Unraveling IFN-I response dynamics and TNF crosstalk in the pathophysiology of systemic lupus erythematosus

Publication date

2024

Authors

Van Eyndhoven, Laura C.
Chouri, Eleni
Matos, Catarina I.
Pandit, Aridaman
Radstake, Timothy R D JISNI 0000000382903168
Broen, Jasper C.A.ISNI 0000000392193091
Singh, Abhyudai
Tel, Jurjen

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Advisors

Supervisors

Document Type

Article

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Abstract

Introduction: The innate immune system serves the crucial first line of defense against a wide variety of potential threats, during which the production of pro-inflammatory cytokines IFN-I and TNFα are key. This astonishing power to fight invaders, however, comes at the cost of risking IFN-I-related pathologies, such as observed during autoimmune diseases, during which IFN-I and TNFα response dynamics are dysregulated. Therefore, these response dynamics must be tightly regulated, and precisely matched with the potential threat. This regulation is currently far from understood. Methods: Using droplet-based microfluidics and ODE modeling, we studied the fundamentals of single-cell decision-making upon TLR signaling in human primary immune cells (n = 23). Next, using biologicals used for treating autoimmune diseases [i.e., anti-TNFα, and JAK inhibitors], we unraveled the crosstalk between IFN-I and TNFα signaling dynamics. Finally, we studied primary immune cells isolated from SLE patients (n = 8) to provide insights into SLE pathophysiology. Results: single-cell IFN-I and TNFα response dynamics display remarkable differences, yet both being highly heterogeneous. Blocking TNFα signaling increases the percentage of IFN-I-producing cells, while blocking IFN-I signaling decreases the percentage of TNFα-producing cells. Single-cell decision-making in SLE patients is dysregulated, pointing towards a dysregulated crosstalk between IFN-I and TNFα response dynamics. Discussion: We provide a solid droplet-based microfluidic platform to study inherent immune secretory behaviors, substantiated by ODE modeling, which can challenge the conceptualization within and between different immune signaling systems. These insights will build towards an improved fundamental understanding on single-cell decision-making in health and disease.

Keywords

droplet-based microfluidics, heterogeneity, ODE modeling, plasmacytoid dendritic cells, single-cell analysis, systemic lupus erythematosus, type I interferon, Immunology and Allergy, Immunology

Citation

Van Eyndhoven, L C, Chouri, E, Matos, C I, Pandit, A, Radstake, T R D J, Broen, J C A, Singh, A & Tel, J 2024, 'Unraveling IFN-I response dynamics and TNF crosstalk in the pathophysiology of systemic lupus erythematosus', Frontiers in Immunology, vol. 15, 1322814. https://doi.org/10.3389/fimmu.2024.1322814