Equine keratinocytes in the pathogenesis of insect bite hypersensitivity: Just another brick in the wall?


Journal

PloS one
ISSN: 1932-6203
Titre abrégé: PLoS One
Pays: United States
ID NLM: 101285081

Informations de publication

Date de publication:
2022
Historique:
received: 26 04 2021
accepted: 17 03 2022
entrez: 1 8 2022
pubmed: 2 8 2022
medline: 4 8 2022
Statut: epublish

Résumé

Equine insect bite hypersensitivity (IBH) is the most common skin disease affecting horses. It is described as an IgE-mediated, Type I hypersensitivity reaction to salivary gland proteins of Culicoides insects. Together with Th2 cells, epithelial barrier cells play an important role in development of Type I hypersensitivities. In order to elucidate the role of equine keratinocytes in development of IBH, we stimulated keratinocytes derived from IBH-affected (IBH-KER) (n = 9) and healthy horses (H-KER) (n = 9) with Culicoides recombinant allergens and extract, allergic cytokine milieu (ACM) and a Toll like receptor ligand 1/2 (TLR-1/2-L) and investigated their transcriptomes. Stimulation of keratinocytes with Culicoides allergens did not induce transcriptional changes. However, when stimulated with allergic cytokine milieu, their gene expression significantly changed. We found upregulation of genes encoding for CCL5, -11, -20, -27 and interleukins such as IL31. We also found a strong downregulation of genes such as SCEL and KRT16 involved in the formation of epithelial barrier. Following stimulation with TLR-1/2-L, keratinocytes significantly upregulated expression of genes affecting Toll like receptor and NOD-receptor signaling pathway as well as NF-kappa B signaling pathway, among others. The transcriptomes of IBH-KER and H-KER were very similar: without stimulations they only differed in one gene (CTSL); following stimulation with allergic cytokine milieu we found only 23 differentially expressed genes (e.g. CXCL10 and 11) and following stimulation with TLR-1/2-L they only differed by expression of seven genes. Our data suggests that keratinocytes contribute to the innate immune response and are able to elicit responses to different stimuli, possibly playing a role in the pathogenesis of IBH.

Identifiants

pubmed: 35913947
doi: 10.1371/journal.pone.0266263
pii: PONE-D-21-13837
pmc: PMC9342730
doi:

Substances chimiques

Allergens 0
Cytokines 0
Toll-Like Receptor 1 0
Toll-Like Receptors 0

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

e0266263

Subventions

Organisme : Biotechnology and Biological Sciences Research Council
ID : BBS/E/I/00007039
Pays : United Kingdom

Déclaration de conflit d'intérêts

The authors have declared that no competing interests exist.

Références

PLoS One. 2020 Apr 28;15(4):e0232189
pubmed: 32343720
Allergy. 2004 Jun;59(6):561-70
pubmed: 15147438
Equine Vet J. 1987 May;19(3):229-36
pubmed: 3608962
Vet Immunol Immunopathol. 2011 Mar 15;140(1-2):63-74
pubmed: 21168921
Int Arch Allergy Immunol. 2008;145(1):33-42
pubmed: 17703098
Equine Vet J. 2017 Jul;49(4):512-518
pubmed: 27859584
Equine Vet J. 2001 Nov;33(7):699-706
pubmed: 11770993
Equine Vet J. 1984 Mar;16(2):117-20
pubmed: 6714213
Vet Immunol Immunopathol. 2011 Feb 15;139(2-4):200-9
pubmed: 21071100
Nat Immunol. 2002 Jul;3(7):673-80
pubmed: 12055625
J Invest Dermatol. 2017 Nov;137(11):2354-2361
pubmed: 28684329
Allergy. 2019 May;74(5):874-887
pubmed: 30644576
Immunol Rev. 2017 Jul;278(1):116-130
pubmed: 28658558
Equine Vet J. 1983 Jul;15(3):266-72
pubmed: 6884318
Int J Parasitol. 2009 Jan;39(2):243-50
pubmed: 18708061
Vet Immunol Immunopathol. 2013 Jun 15;153(3-4):227-39
pubmed: 23561552
Vet Immunol Immunopathol. 2012 Jun 30;147(3-4):113-26
pubmed: 22575371
Immunity. 2015 Jul 21;43(1):29-40
pubmed: 26200011
Int Arch Allergy Immunol. 2011;155(1):31-7
pubmed: 21109746
Annu Rev Immunol. 2005;23:749-86
pubmed: 15771585
Clin Exp Allergy. 2013 Aug;43(8):889-901
pubmed: 23889243
J Allergy Clin Immunol. 2003 Mar;111(3):592-7
pubmed: 12642842
J Immunol. 2016 Apr 15;196(8):3233-44
pubmed: 26944931
Vet Res. 2006 Nov-Dec;37(6):813-25
pubmed: 16973120
J Invest Dermatol. 2012 Mar;132(3 Pt 2):751-62
pubmed: 22158554
Vet Immunol Immunopathol. 2009 Nov 15;132(1):21-30
pubmed: 19819562
J Allergy Clin Immunol. 2012 Feb;129(2):426-33, 433.e1-8
pubmed: 22177328
J Allergy Clin Immunol. 2018 Oct;142(4):1194-1205.e3
pubmed: 29627082
Allergy. 2009 Sep;64(9):1366-74
pubmed: 19416145
Exp Dermatol. 2002 Apr;11(2):135-42
pubmed: 11994140
Vet Immunol Immunopathol. 2010 Sep 15;137(1-2):76-83
pubmed: 20537727
Equine Vet J. 2006 Jan;38(1):40-6
pubmed: 16411585
Nature. 2008 Jul 24;454(7203):445-54
pubmed: 18650915
J Immunol. 2007 Mar 15;178(6):3373-7
pubmed: 17339431
Vet Immunol Immunopathol. 2010 Jan 15;133(1):40-50
pubmed: 19640590
PLoS One. 2020 Apr 23;15(4):e0232042
pubmed: 32324792
PLoS One. 2015 Apr 22;10(4):e0122090
pubmed: 25901733
Curr Allergy Asthma Rep. 2014 Oct;14(10):466
pubmed: 25149168
Allergy. 2020 Apr;75(4):862-871
pubmed: 31816097
J Invest Dermatol. 2011 Nov;131(11):2205-12
pubmed: 21716324
J Allergy Clin Immunol. 2010 Nov;126(5):985-93, 993.e1-3
pubmed: 21050945
Vet Immunol Immunopathol. 2018 Jul;201:32-37
pubmed: 29914679
J Clin Invest. 2019 Apr 1;129(4):1441-1451
pubmed: 30932910
Equine Vet J. 1990 Jul;22(4):236-40
pubmed: 1976506
Int Immunol. 2006 Aug;18(8):1233-42
pubmed: 16735375
Immunity. 2019 Mar 19;50(3):552-565
pubmed: 30893586
PLoS One. 2015 Aug 27;10(8):e0135278
pubmed: 26313909
J Cell Biol. 2010 Mar 22;188(6):935-52
pubmed: 20308431
Allergy. 2021 Apr;76(4):1147-1157
pubmed: 32780483
Parasit Vectors. 2018 Jun 20;11(1):358
pubmed: 29925422
Nat Genet. 2006 Apr;38(4):441-6
pubmed: 16550169
Vet Dermatol. 2020 Apr;31(2):154-162
pubmed: 31755151
Vet J. 2013 Oct;198(1):141-7
pubmed: 23891138
Inflamm Regen. 2017 Jun 5;37:14
pubmed: 29259713
Vet Q. 2020 Dec;40(1):97-107
pubmed: 32189583
PLoS One. 2016 Aug 24;11(8):e0161877
pubmed: 27556734
J Invest Dermatol. 2008 Jan;128(1):59-66
pubmed: 17597813

Auteurs

Iva Cvitas (I)

Vetsuisse Faculty, Division of Neurological Sciences, Department of Clinical Research and Veterinary Public Health, University of Bern, Bern, Switzerland.
Graduate School for Cellular and Biomedical Sciences, University of Bern, Bern, Switzerland.

Simone Oberhaensli (S)

Interfaculty Bioinformatics Unit and SIB Swiss Institute of Bioinformatics, University of Bern, Bern, Switzerland.

Tosso Leeb (T)

Vetsuisse Faculty, Department of Clinical Research and Veterinary Public Health, Institute of Genetics, University of Bern, Bern, Switzerland.
Dermfocus, Vetsuisse Faculty, University of Bern, Bern, Switzerland.

Eliane Marti (E)

Vetsuisse Faculty, Division of Neurological Sciences, Department of Clinical Research and Veterinary Public Health, University of Bern, Bern, Switzerland.
Dermfocus, Vetsuisse Faculty, University of Bern, Bern, Switzerland.

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Classifications MeSH