In vivo skin penetration of macromolecules in irritant contact dermatitis

Abdel-Mottaleb, Mona; Lamprecht, Alf;

Abstract


Recently, a selective preferential accumulation of polymeric nanoparticles (in the size range around 100 nm) has been observed in the follicular system of dermatitis skin. The present investigation aimed at clearly investigating the effect of irritant contact dermatitis on the barrier permeability for colloidal systems below this size range, namely quantum dots and hydrophilic macromolecules. Irritant dermatitis was induced in mice and the penetrability of quantum dots (5 nm) and hydrophilic dextran molecules has been tracked in both healthy and inflamed skin using confocal laser scanning microscopy. The selective accumulation of the quantum dots was clearly observed in inflamed skin while hydrophilic dextran behaved similarly in both healthy and inflamed skin. The therapeutic potential for the transdermal delivery of peptide drugs through inflamed skin has been also tested in rats. Results revealed that the transdermal permeation of insulin and calcitonin was not significantly enhanced in dermatitis compared to healthy skin. On the other side, permeation through stripped skin was significantly higher. However, the effect was limited and shorter compared to the SC injection where tmin was 0.5 h and 2 h with a 70% and 46% reduction in blood glucose levels for the stripped skin and the SC injection respectively. Similarly, tmin was 4 h and 8 h with area under the curve of 161 ± 65% and 350 ± 97% for the stripped skin and the SC injection respectively. In conclusion, the changes in skin permeability accompanied with skin inflammation did not affect its permeability to peptide drugs. Our findings also underline that experiments with the tape stripped skin model as a surrogate for inflamed skin can risk misleading conclusions due to significant difference of skin permeability between the tape stripped skin and inflamed skin.


Other data

Title In vivo skin penetration of macromolecules in irritant contact dermatitis
Authors Abdel-Mottaleb, Mona ; Lamprecht, Alf
Keywords Dermatitis;Peptide;Protein;Quantum dots;Skin;Tape stripping
Issue Date 30-Dec-2016
Publisher ELSEVIER
Journal International Journal of Pharmaceutics 
Volume 515
Issue 1-2
Start page 384
End page 389
ISSN 03785173
DOI 10.1016/j.ijpharm.2016.10.042
PubMed ID 27771484
Scopus ID 2-s2.0-84992476873
Web of science ID WOS:000389150700038

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