Fluoxetine exerts anti‐inflammatory effects on human epidermal keratinocytes and suppresses their endothelin release

Author:

Tóth Kinga Fanni12ORCID,Ádám Dorottya12ORCID,Arany József12ORCID,Ramirez Yesid A.34ORCID,Bíró Tamás5ORCID,Drake Jennifer I.6ORCID,O'Mahony Alison67ORCID,Szöllősi Attila Gábor5ORCID,Póliska Szilárd8ORCID,Kilić Ana9ORCID,Soeberdt Michael910ORCID,Abels Christoph910ORCID,Oláh Attila1ORCID

Affiliation:

1. Department of Physiology, Faculty of Medicine University of Debrecen Debrecen Hungary

2. University of Debrecen Doctoral School of Molecular Medicine Debrecen Hungary

3. Design and Applied Sciences, School of Applied Sciences and Sustainable Industry, Department of Pharmaceutical and Chemical Sciences, Faculty of Engineering Universidad Icesi Cali Valle del Cauca Colombia

4. Cannaflos—Gesellschaft für medizinisches Cannabis mbH Köln Germany

5. Department of Immunology, Faculty of Medicine University of Debrecen Debrecen Hungary

6. Eurofins Discovery St. Charles Missouri USA

7. Recursion Salt Lake City Utah USA

8. Genomic Medicine and Bioinformatics Core Facility, Department of Biochemistry and Molecular Biology, Faculty of Medicine University of Debrecen Debrecen Hungary

9. Dr. August Wolff GmbH & Co. KG Arzneimittel Bielefeld Germany

10. Bionorica SE Neumarkt Germany

Abstract

AbstractFluoxetine is a safe antidepressant with remarkable anti‐inflammatory actions; therefore, we aimed to investigate its effects on immortalized (HaCaT) as well as primary human epidermal keratinocytes in a polyinosinic‐polycytidylic acid (p(I:C))‐induced inflammatory model. We found that a non‐cytotoxic concentration (MTT‐assay, CyQUANT‐assay) of fluoxetine significantly suppressed p(I:C)‐induced expression and release of several pro‐inflammatory cytokines (Q‐PCR, cytokine array, ELISA), and it decreased the release of the itch mediator endothelins (ELISA). These effects were not mediated by the inhibition of the NF‐κB or p38 MAPK pathways (western blot), or by the suppression of the p(I:C)‐induced elevation of mitochondrial ROS production (MitoSOX Red labeling). Instead, unbiased activity profiling revealed that they were most likely mediated via the inhibition of the phosphoinositide 3‐kinase (PI3K) pathway. Importantly, the PI3K‐inhibitor GDC0941 fully mimicked the effects of fluoxetine (Q‐PCR, ELISA). Although fluoxetine was able to occupy the binding site of GDC0941 (in silico molecular docking), and exerted direct inhibitory effect on PI3K (cell‐free PI3K activity assay), it exhibited much lower potency and efficacy as compared to GDC0941. Finally, RNA‐Seq analysis revealed that fluoxetine deeply influenced the transcriptional alterations induced by p(I:C)‐treatment, and exerted an overall anti‐inflammatory activity. Collectively, our findings demonstrate that fluoxetine exerts potent anti‐inflammatory effects, and suppresses the release of the endogenous itch mediator endothelins in human keratinocytes, most likely via interfering with the PI3K pathway. Thus, clinical studies are encouraged to explore whether the currently reported beneficial effects translate in vivo following its topical administration in inflammatory and pruritic dermatoses.

Funder

Debreceni Egyetem

Deutscher Akademischer Austauschdienst

Magyar Tudományos Akadémia

Nemzeti Kutatási Fejlesztési és Innovációs Hivatal

Publisher

Wiley

Subject

Dermatology,Molecular Biology,Biochemistry

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