Long-term suppression of EAE relapses by pharmacological impairment of epitope spreading
Background And Purpose:
Immune events sustaining dendritic cell (DC)-dependent epitope spreading (ES) are of key relevance to the development of relapses during multiple sclerosis (MS). Although no drugs are currently available to target ES, its inhibition would represent a major advancement in MS therapy. Inhibitors of the enzyme PARP-1 afford protection in animal models of MS, such as experimental autoimmune encephalomyelitis (EAE). These drugs epigenetically impair antigen presentation by DCs, but whether these drugs affect ES is unknown. Here, we investigated whether short-term treatments with these compounds would impair ES, thereby preventing EAE relapses.
Experimental Approach:
We used a model of relapsing EAE in SJL mice and also adopted in vivo and ex vivo models of DC-dependent T-cell polarization. The effect of PARP-1 inhibitors on ES was evaluated at the humoral and cellular level.
Key Results:
Short-term treatments with PARP-1 inhibitors during the acute phase of relapsing EAE of mice induced, at later times, more tolerogenic DCs, increased numbers of Treg cells and impairment of ES at the humoral and cellular level. These effects are followed by long-lasting reduction of relapse severity and incidence, although drug treatment had been discontinued for several weeks. PARP-1 inhibitors also induced tolerogenic DCs and increased Treg cells number and function in a model of ovalbumin immunization.
Conclusions And Implications:
Our data emphasize the therapeutic potential of PARP-1 inhibitors in the treatment of relapsing-remitting MS and additional ES-driven autoimmune disorders.
Insights
PARP-1 inhibitors reduce multiple sclerosis relapses by impairing dendritic cell-dependent epitope spreading. Short-term treatment with these drugs promotes tolerogenic dendritic cells and regulatory T cells, leading to lasting EAE relapse reduction.
Area of Science:
- Neuroimmunology
- Autoimmunity
- Dendritic Cell Biology
Background:
- Epitope spreading (ES) drives multiple sclerosis (MS) relapses.
- Current MS therapies do not target ES.
- PARP-1 inhibitors show promise in MS animal models by affecting antigen presentation.
Purpose of the Study:
- Investigate if PARP-1 inhibitors impair epitope spreading (ES).
- Determine if inhibiting ES prevents relapses in experimental autoimmune encephalomyelitis (EAE).
Main Methods:
- Relapsing EAE mouse model (SJL mice).
- In vivo and ex vivo DC-T cell polarization models.
- Humoral and cellular evaluation of ES and PARP-1 inhibitor effects.
Main Results:
- Short-term PARP-1 inhibitor treatment induced tolerogenic DCs and increased Treg cells.
- Impaired humoral and cellular epitope spreading (ES) was observed.
- Reduced relapse severity and incidence in EAE, persisting after drug cessation.
Conclusions:
- PARP-1 inhibitors demonstrate therapeutic potential for relapsing-remitting MS.
- These inhibitors may also benefit other epitope spreading-driven autoimmune disorders.
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