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Modeling Charcot-Marie-Tooth Disease In Vitro by Transfecting Mouse Primary Motoneurons
Published on: January 7, 2019
Development and validation of the Charcot-Marie-Tooth Disease Infant Scale
Melissa R Mandarakas1,2, Manoj P Menezes1,2, Kristy J Rose1,2
1The University of Sydney, Sydney, New South Wales, Australia.
Insights
Early intervention for Charcot-Marie-Tooth disease (CMT) is crucial. The new Charcot-Marie-Tooth disease Infant Scale (CMTInfS) is a reliable tool to measure disease severity in infants and young children with CMT.
Area of Science:
- Neurology
- Genetics
- Pediatrics
Background:
- Charcot-Marie-Tooth disease (CMT) often presents in early childhood, necessitating early intervention.
- Current outcome measures for pediatric CMT are limited, especially for infants.
- Identifying and validating sensitive tools for early disease assessment is critical for therapeutic development.
Purpose of the Study:
- To develop and validate a functional disease severity scale for infants and young children with CMT.
- To establish a reliable and sensitive outcome measure for early-onset neuropathies.
Main Methods:
- Systematic literature review to identify preliminary items.
- Expert clinician and researcher peer review.
- Pilot testing and psychometric validation including Rasch analysis, reliability, and validity studies.
- Recruitment of 26 CMT cases, 7 at-risk, and 95 controls.
Main Results:
- A 15-item Charcot-Marie-Tooth disease Infant Scale (CMTInfS) was developed.
- The CMTInfS demonstrated excellent psychometric properties, including unidimensionality and good model fit.
- High intra- and inter-rater reliability (ICC > 0.99) and significant discriminant ability between CMT patients and controls (P = 0.006).
- Convergent validity with the CMT Pediatric Scale (CMTPedS) was good (r = 0.76, P = 0.01).
Conclusions:
- The CMTInfS is a psychometrically robust, reliable, and sensitive functional outcome measure for early-onset CMT and related inherited neuropathies.
- This scale can aid in early diagnosis, monitoring disease progression, and evaluating therapeutic interventions in young children.
- The CMTInfS provides a much-needed tool for clinical trials in the pediatric CMT population.
Abstract:
Many genetic subtypes of Charcot-Marie-Tooth disease (CMT) show signs of symptomatic disease during the earliest years of life. This might be the ideal time to intervene before progression of clinical sequelae due to demyelination and axonal loss. In the absence of disease-specific clinical trial outcome measures for CMT during infancy and early childhood the aim of this study was to develop and validate a functional measure of disease severity, known as the Charcot-Marie-Tooth disease Infant Scale (CMTInfS). Development projects involved identification of a preliminary pool of 31 items representing the range of disability in affected patients aged 0-4 years from a systematic review of the literature, peer review by 12 expert clinicians and researchers in the field, design of a scoring algorithm and pilot testing in 22 participants. Subsequently, a series of validation projects were conducted based on 128 assessments of: 26 confirmed cases of inherited neuropathy (17 CMT1A, one CMT1B, one CMT1D, one CMT2C, one CMT2S, two CMT4C, one CMTX3, one Riboflavin Transporter Deficiency Type 2, and one unidentified mutation); seven 'at risk' cases and 95 unaffected healthy controls recruited through the NIH-funded Inherited Neuropathies Consortium. Validation projects included: Item, Factor and Rasch analysis, intra- and inter-rater reliability, discriminant ability and convergent validity with the CMT Pediatric Scale (CMTPedS) for children aged 3-4 years. Development and validation projects produced a psychometrically robust 15-item scale. Rasch analysis supported the viability of the CMTInfS as a unidimensional measure of disease severity and showed good overall model fit, no evidence of misfitting items or persons and was well targeted for affected children. The CMTInfS demonstrated high intra-rater reliability [intraclass correlation coefficient (ICC)3,1 0.999, 95% confidence interval 0.996-1.000) and inter-rater reliability (ICC2,1 0.997, 95% confidence interval 0.992-0.999). The CMTInfS was able to discriminate between the CMT group and controls (P = 0.006), and convergent validity demonstrated good agreement between CMTInfS and CMTPedS scores (r = 0.76, P = 0.01). The final version of the CMTInfS requires 20 min to administer and is a reliable and sensitive functional outcome measure for early onset CMT and related neuropathies.10.1093/brain/awy280_video1awy280media15970672819001.
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