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Updated: May 9, 2026

Induction and Diverse Assessment Indicators of Experimental Autoimmune Encephalomyelitis
Published on: September 9, 2022
Comparative assessment of PDE 4 and 7 inhibitors as therapeutic agents in experimental autoimmune encephalomyelitis
C González-García1, B Bravo, A Ballester
1Unidad de Regulación Génica, UFIEC, Instituto de Salud Carlos III, Madrid, Spain.
Background And Purpose:
PDE4 inhibition suppresses experimental autoimmune encephalomyelitis (EAE), an animal model of multiple sclerosis (MS). However, side effects hinder PDE4 inhibitors clinical use. PDE7 inhibition might constitute an alternative therapeutic strategy, but few data about the anti-inflammatory potential of PDE7 inhibitors are currently available. We have used the EAE model to perform a comparative evaluation of PDE4 and PDE7 inhibition as strategies for MS treatment.
Experimental Approach:
Two PDE7 inhibitors, the sulfonamide derivative BRL50481 and the recently described quinazoline compound TC3.6, were assayed to modulate EAE in SJL mice, in comparison with the well-known PDE4 inhibitor Rolipram. We evaluated clinical signs, presence of inflammatory infiltrates in CNS and anti-inflammatory markers. We also analysed the effect of these inhibitors on the inflammatory profile of spleen cells in vitro.
Key Results:
TC3.6 prevented EAE with efficacy similar to Rolipram, while BRL50481 had no effect on the disease. Differences between both PDE7 inhibitors are discussed. Data from Rolipram and TC3.6 showed that PDE4 and PDE7 inhibition work through both common and distinct pathways. Rolipram administration caused an increase in IL-10 and IL-27 expression which was not found after TC3.6 treatment. On the other hand, both inhibitors reduced IL-17 levels, prevented infiltration in CNS and increased the expression of the T regulator cell marker Foxp3.
Conclusions And Implications:
These results provide new information about the effects of Rolipram on EAE, underline PDE7 inhibition as a new therapeutic target for inflammatory diseases and show the value of TC3.6 to prevent EAE, with possible consequences for new therapeutic tools in MS.
Insights
Phosphodiesterase 7 (PDE7) inhibition, specifically with TC3.6, shows promise for treating multiple sclerosis (MS) by reducing inflammation in experimental autoimmune encephalomyelitis (EAE). This offers a potential alternative to PDE4 inhibitors due to fewer side effects.
Area of Science:
- Neuroimmunology
- Pharmacology
- Inflammation Research
Background:
- Phosphodiesterase 4 (PDE4) inhibitors are effective against experimental autoimmune encephalomyelitis (EAE), a model for multiple sclerosis (MS), but clinical use is limited by side effects.
- Phosphodiesterase 7 (PDE7) inhibition presents a potential alternative therapeutic strategy for MS, yet its anti-inflammatory effects require further investigation.
Purpose of the Study:
- To comparatively evaluate the efficacy of PDE4 and PDE7 inhibition in a mouse model of MS.
- To explore the therapeutic potential of PDE7 inhibitors as an alternative to PDE4 inhibitors for MS treatment.
Main Methods:
- Assay of two PDE7 inhibitors (BRL50481 and TC3.6) and one PDE4 inhibitor (Rolipram) in the EAE mouse model.
- Evaluation of clinical symptoms, central nervous system (CNS) inflammatory infiltrates, and anti-inflammatory markers.
- In vitro analysis of inhibitor effects on spleen cell inflammatory profiles.
Main Results:
- TC3.6 demonstrated efficacy in preventing EAE, comparable to Rolipram; BRL50481 showed no effect.
- Both Rolipram and TC3.6 reduced IL-17 levels, prevented CNS infiltration, and increased Foxp3 expression.
- Distinct pathways were observed: Rolipram increased IL-10 and IL-27, which TC3.6 did not.
Conclusions:
- PDE7 inhibition, particularly with TC3.6, is a viable therapeutic target for inflammatory diseases like MS.
- TC3.6 shows significant value in preventing EAE, suggesting potential for novel therapeutic strategies in MS.
- Comparative analysis reveals both common and distinct mechanisms of PDE4 and PDE7 inhibition in EAE.
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