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Visualizing and Quantifying Pharmaceutical Compounds within Skin using Coherent Raman Scattering Imaging
Published on: November 24, 2021
Effect of exposure area on nerve agent absorption through skin in vitro
Christopher Dalton1, Stuart Graham1, John Jenner1
1CBR Division, Dstl Porton Down, Salisbury SP4 0JQ, UK.
Abstract:
Diffusion cells are used to determine the penetration of chemicals through skin in vitro. The cells have a limited surface area defined by the edge of the donor chamber. Should the penetrant spread rapidly to this containment limit the penetration rate can be accurately quantified. For the hazard assessment of small droplets of toxic chemicals, such as cholinesterase inhibitors, limiting skin surface spread in vitro could lead to underestimation of percutaneous penetration and hence underestimation of systemic toxicity in vivo. The current study investigated the dependency of the percutaneous penetration of undiluted radiolabelled nerve agents (VX and soman (GD), 10 μl) on skin surface spread (pig and guinea pig) using Franz-type glass diffusion cells with an area available for diffusion of either 2.54 cm(2) or 14.87 cm(2). Both VX and GD spread to the edge of the 2.54 cm(2) cells, but, not the 14.87 cm(2) cells over the study duration. Amounts of VX and GD penetrating pig and guinea pig skin in the 2.54 cm(2) cells were less than in the 14.87 cm(2) cells (except for GD under unoccluded conditions); however, penetration rates expressed per unit area were similar. Artificial limitation of skin surface spread in vitro does not impact percutaneous penetration in vitro as long as penetration is expressed in terms of mass per unit area.
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