Literature DB >> 24912880

Update on innate lymphoid cells in atopic and non-atopic inflammation in the airways and skin.

J Mjösberg1, L Eidsmo.   

Abstract

Innate lymphoid cells (ILC) is the collective term for a group of related innate lymphocytes, including NK cells and the more recently appreciated non-NK ILC (ILC1, ILC2 and ILC3). ILC all depend on the common γ-chain of the IL-2 receptor and the transcription factor Id2. Furthermore, ILC lack rearranged antigen-receptors such as those expressed by T and B cells. Recent data indicate that non-NK ILC contribute to a wide range of homeostatic and pathophysiological processes primarily by virtue of cytokine production. A lot of effort has been put into understanding the role for the non-NK ILC in mucosal homeostasis, including in the gut and lungs. Recent reports also point towards a role for ILC in skin inflammation. In the lung, ILC may propagate stromal-derived danger signals, with subsequent induction of mainly type 2 cytokine production. This might represent an early trigger of type 2-mediated pathology, which subsequently also engages the adaptive immune system. Similarly, in the skin, ILC are well placed to sense keratinocyte-derived danger signals in an antigen-independent manner. Recent findings link ILC2 to atopic dermatitis and ILC3 to psoriasis. In this review, we provide an updated perspective on the role for non-NK ILC in atopic and non-atopic inflammation in the airways as well as in the skin.
© 2014 John Wiley & Sons Ltd.

Entities:  

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Year:  2014        PMID: 24912880     DOI: 10.1111/cea.12353

Source DB:  PubMed          Journal:  Clin Exp Allergy        ISSN: 0954-7894            Impact factor:   5.018


  17 in total

Review 1.  Human innate lymphoid cells (ILCs) in filarial infections.

Authors:  S Bonne-Année; T B Nutman
Journal:  Parasite Immunol       Date:  2017-06-15       Impact factor: 2.280

2.  Prostaglandin I2 Signaling and Inhibition of Group 2 Innate Lymphoid Cell Responses.

Authors:  Weisong Zhou; Shinji Toki; Jian Zhang; Kasia Goleniewksa; Dawn C Newcomb; Jacqueline Y Cephus; Daniel E Dulek; Melissa H Bloodworth; Matthew T Stier; Vasiliy Polosuhkin; Rama D Gangula; Simon A Mallal; David H Broide; R Stokes Peebles
Journal:  Am J Respir Crit Care Med       Date:  2016-01-01       Impact factor: 21.405

Review 3.  Pathogenesis of nasal polyposis.

Authors:  K E Hulse; W W Stevens; B K Tan; R P Schleimer
Journal:  Clin Exp Allergy       Date:  2015-02       Impact factor: 5.018

Review 4.  Insights into Group 2 Innate Lymphoid Cells in Human Airway Disease.

Authors:  Maya R Karta; David H Broide; Taylor A Doherty
Journal:  Curr Allergy Asthma Rep       Date:  2016-01       Impact factor: 4.806

Review 5.  Immune Mechanisms of Chronic Rhinosinusitis.

Authors:  Kathryn E Hulse
Journal:  Curr Allergy Asthma Rep       Date:  2016-01       Impact factor: 4.806

Review 6.  Dysregulation of Innate Lymphoid Cells in Common Variable Immunodeficiency.

Authors:  Paul J Maglione; Montserrat Cols; Charlotte Cunningham-Rundles
Journal:  Curr Allergy Asthma Rep       Date:  2017-10-05       Impact factor: 4.806

Review 7.  Innate lymphoid cells in the skin.

Authors:  Brian S Kim
Journal:  J Invest Dermatol       Date:  2014-10-23       Impact factor: 8.551

Review 8.  Innate lymphocyte cells in asthma phenotypes.

Authors:  Leyla Pur Ozyigit; Hideaki Morita; Mubeccel Akdis
Journal:  Clin Transl Allergy       Date:  2015-07-06       Impact factor: 5.871

9.  Protein and mRNA Expression Levels of Interleukin-17A, -17F and -22 in Blood and Skin Samples of Patients with Mycosis Fungoides.

Authors:  Despoina Papathemeli; Aikaterini Patsatsi; Dimitrios Papanastassiou; Triantafyllia Koletsa; Thomas Papathemelis; Chrysostomos Avgeros; Olga Pikou; Elizabeth Lazaridou; Elisavet Georgiou
Journal:  Acta Derm Venereol       Date:  2020-11-18       Impact factor: 3.875

Review 10.  Innate lymphoid cells in graft-versus-host disease.

Authors:  V Konya; J Mjösberg
Journal:  Am J Transplant       Date:  2015-07-30       Impact factor: 8.086

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