Conformational Changes in Stratum Corneum Lipids by Effect of Bicellar Systems

Attenuated total reflectance−Fourier transform infrared (ATR−FTIR) spectroscopy was applied to study the effects of the bicelles formed by dimyristoyl-glycero-phosphocholine (DMPC) and dihexanoyl-glycero-phosphocholine (DHPC) in porcine stratum corneum (SC) in vitro. A comparison of skin samples tre...

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Published in:Langmuir Vol. 25; no. 18; pp. 10595 - 10603
Main Authors: Rodríguez, Gelen, Barbosa-Barros, Lucyanna, Rubio, Laia, Cócera, Mercedes, Díez, Avencia, Estelrich, Joan, Pons, Ramon, Caelles, Jaume, Maza, Alfonso De la, López, Olga
Format: Journal Article
Language:English
Published: Washington, DC American Chemical Society 15-09-2009
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Abstract Attenuated total reflectance−Fourier transform infrared (ATR−FTIR) spectroscopy was applied to study the effects of the bicelles formed by dimyristoyl-glycero-phosphocholine (DMPC) and dihexanoyl-glycero-phosphocholine (DHPC) in porcine stratum corneum (SC) in vitro. A comparison of skin samples treated and untreated with bicelles at different temperatures was carried out. The analysis of variations after treatment in the position of the symmetric CH2 stretching, CH2 scissoring, and CH2 rocking vibrations reported important information about the effect of bicelles on the skin. Bicellar systems caused a phase transition from the gel or solid state to the liquid crystalline state in the lipid conformation of SC, reflecting the major order−disorder transition from hexagonally packed to disordered chains. Grazing incidence small and wide X-ray scattering (GISAXS and GIWAXS) techniques confirmed this effect of bicelles on the SC. These results are probably related to with the permeabilizing effect previously described for the DMPC/DHPC bicelles.
AbstractList Attenuated total reflectance-Fourier transform infrared (ATR-FTIR) spectroscopy was applied to study the effects of the bicelles formed by dimyristoyl-glycero-phosphocholine (DMPC) and dihexanoyl-glycero-phosphocholine (DHPC) in porcine stratum corneum (SC) in vitro. A comparison of skin samples treated and untreated with bicelles at different temperatures was carried out. The analysis of variations after treatment in the position of the symmetric CH2 stretching, CH2 scissoring, and CH2 rocking vibrations reported important information about the effect of bicelles on the skin. Bicellar systems caused a phase transition from the gel or solid state to the liquid crystalline state in the lipid conformation of SC, reflecting the major order-disorder transition from hexagonally packed to disordered chains. Grazing incidence small and wide X-ray scattering (GISAXS and GIWAXS) techniques confirmed this effect of bicelles on the SC. These results are probably related to with the permeabilizing effect previously described for the DMPC/DHPC bicelles.
Attenuated total reflectance−Fourier transform infrared (ATR−FTIR) spectroscopy was applied to study the effects of the bicelles formed by dimyristoyl-glycero-phosphocholine (DMPC) and dihexanoyl-glycero-phosphocholine (DHPC) in porcine stratum corneum (SC) in vitro. A comparison of skin samples treated and untreated with bicelles at different temperatures was carried out. The analysis of variations after treatment in the position of the symmetric CH2 stretching, CH2 scissoring, and CH2 rocking vibrations reported important information about the effect of bicelles on the skin. Bicellar systems caused a phase transition from the gel or solid state to the liquid crystalline state in the lipid conformation of SC, reflecting the major order−disorder transition from hexagonally packed to disordered chains. Grazing incidence small and wide X-ray scattering (GISAXS and GIWAXS) techniques confirmed this effect of bicelles on the SC. These results are probably related to with the permeabilizing effect previously described for the DMPC/DHPC bicelles.
Author Cócera, Mercedes
López, Olga
Rodríguez, Gelen
Díez, Avencia
Pons, Ramon
Rubio, Laia
Estelrich, Joan
Maza, Alfonso De la
Caelles, Jaume
Barbosa-Barros, Lucyanna
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Issue 18
Keywords Infrared spectrometry
Liquid state
Solid state
Stratum corneum
Vibration
Grazing incidence
Lipids
X ray scattering
Phase transitions
Conformation
Crystalline state
Reflectance
Language English
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Snippet Attenuated total reflectance−Fourier transform infrared (ATR−FTIR) spectroscopy was applied to study the effects of the bicelles formed by...
Attenuated total reflectance-Fourier transform infrared (ATR-FTIR) spectroscopy was applied to study the effects of the bicelles formed by...
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SubjectTerms Animals
Chemistry
Colloidal state and disperse state
Colloids: Surfactants and Self-Assembly, Dispersions, Emulsions, Foams
Dimyristoylphosphatidylcholine - chemistry
Epidermis - chemistry
Exact sciences and technology
General and physical chemistry
Lipids - chemistry
Phase Transition
Phospholipid Ethers - chemistry
Skin Temperature
Spectroscopy, Fourier Transform Infrared
Surface physical chemistry
Swine
Temperature
X-Ray Diffraction
Title Conformational Changes in Stratum Corneum Lipids by Effect of Bicellar Systems
URI http://dx.doi.org/10.1021/la901410h
https://www.ncbi.nlm.nih.gov/pubmed/19735132
https://search.proquest.com/docview/734039103
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