the cyclodextrin and the central hydrophobic PPO block. The spectroscopic
measurements with two different probes (methyl orange and nile red)
suggest that very rapid changes (on the order of seconds) take place when mixing
DIMEB with F127 Pluronic and that no displacement of the probe from the
cyclodextrin cavity occurs, which is in disagreement with PR formation. TR-SANS
measurements demonstrate for the first time that the micelles are broken down in
less than 100 ms, which categorically rules out PR formation as the mechanism of
rupture. In addition, the same mechanism is demonstrated with other Pluronics,
P85 and P123. In the latter case, after micellar rupture, lamellar structures are seen to form over a longer period of time, thus
suggesting that after the instantaneous micellar disruption, further, longer-scale rearrangements are not excluded.
URI
ISSN
1520-6106
DOI
10.1021/JP210439N
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