Why the study?
The study was conducted to accurately categorize phenotypes of individuals with COL6-RDs during early life to predict long-term motor and pulmonary function, guide anticipatory care, and enhance clinical trial readiness.
Does initial maximal motor ability predict long-term functional outcome in patients with COL6-related dystrophies?
Does initial maximal motor ability predict long-term functional outcome in patients with COL6-related dystrophies?
Early maximal motor milestones can accurately categorize COL6-RD phenotypes and predict long-term motor and pulmonary outcomes, aiding in anticipatory care and clinical trial stratification.
Early motor phenotyping may refine COL6-RD prognostication; hypothesis-generating and requires prospective validation before guiding care.
OBJECTIVE: To accurately categorize the phenotypes of individuals with collagen VI-related dystrophies (COL6-RDs) during the first years of life to predict long-term motor function and pulmonary function, to provide phenotype-specific anticipatory care, and to improve clinical trial readiness. METHODS: This retrospective, multicenter, international study analyzed the relationship of long-term motor and pulmonary function with the initial maximal motor ability achieved in individuals with COL6-RD. RESULTS: We studied 119 patients with COL6-RD from Spain (n = 54) and the United States (n = 65). The early maximal motor milestones of ability to rise from the floor unassisted and ability to climb 4 steps without holding onto a railing demonstrated reliability in distinguishing between 3 COL6-RD phenotypic subgroups: (1) Ullrich congenital muscular dystrophy, (2) intermediate COL6-RD, and (3) Bethlem myopathy. Long-term motor function and pulmonary function are strongly correlated with the maximal motor ability achieved during the first years of life. Maximal motor capacity can predict other disease-relevant events such as the age at loss of ambulation and the need for the initiation of nocturnal noninvasive ventilation. CONCLUSION: This work proposes a prospective phenotypic classification for COL6-RDs that will enable an accurate prediction of a patient's COL6-RD phenotype during the first years of life. The ability to establish a patient's COL6-RD phenotypic classification early will enable a more accurate prognosis of future motor and pulmonary function, thus improving anticipatory clinical care, and it will be instrumental in aiding the design of future clinical trials by allowing early stratification of trial cohorts.
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Benito et al. (2021) studied this question.
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