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Significant bile salt induced perturbation of niosome membrane: A molecular level interaction study using 1-Naphthol fluorescence
Published in Elsevier B.V.
2020
PMID: 31715455
Volume: 185
   
Abstract
This study demonstrates that significant perturbation of tween20:cholesterol(1:1) niosome membrane takes place even at premicellar concentration of bile salts. Here, 1-naphthol (1-NpOH), a known and sensitive excited state proton transfer (ESPT) probe, was used to understand the nature of perturbation of the membrane in an unbuffered medium. The significant decrease in 1-NpOH fluorescence intensity in niosome-bile salt mixed system at both lower (10 °C) and higher (50 °C) temperatures indicates the bile salts [sodium cholate (NaC) and sodium deoxycholate (NaDC)] induce perturbation of niosome membranes. Variations in the fluorescence lifetime values of both the prototropic emissions (neutral and anionic species) along with the proton transfer rate of 1-NpOH confirm the bile salts perturb up to the hydrophobic core domain of the niosomal membranes. Bile salts induce size change of the niosomal membrane is confirmed through dynamic light scattering study. © 2019 Elsevier B.V.
About the journal
JournalData powered by TypesetColloids and Surfaces B: Biointerfaces
PublisherData powered by TypesetElsevier B.V.
ISSN09277765
Open AccessYes
Concepts (34)
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    Excited states
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    Fluorescence
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    Hydration
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    Light scattering
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    Membranes
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    Naphthol
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    Proton transfer
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    Sodium
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    Sodium compounds
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    BILE SALTS
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    Excited-state proton transfer
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    Fluorescence intensities
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    Fluorescence lifetimes
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    Hydrophobic core
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    MOLECULAR LEVEL INTERACTIONS
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    NIOSOME
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    SODIUM DEOXYCHOLATE
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    Salts
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    1 naphthol
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    BILE SALT
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    Cholic acid
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    DEOXYCHOLATE SODIUM
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    NIOSOME
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    Article
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    Controlled study
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    Fluorescence analysis
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    High temperature
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    Hydrophobicity
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    Low temperature
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    Micelle
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    Molecular interaction
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    Photon correlation spectroscopy
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    Priority journal
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    Proton transport