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Interactions between poloxamer, PEOx-PPOy-PEOx, and non-ionic surfactant, sucrose monolaurate: A study on potential allergenic effect using model phospholipid membrane
被引:5
作者:
Kwek, Jin W.
[1
]
Chakraborty, S.
[2
]
Kuan, Kai C.
[1
]
Yeo, Wen C.
[1
]
Yin, H.
[3
]
Liu, Connie K.
[1
]
Guo, L.
[1
]
Zidar, J.
[2
]
Li, C.
[3
]
Lim, Freda C. H.
[1
,2
]
机构:
[1] ASTAR, Inst Chem & Engn Sci, 1 Pesek Rd, Jurong Isl 627833, Singapore
[2] ASTAR, Inst High Performance Comp, 1 Fusionopolis Way,16-16 Connexis, Singapore 138632, Singapore
[3] Singapore Polytech, Dept Technol Innovat & Enterprise, 500 Dover Rd, Singapore 139651, Singapore
关键词:
Sugar surfactants;
Quartz crystal microbalance;
Poloxamer;
Disruption;
Lipid bilayer;
DPD;
QUARTZ-CRYSTAL MICROBALANCE;
LIPID-BILAYERS;
BEHAVIOR;
ADSORPTION;
SIMULATION;
SCATTERING;
POLYMERS;
SYSTEM;
ESTERS;
WATER;
D O I:
10.1016/j.colsurfb.2021.112153
中图分类号:
Q6 [生物物理学];
学科分类号:
071011 ;
摘要:
Sugar-based surfactants are involved in skin related allergy cases in the past decade. Skin irritation starts with the interaction of the surfactant with the skin lipids leading to lipid emulsification and eventual barrier damage. Polymers or co-surfactants can be used to mitigate the allergenic effect but the mechanism of formulation mildness on skin remains unclear. We have used the quartz crystal microbalance (QCM) together with dissipative particle dynamics (DPD) simulation, small angle x-ray scattering (SAXS) as well as cell viability tests to decipher the interactions between poloxamers and sucrose monolaurate (SML), and how these interactions could prevent the disruption of a model supported phospholipid bilayer (SLB). Poloxamer addition to the SML solution can delay or totally prevent the disruption of the SLB depending on poloxamer type and concentration. Poloxamer P407 (Pluronic (R) F127) delays the onset of disruption while poloxamer P188 (Pluronic (R) F68) does not preserve the bilayer integrity even at high concentration of up to 15% w/w. Preservation of the SLB is likely due to the differences in the aggregates formation between SML-F127 and SML-F68 mixtures with corresponding retarded motion of SML micelles through the SML-F127 polymer matrix that improved cell viability.
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页数:9
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