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Infantile Pompe disease on ERT: update on clinical presentation, musculoskeletal management, and exercise
Laura E Case1, Alexandra A Beckemeyer, Priya S Kishnani
1Division of Physical Therapy, Department of Community and Family Medicine, Duke University Medical Center, Durham, NC 27708, USA. laura.case@duke.edu
Insights
Enzyme replacement therapy (ERT) for Pompe disease allows more children to survive infancy and walk independently. A new, distinct phenotype is emerging in these survivors, necessitating updated musculoskeletal and exercise management strategies.
Area of Science:
- Neurology
- Genetics
- Metabolic Disorders
Background:
- Pompe disease (glycogen storage disease type II) is a rare genetic disorder.
- Enzyme replacement therapy (ERT) with alglucosidase alpha has improved survival and function.
- A novel phenotype is emerging in infantile Pompe disease patients treated with ERT.
Purpose of the Study:
- To review the muscle pathology in Pompe disease and ERT's impact.
- To describe the emerging musculoskeletal and motor phenotype in ERT-treated infantile Pompe disease.
- To provide updated recommendations for musculoskeletal management and discuss exercise's role.
Main Methods:
- Literature review of Pompe disease muscle pathology.
- Analysis of clinical data on ERT-treated patients.
- Synthesis of current knowledge on musculoskeletal and exercise interventions.
Main Results:
- ERT has led to improved survival and functional gains in Pompe disease.
- A distinct phenotype, different from late-onset, is observed in infantile cases treated with ERT.
- There is a growing need for specialized musculoskeletal and exercise protocols.
Conclusions:
- Understanding ERT's effect on muscle pathology is crucial.
- The emerging phenotype requires tailored management strategies.
- Further research into exercise and musculoskeletal interventions is warranted for long-term outcomes.
Abstract:
Enzyme replacement therapy (ERT) with alglucosidase alpha, approved by the FDA in 2006, has expanded possibilities for individuals with Pompe disease (glycogen storage disease type II, GSDII, or acid maltase deficiency). Children with infantile Pompe disease are surviving beyond infancy, some achieving independent walking and functional levels never before possible. Individuals with late-onset Pompe disease are experiencing motor and respiratory improvement and/or stabilization with slower progression of impairments. A new phenotype is emerging for those with infantile Pompe disease treated with ERT. This new phenotype appears to be distinct from the late-onset phenotype rather than a shift from infantile to late-onset phenotype that might be expected from a simple diminution of symptoms with ERT. Questions arise regarding the etiology of the distinct distribution of weakness in this new phenotype, with increasing questions regarding exercise and musculoskeletal management. Answers require an increased understanding of the muscle pathology in Pompe disease, how that muscle pathology may be impacted by ERT, and the potential impact of, and need for, other clinical interventions. This article reviews the current state of knowledge regarding the pathology of muscle involvement in Pompe disease and the potential change in muscle pathology with ERT; the newly emerging musculoskeletal and gross motor phenotype of infantile Pompe disease treated with ERT; updated recommendations regarding musculoskeletal management in Pompe disease, particularly in children now surviving longer with residual weakness impacting development and integrity of the musculoskeletal system; and the potential impact and role of exercise in infantile Pompe survivors treated with ERT.
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