1. Academic Validation
  2. Molecular and histopathological profiling of imiquimod induced dermatosis in Swiss Wistar rats: contribution to the rat model for novel anti-psoriasis treatments

Molecular and histopathological profiling of imiquimod induced dermatosis in Swiss Wistar rats: contribution to the rat model for novel anti-psoriasis treatments

  • Mol Biol Rep. 2021 May;48(5):4295-4303. doi: 10.1007/s11033-021-06445-3.
Ajla Smajlović 1 Anja Haverić 2 Amer Alić 3 Maida Hadžić 1 Ahmed Smajlović 3 Indira Mujezinović 3 Naida Lojo-Kadrić 1 Jasmin Ramić 1 Nikolina Elez-Burnjaković 4 Sanin Haverić 1 Lejla Pojskić 1
Affiliations

Affiliations

  • 1 Institute for Genetic Engineering and Biotechnology, University of Sarajevo, Zmaja od Bosne 8, 71000, Sarajevo, Bosnia and Herzegovina.
  • 2 Institute for Genetic Engineering and Biotechnology, University of Sarajevo, Zmaja od Bosne 8, 71000, Sarajevo, Bosnia and Herzegovina. [email protected].
  • 3 Veterinary Faculty, University of Sarajevo, Zmaja od Bosne 90, 71000, Sarajevo, Bosnia and Herzegovina.
  • 4 Faculty of Medicine, University of East Sarajevo, Studentska 5, 73300, Foča, Bosnia and Herzegovina.
Abstract

Imiquimod (IMQ) induced human-like psoriasis in mice has been shown to be effective in testing and development of novel treatments. The IMQ psoriasis model has become widely used animal model, however, it is not completely characterized in different rat strains. We aimed to evaluate IMQ and betamethasone treatment for induction and reversal of psoriatic lesions on macroscopic, histological, genetic as well as cytokines and chemokines activation levels. Wistar rats were treated topically with IMQ. Adopted Psoriasis Area Severity Index (PASI) was calculated at the baseline, after the IMQ-symptoms induction and after betamethasone-symptoms reversal. Systematic effects were studied on cytokines and chemokines levels in plasma. Skin biopsy was taken to assess histological symptoms and selected inflammatory cytokines and receptors genes expression levels. Reversal of skin lesions, after betamethasone treatment, was significant (p = 0.03). Histological differences between untreated and IMQ-treated skin were significant for some markers (p < 0.05) though not significantly decreased by betamethasone treatment. Fourteen genes were significantly up-regulated after the IMQ and four genes were down-regulated after skin lesions reversal by betamethasone. This work provides new insights on biological effects of imiquimod induced psoriasis and its reversal by betamethasone treatment in Wistar rats. It also contributes to general knowledge of the rat model usage for testing of novel anti-psoriasis drugs.

Keywords

Cytokine activation; Gene expression profiling; Imiquimod; PASI; Psoriasis; Rat model.

Figures
Products