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Factors Influencing the Total Functional Capacity Score as a Critical Endpoint in Huntington's Disease Research
Jannis Achenbach1, Benjamin Stodt2, Carsten Saft1
1Department of Neurology, Huntington Center North Rhine-Westphalia, St. Josef-Hospital Bochum, Ruhr-University Bochum, Gudrunstraße 56, 44791 Bochum, Germany.
Insights
Huntington's disease (HD) progression is primarily driven by age and CAG-repeat length, impacting the Total Functional Capacity (TFC) score. Longer CAG-repeats correlate with faster functional decline in HD patients.
Area of Science:
- Neuroscience
- Genetics
- Clinical Neurology
Background:
- The Total Functional Capacity (TFC) score is a key metric in Huntington's disease (HD) research and clinical trials.
- TFC staging (1-5) is FDA-accepted for defining disease progression.
- Understanding factors influencing TFC is crucial for HD management and therapeutic development.
Purpose of the Study:
- To quantify the effects of age and CAG-repeat length on TFC in HD.
- To investigate the influence of neuropsychiatric, educational, and cognitive factors on TFC.
- To analyze TFC in pre-manifest HD stages.
Main Methods:
- Moderated regression analysis to assess age and CAG-repeat interaction on TFC.
- Simple slope analysis to visualize interaction effects.
- Categorization of motor-manifest patients into five TFC stages.
- Analysis of pre-manifest data based on years to onset and Cognitive Assessment Battery (CAP) scores.
Main Results:
- Age, CAG-repeat length, and their interaction significantly explained 20.9% of TFC variance in 10,314 manifest HD patients.
- CAG-repeat length was a strong predictor (∆R² = 0.132, p < 0.001).
- Neuropsychiatric and cognitive symptom variance differed significantly across TFC stages; pre-manifest participants showed peak neuropsychiatric changes 5-20 years before onset.
Conclusions:
- Total Functional Capacity (TFC) is predominantly influenced by neurobiological factors: age and CAG-repeat length.
- Individuals with higher CAG-repeat lengths exhibit a more rapid decline in functional capacity.
- The study reaffirms TFC as a reliable measure for tracking Huntington's disease progression.
Abstract:
Background: The Total Functional Capacity (TFC) score is commonly used in Huntington's disease (HD) research. The classification separates each disease stage (1-5), e.g., as an inclusion criterion or endpoint in clinical trials accepted by the Food and Drug Administration (FDA). In addition to the quantification of age- and CAG-repeat-dependent effects as well as interacting effects of both on the TFC, we aimed to investigate factors influencing the TFC, such as neuropsychiatric, educational, and cognitive disease burden using data from the largest HD observational study to date. In addition, we analyzed data from pre-manifest stages to investigate the influence of the above-mentioned factors on the TFC in that stage. Methods: A moderated regression analysis was conducted to analyze the interaction effects of age and CAG-repeat length on the TFC in HD patients. A simple slope analysis was calculated to illustrate the effects. Depending on TFC results, motor-manifest patients were grouped into five stages. Data from pre-manifest participants were analyzed with regard to years to onset and CAP scores. Results: We identified N = 10,314 participants as manifest HD. A significant part of variance on the TFC was explained by age (R2 = 0.029, F (1;10,281) = 308.02, p < 0.001), CAG-repeat length (∆R2 = 0.132, ∆F (1;10,280) = 1611.22, p < 0.001), and their interaction (∆R2 = 0.049, ∆F (1;10,279) = 634.12, p < 0.001). The model explained altogether 20.9% of the TFC score's variance (F = 907.60, p < 0.001). Variance of psychiatric and cognitive symptoms significantly differed between stages. Exploratory analysis of median data in pre-manifest participants revealed the highest scores for neuropsychiatric changes between 5 to <20 years from the disease onset. Conclusions: TFC is mainly explained by the neurobiological factors, CAG-repeat length, and age, with subjects having more CAG-repeats showing a faster decline in function. Our study confirms TFC as a robust measure of progression in manifest HD.
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