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Effects of Biological Therapies on Molecular Features of Rheumatoid Arthritis
Chary Lopez-Pedrera1, Nuria Barbarroja1, Alejandra M Patiño-Trives1
1Rheumatology Service, Reina Sofia Hospital, Maimonides Institute for Research in Biomedicine of Cordoba (IMIBIC), University of Cordoba, E-14004 Córdoba, Spain.
Abstract:
Rheumatoid arthritis (RA) is an autoimmune and chronic inflammatory disease primarily affecting the joints, and closely related to specific autoantibodies that mostly target modified self-epitopes. Relevant findings in the field of RA pathogenesis have been described. In particular, new insights come from studies on synovial fibroblasts and cells belonging to the innate and adaptive immune system, which documented the aberrant production of inflammatory mediators, oxidative stress and NETosis, along with relevant alterations of the genome and on the regulatory epigenetic mechanisms. In recent years, the advances in the understanding of RA pathogenesis by identifying key cells and cytokines allowed the development of new targeted disease-modifying antirheumatic drugs (DMARDs). These drugs considerably improved treatment outcomes for the majority of patients. Moreover, numerous studies demonstrated that the pharmacological therapy with biologic DMARDs (bDMARDs) promotes, in parallel to their clinical efficacy, significant improvement in all these altered molecular mechanisms. Thus, continuous updating of the knowledge of molecular processes associated with the pathogenesis of RA, and on the specific effects of bDMARDs in the correction of their dysregulation, are essential in the early and correct approach to the treatment of this complex autoimmune disorder. The present review details basic mechanisms related to the physiopathology of RA, along with the core mechanisms of response to bDMARDs.
Insights
Rheumatoid arthritis (RA) is an autoimmune disease impacting joints. Biologic disease-modifying antirheumatic drugs (bDMARDs) show efficacy by improving molecular mechanisms underlying RA.
Area of Science:
- Immunology
- Rheumatology
- Molecular Biology
Background:
- Rheumatoid arthritis (RA) is a chronic autoimmune inflammatory joint disease.
- RA pathogenesis involves synovial fibroblasts, immune cells, inflammatory mediators, oxidative stress, NETosis, and epigenetic alterations.
- Autoantibodies targeting modified self-epitopes are closely linked to RA.
Purpose of the Study:
- To review the basic mechanisms of RA physiopathology.
- To detail the core response mechanisms to biologic disease-modifying antirheumatic drugs (bDMARDs).
- To highlight the importance of understanding molecular processes for RA treatment.
Main Methods:
- Literature review of recent findings in RA pathogenesis.
- Analysis of studies on synovial fibroblasts and immune cells in RA.
- Examination of molecular mechanisms targeted by bDMARDs.
Main Results:
- Advances in understanding RA pathogenesis have led to targeted therapies.
- Biologic DMARDs (bDMARDs) demonstrate clinical efficacy and improve molecular dysregulation.
- bDMARDs positively impact inflammatory mediators, oxidative stress, and epigenetic mechanisms in RA.
Conclusions:
- Continuous updating of RA molecular processes and bDMARD effects is crucial for effective treatment.
- Understanding RA pathogenesis aids in developing targeted therapies.
- bDMARDs offer significant improvements in RA treatment outcomes by addressing underlying molecular issues.
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