Literature DB >> 30368971

Comparing the influence of two immunosuppressants (fingolimod, azathioprine) on wound healing in a rat model of primary and secondary intention wound closure.

Ricardo Ginestal1, Bárbara Pérez-Köhler2,3,4, Paloma Pérez-López2,3, Marta Rodríguez2,3,4, Gemma Pascual3,4,5, David Cebrián6, Juan M Bellón2,3,4, Francisca García-Moreno2,3,4.   

Abstract

In this study, rat models of wound closure by first and second intention were developed to evaluate the influence that two immunosuppressants for treating multiple sclerosis (fingolimod, azathioprine) have on wound healing. Sixty-three Sprague-Dawley rats were daily treated with fingolimod (0.6 mg/kg), azathioprine (2.5 mg/kg), or placebo (saline). Following 6 weeks of treatment, a linear incision (1.5 cm) or a circular excisional defect (diameter 1.5 cm) was made on the dorsal skin. The treatments were uninterrupted and after 7 days (incisional) or 21 days (incisional, excisional), animals were euthanized (n = 7 per group and time-point). Morphometric (wound closure), histological (stainings), and immunofluorescent studies (macrophages) were performed to evaluate the healing process. For both the incisional and excisional defects, animals treated with fingolimod exhibited a healing process equivalent to that of placebo in terms of collagenization, wound closure, and macrophage response. By comparison, groups treated with azathioprine displayed a delay in healing times which was especially evident in the excisional defect, where inflammatory reaction and collagen deposition in the repair tissue remained active by day 21. These results show that immunosuppressants with a selective mechanism of action (fingolimod) can have less impact on wound healing than their classical nonselective counterparts (azathioprine).
© 2018 by the Wound Healing Society.

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Year:  2018        PMID: 30368971     DOI: 10.1111/wrr.12685

Source DB:  PubMed          Journal:  Wound Repair Regen        ISSN: 1067-1927            Impact factor:   3.617


  1 in total

1.  Wound Healing Modulation through the Local Application of Powder Collagen-Derived Treatments in an Excisional Cutaneous Murine Model.

Authors:  Selma Benito-Martínez; Bárbara Pérez-Köhler; Marta Rodríguez; Jesús María Izco; José Ignacio Recalde; Gemma Pascual
Journal:  Biomedicines       Date:  2022-04-21
  1 in total

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