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Multifaceted imaging strategies for clinical trials of knee osteoarthritis-a tightly interlinked value and precision
Felix Eckstein1,2, Ali Mobasheri3,4,5, Mikael P Boesen6,7
1Center for Anatomy and Cell Biology & Ludwig Boltzmann Institute for Arthritis and Rehabilitation (LBIAR), Research Program of Musculoskeletal Imaging, Paracelsus Medical University, Strubergasse 19, 5020, Salzburg, Austria. felix.eckstein@pmu.ac.at.
Abstract:
Osteoarthritis is a debilitating, whole-organ disease that involves all osteoarticular tissues. No effective treatments have yet been approved by the regulatory agencies for modifying the natural history of this disease and its structural progression. In this whitepaper, we will summarize concepts of "multi-faceted" (multi-contrast) magnetic resonance imaging (MRI), with a focus on its application in osteoarthritis clinical trials. The process described here encompasses a tightly interlinked value and precision chain, where all elements must be aligned seamlessly for the trial to succeed. The procedure should begin with careful patient characterization and selection, potentially aided by (multifaceted) imaging, so that the disease (sub-) types in these potential participant will match the mechanism of action (MOA) of the medical investigational product (i.e., the drug studied). This should be followed by a comprehensive yet efficient MRI acquisition protocol, employing sequences with various contrasts that permit the characterization of imaging-based joint pathologies and evaluation of the drug's MOA. Suitable image analysis tools must be employed, ideally adhering to regulatory compliance standards. Multiple validated endpoints can be derived from the various (multifaceted) contrasts, to be potentially combined to multi-component or composite endpoints, based on stringent a-priori rules. In conclusion, a robust value and precision chain needs to be fully functional for a disease-modifying osteoarthritis trial to be successful. Participant selection must be mindful of the drug's MOA, and a well-aligned and custom-tailored "multifaceted" image acquisition protocol, suitable image analysis tools, and meaningful endpoints should be in place, which should match the specific image contrasts.
Insights
Multi-faceted magnetic resonance imaging (MRI) is crucial for osteoarthritis clinical trials. Precise patient selection and tailored imaging protocols are essential for developing effective disease-modifying osteoarthritis drugs.
Area of Science:
- Orthopedics and Musculoskeletal Diseases
- Radiology and Medical Imaging
Background:
- Osteoarthritis is a progressive, whole-organ disease affecting all joint tissues.
- Current treatments lack the ability to alter the disease's natural course or structural progression.
- Regulatory agencies have not yet approved disease-modifying osteoarthritis treatments.
Purpose of the Study:
- To outline the application of multi-faceted (multi-contrast) magnetic resonance imaging (MRI) in osteoarthritis clinical trials.
- To emphasize the importance of a cohesive value and precision chain for trial success.
- To detail the alignment of patient selection, imaging protocols, and analysis for drug development.
Main Methods:
- Patient characterization and selection informed by imaging to match disease subtypes with drug mechanisms of action (MOA).
- Development of comprehensive MRI acquisition protocols using diverse contrasts for pathology and MOA assessment.
- Implementation of suitable, regulatory-compliant image analysis tools.
- Derivation of validated endpoints from multi-faceted contrasts, potentially forming composite endpoints.
Main Results:
- A tightly integrated value and precision chain is necessary for successful disease-modifying osteoarthritis trials.
- Careful participant selection based on MOA is critical.
- Well-aligned, custom-tailored MRI protocols, analysis tools, and endpoints are essential.
Conclusions:
- Successful disease-modifying osteoarthritis trials require a fully functional value and precision chain.
- Integrating multi-faceted MRI with precise patient selection and tailored protocols enhances drug development.
- Alignment across all trial elements, from imaging to endpoints, is key to evaluating drug efficacy.
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