Lymphocyte subsets in the peripheral blood are disturbed in systemic sclerosis patients and can be changed by immunosuppressive medication.
Michael GernertHans-Peter TonyEva Christina SchwaneckOttar GadeholtMatthias FröhlichJan PortegysPatrick-Pascal StrunzSchmalzing MarcPublished in: Rheumatology international (2021)
Systemic sclerosis (SSc) is a severe chronic disease with a broad spectrum of clinical manifestations. SSc displays disturbed lymphocyte homeostasis. Immunosuppressive medications targeting T or B cells can improve disease manifestations. SSc clinical manifestations and immunosuppressive medication in itself can cause changes in lymphocyte subsets. The aim of this study was to investigate peripheral lymphocyte homeostasis in SSc with regards to the immunosuppression and to major organ involvement. 44 SSc patients and 19 healthy donors (HD) were included. Immunophenotyping of peripheral whole blood by fluorescence-activated cell sorting was performed. Cytokine secretions of stimulated B cell cultures were measured. SSc patients without immunosuppression compared to HD displayed lower γδ T cells, lower T helper cells (CD3+/CD4+), lower transitional B cells (CD19+/CD38++/CD10+/IgD+), lower pre-switched memory B cells (CD19+/CD27+/IgD+), and lower post-switched memory B cells (CD19+/CD27+/IgD-). There was no difference in the cytokine production of whole B cell cultures between SSc and HD. Within the SSc cohort, mycophenolate intake was associated with lower T helper cells and lower NK cells (CD56+/CD3-). The described differences in peripheral lymphocyte subsets between SSc and HD generate further insight in SSc pathogenesis. Lymphocyte changes under effective immunosuppression indicate how lymphocyte homeostasis in SSc might be restored.
Keyphrases
- peripheral blood
- systemic sclerosis
- end stage renal disease
- newly diagnosed
- interstitial lung disease
- ejection fraction
- chronic kidney disease
- peritoneal dialysis
- stem cells
- prognostic factors
- healthcare
- emergency department
- induced apoptosis
- working memory
- oxidative stress
- regulatory t cells
- single cell
- drug delivery
- nk cells
- single molecule
- rheumatoid arthritis
- signaling pathway
- cell therapy
- cancer therapy
- electronic health record
- flow cytometry
- adverse drug
- drug induced
- endoplasmic reticulum stress