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Dive into the research topics where Irma Mahmutovic Persson is active.

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Featured researches published by Irma Mahmutovic Persson.


British Journal of Pharmacology | 2013

Selective inhibition by simvastatin of IRF3 phosphorylation and TSLP production in dsRNA‐challenged bronchial epithelial cells from COPD donors

Angelica Brandelius; Irma Mahmutovic Persson; Jenny Calvén; Leif Bjermer; Carl Persson; Morgan Andersson

Statin treatment may ameliorate viral infection‐induced exacerbations of chronic obstructive pulmonary disease (COPD), which exhibit Th2‐type bronchial inflammation. Thymic stromal lymphopoietin (TSLP), a hub cytokine switching on Th2 inflammation, is overproduced in viral and dsRNA‐stimulated bronchial epithelial cells from COPD donors. Hence, TSLP may be causally involved in exacerbations. This study tests the hypothesis that simvastatin inhibits dsRNA‐induced TSLP.


ERJ Open Research | 2017

Caspase-1 deficiency reduces eosinophilia and interleukin-33 in an asthma exacerbation model

Mandy Menzel; Hamid Akbarshahi; Irma Mahmutovic Persson; Manoj Puthia; Leif Bjermer

Rhinovirus infections are common triggers of asthma exacerbations. Viruses can activate the inflammasome, resulting in processing and activation of caspase-1. This recruitment triggers production of interleukin (IL)-1β and IL-18, which have been implicated in asthma. Elucidating the involvement of the inflammasome and its compartments, such as caspase-1, in asthma exacerbations is warranted. Gene expression of caspase-1 was measured in rhinovirus-infected primary bronchial epithelial cells of asthmatic and healthy donors 24 h post-infection. In an in vivo exacerbation experiment C57BL/6 wild-type and caspase-1-/- mice were challenged with house dust mite followed by exposures to the viral mimic poly(I:C). General lung inflammatory parameters and levels of T-helper type 2 (Th2)-upstream cytokines IL-33, thymic stromal lymphopoietin (TSLP) and IL-25 were assessed. Caspase-1 expression was elevated after rhinoviral infection exclusively in bronchial epithelial cells from asthmatics. In a translational mouse model of asthma exacerbation effects of caspase-1 on airway inflammation and Th2-upstream cytokines were explored. Caspase-1 deficient mice exhibited no alterations of general lung inflammatory parameters, but showed markedly reduced eosinophilia. Furthermore, the Th2-upstream cytokines IL-33, TSLP and IL-25 were reduced at exacerbation in mice lacking caspase-1. Rhinovirus infection increases bronchial epithelial caspase-1 in asthma. Caspase-1 may induce production of lung Th2-upstream cytokines and eosinophilia at exacerbations. Further targeting of caspase-1 signalling is warranted to explore its role in asthma exacerbations. Lack of caspase-1 reduces eosinophilia and expression of Th2-upstream cytokines at experimental asthma exacerbation http://ow.ly/NPMK30eMV2E


Respiratory Research | 2018

IL-1β mediates lung neutrophilia and IL-33 expression in a mouse model of viral-induced asthma exacerbation

Irma Mahmutovic Persson; Mandy Menzel; Sangeetha Ramu; Samuel Cerps; Hamid Akbarshahi

BackgroundViral-induced asthma exacerbations, which exhibit both Th1-type neutrophilia and Th2-type inflammation, associate with secretion of Interleukin (IL)-1β. IL-1β induces neutrophilic inflammation. It may also increase Th2-type cytokine expression. We hypothesised that IL-1β is causally involved in both Th1 and Th2 features of asthma exacerbations. This hypothesis is tested in our mouse model of viral stimulus-induced asthma exacerbation.MethodWild-type (WT) and IL-1β deficient (IL-1β−/−) mice received house dust mite (HDM) or saline intranasally during three weeks followed by intranasal dsRNA (PolyI:C molecule known for its rhinovirus infection mimic) for three consecutive days to provoke exacerbation. Bronchoalveolar lavage fluid was analysed for inflammatory cells and total protein. Lung tissues were stained for neutrophilic inflammation and IL-33. Tissue homogenates were analysed for mRNA expression of Muc5ac, CXCL1/KC, TNF-α, CCL5, IL-25, TSLP, IL-33, IL-1β, CCL11 and CCL2 using RT-qPCR.ResultsExpression of IL-1β, neutrophil chemoattractants, CXCL1 and CCL5, the Th2-upstream cytokine IL-33, and Muc5ac were induced at exacerbation in WT mice and were significantly inhibited in IL-1β−/− mice at exacerbation. Effects of HDM alone were not reduced in IL-1β-deficient mice.ConclusionWithout being involved in the baseline HDM-induced allergic asthma, IL-1β signalling was required to induce neutrophil chemotactic factors, IL-33, and Muc5ac expression at viral stimulus-induced exacerbation. We suggest that IL-1β has a role both in neutrophilic and Th2 inflammation at viral-induced asthma exacerbations.


Allergy | 2018

House dust mite impairs antiviral response in asthma exacerbation models through its effects on TLR3

Hamid Akbarshahi; Mandy Menzel; Sangeetha Ramu; Irma Mahmutovic Persson; Leif Bjermer

Impaired antiviral interferon expression may be involved in asthma exacerbations commonly caused by rhinovirus infections. Allergy is a known risk factor for viral‐induced asthma exacerbation, but little is known whether allergens may affect interferon responses.


Scientific Reports | 2018

Interferon-β deficiency at asthma exacerbation promotes MLKL mediated necroptosis

Samuel Cerps; Mandy Menzel; Irma Mahmutovic Persson; Leif Bjermer; Hamid Akbarshahi

Defective production of antiviral interferon (IFN)-β is thought to contribute to rhinovirus-induced asthma exacerbations. These exacerbations are associated with elevated lung levels of lactate dehydrogenase (LDH), indicating occurrence of cell necrosis. We thus hypothesized that reduced lung IFN-β could contribute to necrotic cell death in a model of asthma exacerbations. Wild-type and IFN-β−/− mice were given saline or house dust mite (HDM) intranasally for 3 weeks to induce inflammation. Double-stranded RNA (dsRNA) was then given for additional 3 days to induce exacerbation. HDM induced an eosinophilic inflammation, which was not associated with increased expression of cleaved caspase-3, cleaved PARP or elevated bronchoalveolar lavage fluid (BALF) LDH levels in wild-type. However, exacerbation evoked by HDM + dsRNA challenges increased BALF levels of LDH, apoptotic markers and the necroptotic markers receptor-interacting protein (RIP)-3 and phosphorylation of mixed linage kinase domain-like protein (pMLKL), compared to HDM + saline. Absence of IFN-β at exacerbation further increased BALF LDH and protein expression of pMLKL compared to wild-type. We demonstrate that cell death markers are increased at viral stimulus-induced exacerbation in mouse lungs, and that absence of IFN-β augments markers of necroptotic cell death at exacerbation. Our data thus suggest a novel role of deficient IFN-β production at viral-induced exacerbation.


Journal of Translational Medicine | 2016

Increased expression of upstream TH2-cytokines in a mouse model of viral-induced asthma exacerbation

Irma Mahmutovic Persson; Hamid Akbarshahi; Mandy Menzel; Angelica Brandelius


European Respiratory Journal | 2016

Caspase-1 induces upstream Th2-cytokines IL-33 and TSLP and eosinophilia at viral induced asthma exacerbations

Mandy Menzel; Samuel Cerps; Irma Mahmutovic Persson; Hamid Akbarshahi


European Respiratory Journal | 2016

Reduction of lung cytokines and luminal inflammatory cells in IL-1b deficient mice

Irma Mahmutovic Persson; Hamid Akbarshahi; Mandy Menzel


European Respiratory Journal | 2014

RIG-I receptors induced by dsRNA challenges in an HDM-mouse model of asthma exacerbation

Irma Mahmutovic Persson; Mandy Menzel; Hamid Akbarshahi


European Respiratory Journal | 2013

Differential effects of simvastatin and dexamethasone on TLR3-induced anti-viral cytokines in asthmatic epithelium

Angelica Brandelius; Irma Mahmutovic Persson; Jenny Calvén; Leif Bjermer; Carl Persson; Morgan Andersson

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