Impaired expression of metallothioneins contributes to allergen-induced inflammation in patients with atopic dermatitis.
Sofia SirventSócrates Herrera ValenciaEmma CordenYing TeoJames DaviesKalum ClaytonEleanor G SeabyChester LaiSarah EnnisRfeef AlyamiGemma DouilhetLareb S N DeanMatthew LoxhamSarah HorswillEugene HealyGraham RobertsNigel J HallPeter S FriedmannHarinder SinghClare L BennettMichael R Ardern-JonesMarta E PolakPublished in: Nature communications (2023)
Regulation of cutaneous immunity is severely compromised in inflammatory skin disease. To investigate the molecular crosstalk underpinning tolerance versus inflammation in atopic dermatitis, we utilise a human in vivo allergen challenge study, exposing atopic dermatitis patients to house dust mite. Here we analyse transcriptional programmes at the population and single cell levels in parallel with immunophenotyping of cutaneous immunocytes revealed a distinct dichotomy in atopic dermatitis patient responsiveness to house dust mite challenge. Our study shows that reactivity to house dust mite was associated with high basal levels of TNF-expressing cutaneous Th17 T cells, and documents the presence of hub structures where Langerhans cells and T cells co-localised. Mechanistically, we identify expression of metallothioneins and transcriptional programmes encoding antioxidant defences across all skin cell types, that appear to protect against allergen-induced inflammation. Furthermore, single nucleotide polymorphisms in the MTIX gene are associated with patients who did not react to house dust mite, opening up possibilities for therapeutic interventions modulating metallothionein expression in atopic dermatitis.
Keyphrases
- atopic dermatitis
- allergic rhinitis
- oxidative stress
- single cell
- poor prognosis
- diabetic rats
- health risk assessment
- end stage renal disease
- human health
- high glucose
- health risk
- gene expression
- endothelial cells
- induced apoptosis
- transcription factor
- chronic kidney disease
- peritoneal dialysis
- ejection fraction
- rheumatoid arthritis
- newly diagnosed
- cell death
- binding protein
- high throughput
- case report
- climate change
- heat shock
- heavy metals
- high resolution
- signaling pathway
- mesenchymal stem cells
- cell therapy
- prognostic factors
- soft tissue
- flow cytometry
- physical activity
- stem cells
- endoplasmic reticulum stress
- cell proliferation
- bone marrow
- cell cycle arrest