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Controlling Parkinson's Disease With Adaptive Deep Brain Stimulation
Published on: July 16, 2014
Designing the First Trials for Parkinson's Prevention
Grace F Crotty1,2,3, Samuel J Ayer1, Michael A Schwarzschild1,2
1Molecular Neurobiology Laboratory, MassGeneral Institute for Neurodegenerative Disease, Department of Neurology, Massachusetts General Hospital, Charlestown, MA, USA.
Abstract:
For decades the greatest goal of Parkinson's disease (PD) research has often been distilled to the discovery of treatments that prevent the disease or its progression. However, until recently only the latter has been realistically pursued through randomized clinical trials of candidate disease-modifying therapy (DMT) conducted on individuals after they received traditional clinical diagnosis of PD (i.e., tertiary prevention trials). Now, in light of major advances in our understanding of the prodromal stages of PD, as well as its genetics and biomarkers, the first secondary prevention trials for PD are beginning. In this review, we take stock of DMT trials to date, summarize the breakthroughs that allow the identification of cohorts at high risk of developing a traditional diagnosis of PD, and describe key design elements of secondary prevention trials and how they depend on the prodromal stage being targeted. These elements address whom to enroll, what interventions to test, and how to measure secondary prevention (i.e., slowed progression during the prodromal stages of PD). Although these design strategies, along with the biological definition, subtype classification, and staging of the disease are evolving, all are driven by continued progress in the underlying science and integrated by a broad motivated community of stakeholders. While considerable methodological challenges remain, opportunities to move clinical trials of DMT to earlier points in the disease process than ever before have begun to unfold, and the prospects for PD prevention are nowtangible.
Insights
Parkinson's disease (PD) research is shifting towards secondary prevention trials targeting early disease stages. Advances in biomarkers and genetics enable identifying high-risk individuals for new therapeutic interventions.
Area of Science:
- Neuroscience
- Clinical Trials
- Biomarkers
Background:
- Historically, Parkinson's disease (PD) research focused on tertiary prevention (slowing progression after diagnosis).
- Recent scientific advances have illuminated prodromal PD stages, genetics, and biomarkers.
- This progress enables a paradigm shift towards earlier intervention strategies.
Purpose of the Study:
- To review existing disease-modifying therapy (DMT) trials in Parkinson's disease.
- To summarize breakthroughs enabling high-risk cohort identification for secondary prevention.
- To outline key design elements for PD secondary prevention trials targeting prodromal stages.
Main Methods:
- Review of current and past DMT trials for Parkinson's disease.
- Analysis of scientific literature on PD prodromal stages, genetics, and biomarkers.
- Synthesis of design considerations for secondary prevention trials, including enrollment, interventions, and outcome measures.
Main Results:
- The advent of secondary prevention trials for PD is imminent, targeting individuals at high risk before clinical diagnosis.
- Key design elements for these trials are being established, focusing on specific prodromal stages.
- Methodological challenges persist, but opportunities for earlier intervention are expanding.
Conclusions:
- Scientific progress is enabling tangible prospects for Parkinson's disease prevention.
- Secondary prevention trials represent a significant advancement in PD therapeutic development.
- A collaborative effort is crucial for navigating challenges and realizing the potential of early PD intervention.
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