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Animal models for arthritis: innovative tools for prevention and treatment
George Kollias1, Piyi Papadaki, Florence Apparailly
1Biomedical Sciences Research Center Alexander Fleming,Institute of Immunology, Vari-Athens, Greece. g.kollias@fleming.gr
Abstract:
The development of novel treatments for rheumatoid arthritis (RA) requires the interplay between clinical observations and studies in animal models. Given the complex molecular pathogenesis and highly heterogeneous clinical picture of RA, there is an urgent need to dissect its multifactorial nature and to propose new strategies for preventive, early and curative treatments. Research on animal models has generated new knowledge on RA pathophysiology and aetiology and has provided highly successful paradigms for innovative drug development. Recent focus has shifted towards the discovery of novel biomarkers, with emphasis on presymptomatic and emerging stages of human RA, and towards addressing the pathophysiological mechanisms and subsequent efficacy of interventions that underlie different disease variants. Shifts in the current paradigms underlying RA pathogenesis have also led to increased demand for new (including humanised) animal models. There is therefore an urgent need to integrate the knowledge on human and animal models with the ultimate goal of creating a comprehensive 'pathogenesis map' that will guide alignment of existing and new animal models to the subset of disease they mimic. This requires full and standardised characterisation of all models at the genotypic, phenotypic and biomarker level, exploiting recent technological developments in 'omics' profiling and computational biology as well as state of the art bioimaging. Efficient integration and dissemination of information and resources as well as outreach to the public will be necessary to manage the plethora of data accumulated and to increase community awareness and support for innovative animal model research in rheumatology.
Insights
Developing new rheumatoid arthritis (RA) treatments needs integrated human and animal model research. Standardized characterization and data sharing are crucial for creating a comprehensive pathogenesis map to guide future RA research and drug development.
Area of Science:
- Rheumatology
- Immunology
- Translational Medicine
Background:
- Rheumatoid arthritis (RA) presents complex molecular pathogenesis and heterogeneous clinical manifestations.
- Existing animal models have advanced RA understanding and drug development but require refinement.
- There is a critical need for new strategies in preventive, early, and curative RA treatments.
Purpose of the Study:
- To highlight the necessity of integrating human and animal model research for advancing RA treatment development.
- To emphasize the need for a comprehensive 'pathogenesis map' for RA.
- To advocate for standardized characterization of animal models to align them with specific RA disease subsets.
Main Methods:
- Leveraging knowledge from both human clinical observations and animal model studies.
- Utilizing 'omics' profiling, computational biology, and advanced bioimaging for model characterization.
- Integrating and disseminating data from various research models and technological advancements.
Main Results:
- Animal models have significantly contributed to understanding RA pathophysiology and developing novel therapeutics.
- Recent research focuses on identifying biomarkers for early RA stages and understanding disease variants.
- There is an increasing demand for novel, including humanized, animal models that better mimic human RA.
Conclusions:
- Integrating human and animal model data is essential for creating a comprehensive RA pathogenesis map.
- Standardized genotypic, phenotypic, and biomarker characterization of all models is required.
- Enhanced data integration, resource sharing, and public outreach are vital for advancing innovative RA research using animal models.