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1.
J Mech Behav Biomed Mater ; 54: 185-93, 2016 Feb.
Article in English | MEDLINE | ID: mdl-26469630

ABSTRACT

The mechanical resistance of the stratum corneum, the outermost layer of skin, to deformation has been evaluated at different length scales using Atomic Force Microscopy. Nanomechanical surface mapping was first conducted using a sharp silicon tip and revealed that Young׳s modulus of the stratum corneum varied over the surface with a mean value of about 0.4GPa. Force indentation measurements showed permanent deformation of the skin surface only at high applied loads (above 4µN). The latter effect was further demonstrated using nanomechanical imaging in which the obtained depth profiles clearly illustrate the effects of increased normal force on the elastic/plastic surface deformation. Force measurements utilizing the single hair fiber probe supported the nanoindentation results of the stratum corneum being highly elastic at the nanoscale, but revealed that the lateral scale of the deformation determines the effective elastic modulus.This result resolves the fact that the reported values in the literature vary greatly and will help to understand the biophysics of the interaction of razor cut hairs that curl back during growth and interact with the skin.


Subject(s)
Epidermis , Materials Testing/instrumentation , Mechanical Phenomena , Nanotechnology/instrumentation , Biomechanical Phenomena , Elastic Modulus , Humans , Microscopy, Atomic Force , Silicon
2.
Phys Chem Chem Phys ; 8(47): 5501-14, 2006 Dec 21.
Article in English | MEDLINE | ID: mdl-17136265

ABSTRACT

Short-range interactions between surfactant and lipid layers are of great importance in technical applications in complex fluids such as foams, dispersions and emulsions, as well as in the formulation and performance of dispersants, detergents and flocculants. It is also of utmost importance in biological systems where interactions between biomembranes influence a range of processes. The field of short-range interactions has been thoroughly investigated during the past 30 years, following the emergence of a number of techniques to measure interaction forces. Thus, our understanding has increased considerably and it is timely to summarize relevant knowledge accumulated in this area. In this review we focus on the nature of short-range interactions between non-ionic and zwitterionic surfactant and lipid layers exposing their polar groups to the surrounding medium. We discuss the complex interplay of short-range (van der Waals, hydration, steric and other) forces based on recent theoretical and experimental results.


Subject(s)
Emulsions , Lipid Bilayers , Surface-Active Agents/chemistry , Hydrogen Bonding , Phase Transition , Thermodynamics , Water
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