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Published on: March 8, 2024
VISTA: A Target to Manage the Innate Cytokine Storm
Mohamed A ElTanbouly1, Yanding Zhao2, Evelien Schaafsma3
1Department of Microbiology and Immunology, Norris Cotton Cancer Center, Geisel School of Medicine at Dartmouth, Lebanon, NH, United States.
Abstract:
In recent years, the success of immunotherapy targeting immunoregulatory receptors (immune checkpoints) in cancer have generated enthusiastic support to target these receptors in a wide range of other immune related diseases. While the overwhelming focus has been on blockade of these inhibitory pathways to augment immunity, agonistic triggering via these receptors offers the promise of dampening pathogenic inflammatory responses. V-domain Ig suppressor of T cell activation (VISTA) has emerged as an immunoregulatory receptor with constitutive expression on both the T cell and myeloid compartments, and whose agonistic targeting has proven a unique avenue relative to other checkpoint pathways to suppress pathologies mediated by the innate arm of the immune system. VISTA agonistic targeting profoundly changes the phenotype of human monocytes towards an anti-inflammatory cell state, as highlighted by striking suppression of the canonical markers CD14 and Fcγr3a (CD16), and the almost complete suppression of both the interferon I (IFN-I) and antigen presentation pathways. The insights from these very recent studies highlight the impact of VISTA agonistic targeting of myeloid cells, and its potential therapeutic implications in the settings of hyperinflammatory responses such as cytokine storms, driven by dysregulated immune responses to viral infections (with a focus on COVID-19) and autoimmune diseases. Collectively, these findings suggest that the VISTA pathway plays a conserved, non-redundant role in myeloid cell function.
Insights
Agonistic targeting of V-domain Ig suppressor of T cell activation (VISTA) on myeloid cells shifts them to an anti-inflammatory state. This approach shows potential for treating hyperinflammatory diseases like cytokine storms and autoimmune conditions.
Area of Science:
- Immunology
- Molecular Biology
- Pathology
Background:
- Immunotherapy success in cancer has spurred interest in immune checkpoints for other diseases.
- While blocking immune checkpoints boosts immunity, activating them (agonistic targeting) can reduce inflammation.
Purpose of the Study:
- To investigate the therapeutic potential of V-domain Ig suppressor of T cell activation (VISTA) agonistic targeting.
- To explore VISTA's role in modulating myeloid cell function and inflammatory responses.
Main Methods:
- Studied the effects of VISTA agonistic targeting on human monocyte phenotype.
- Analyzed changes in canonical markers (CD14, Fcγr3a/CD16) and key pathways (IFN-I, antigen presentation).
Main Results:
- VISTA agonistic targeting induced an anti-inflammatory monocyte phenotype.
- Observed significant suppression of CD14, Fcγr3a (CD16), IFN-I, and antigen presentation pathways.
Conclusions:
- VISTA agonistic targeting effectively suppresses myeloid cell-driven inflammation.
- This pathway offers a novel therapeutic strategy for hyperinflammatory conditions, including cytokine storms and autoimmune diseases.
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