Spreading properties of cosmetic emollients: Use of synthetic skin surface to elucidate structural effect.

The study focuses on the impact of structural and physicochemical properties of emollients on their spreadability. Fifty-three emollients, among which esters, silicones, vegetable and mineral oils, have been characterized. Their viscosity, surface tension, density and spreadability have been measured. Vitro-skin®, an artificial skin substitute, was used as an artificial porous substrate to measure spreadability. Two different methods have been selected to characterize spreadability, namely contact angle and spreading value. Dynamic contact angle measurements showed that emollient spreadability is first governed by spontaneous spreading and that, in a second phase, absorption and migration into the porous substrate becomes the driver of the extension of the spreading area. Statistical analysis of physicochemical and spreading value data revealed that viscosity has a major impact on the spreading behavior of emollients whatever their chemical type. A special emphasis was placed on the ester family in which chemical diversity is very wide. The results highlighted a difference between "high viscosity esters" for which viscosity is the main factor impacting spreadability and "low viscosity esters" for which structural variations (mono/diester, saturated/unsaturated chain, linear/branched chain) have to be considered in addition to viscosity. Linear regressions were used to express spreading value as a function of viscosity for each of the four emollient families tested (esters, silicones, vegetable and mineral oils). These regressions allowed the development of reliable predictive models as a powerful tool for formulators to forecast spreadability of emollients.

[1]  H. Arimoto,et al.  Analysis of absorption and spreading of moisturizer on the microscopic region of the skin surface with near‐infrared imaging , 2016, Skin research and technology : official journal of International Society for Bioengineering and the Skin (ISBS) [and] International Society for Digital Imaging of Skin (ISDIS) [and] International Society for Skin Imaging.

[2]  H. Maibach,et al.  Treatment of Dry Skin Syndrome: The Art and Science of Moisturizers , 2012 .

[3]  Jean-Pierre Gauchi,et al.  Comparison of selection methods of explanatory variables in PLS regression with application to manufacturing process data , 2001 .

[4]  Gastón Ares,et al.  SENSORY CHARACTERIZATION OF EMOLLIENTS , 2008 .

[5]  U. Zeidler,et al.  Über das Spreiten von Lipiden auf der Haut , 1985 .

[6]  L. Chan,et al.  Characterization of spreadability of nonaqueous ethylcellulose gel matrices using dynamic contact angle. , 2008, Journal of pharmaceutical sciences.

[7]  S. Wold,et al.  PLS-regression: a basic tool of chemometrics , 2001 .

[8]  Céline Picard,et al.  Impact of emollients on the spreading properties of cosmetic products: a combined sensory and instrumental characterization. , 2013, Colloids and surfaces. B, Biointerfaces.

[9]  A. Clarke,et al.  Spreading and Imbibition of Liquid Droplets on Porous Surfaces , 2002 .

[10]  L Skedung,et al.  Tactile friction of topical formulations , 2016, Skin research and technology : official journal of International Society for Bioengineering and the Skin (ISBS) [and] International Society for Digital Imaging of Skin (ISDIS) [and] International Society for Skin Imaging.

[11]  Adriana Gámbaro,et al.  Study of sensory properties of emollients used in cosmetics and their correlation with physicochemical properties. , 2005, Journal of cosmetic science.

[12]  C. Jun,et al.  Performance of some variable selection methods when multicollinearity is present , 2005 .

[13]  V. Krstonošić,et al.  A combined approach in characterization of an effective w/o hand cream: the influence of emollient on textural, sensorial and in vivo skin performance , 2012, International journal of cosmetic science.

[14]  G. Garnier,et al.  Mechanism of Wetting and Absorption of Water Droplets on Sized Paper: Effects of Chemical and Physical Heterogeneity , 2002 .