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Interrogating Individual Autoreactive Germinal Centers by Photoactivation in a Mixed Chimeric Model of Autoimmunity
Published on: April 11, 2019
Trained immunity in autoinflammatory diseases: Cellular reprogramming across the monogenic-polygenic spectrum
1Immunology Division, Department of Hematology and Internal Medicine, Semmelweis University, Budapest 1088, Hungary.
European Journal of Cell Biology
|August 12, 2026
Summary
Trained immunity, an innate immune memory, contributes to chronic inflammatory diseases by altering immune cell responses. Understanding this memory may lead to new therapies for autoinflammatory conditions.
Area of Science:
- Immunology
- Epigenetics
- Metabolic reprogramming
Background:
- Trained immunity is an innate immunological memory involving epigenetic and metabolic changes.
- It enhances innate immune cell responses, contributing to chronic inflammation and autoinflammatory diseases.
- Unlike adaptive immunity, trained immunity affects innate cells and their progenitors.
Purpose of the Study:
- To review evidence linking trained immunity to monogenic and polygenic autoinflammatory diseases.
- To explore the role of trained immunity in various inflammatory conditions.
- To identify knowledge gaps and potential therapeutic strategies.
Main Methods:
- Narrative review of existing scientific literature.
- Synthesis of evidence on trained immunity in monogenic and polygenic autoinflammatory diseases.
- Analysis of data on epigenetic and metabolic reprogramming in immune cells.
Main Results:
- Strong evidence links trained immunity to mevalonate kinase deficiency.
- Moderate evidence supports its role in familial Mediterranean fever, cryopyrin-associated periodic syndromes, and TNF receptor-associated periodic syndrome.
- Convincing evidence shows its involvement in polygenic disorders like gout, atherosclerosis, obesity, and type 2 diabetes, with growing evidence in other inflammatory diseases.
Conclusions:
- Autoinflammatory diseases may result from an interplay between genetic predisposition and dysfunctional innate immune memory.
- Further research is needed on progenitor cell reprogramming, disease-specific epigenetic markers, and reversibility of trained states.
- Targeting abnormal innate immune memory could lead to novel therapeutic approaches.
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