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The evolution of pulmonary function in childhood onset Mucopolysaccharidosis type I
A Broomfield1, J Sims1, J Mercer1
1Willink Biochemical Genetics Unit, Manchester Centre for Genomic Medicine, St Mary's Hospital, Manchester University NHS Foundation Trust, Manchester, UK.
Insights
Respiratory outcomes in Mucopolysaccharidosis Type I (MPS I) patients show restrictive lung disease is common. Both Haematopoietic Stem Cell Transplantation (HSCT) and Enzyme Replacement Therapy (ERT) show long-term pulmonary function changes, with factors like Cobb angle and male sex impacting HSCT outcomes.
Area of Science:
- Pulmonary Medicine
- Genetics and Inherited Diseases
- Pediatric Hematology/Oncology
Background:
- Mucopolysaccharidosis Type I (MPS I) primarily impacts upper airway obstruction, with restrictive lung disease evolution poorly documented.
- Long-term respiratory outcomes in MPS I patients treated with Haematopoietic Stem Cell Transplantation (HSCT) or Enzyme Replacement Therapy (ERT) require further investigation.
Purpose of the Study:
- To report long-term pulmonary function outcomes in MPS I patients treated with HSCT versus ERT.
- To examine factors affecting respiratory outcomes in these two treatment cohorts.
Main Methods:
- Retrospective review of 66 MPS I patients (46 HSCT, 20 ERT) with adequate pulmonary function testing.
- Pulmonary function results stratified using American Thoracic Society (ATS) guidelines.
- Analysis of potential factors associated with respiratory severity in each treatment group.
Main Results:
- All patients exhibited restrictive lung disease.
- In the HSCT cohort, Cobb angle and male sex correlated with more severe outcomes (49% severe/very severe).
- In the ERT cohort (Non-Hurler), no predictive variable was found, with 59% having severe/very severe disease. 14% overall required respiratory support.
- Pulmonary function stabilized or improved in 67% of HSCT patients and 52% of ERT patients during follow-up.
Conclusions:
- Restrictive lung disease is a significant cause of morbidity in all treated pediatric MPS I patients.
- While both HSCT and ERT show potential for pulmonary function stabilization or improvement, direct comparison is limited.
- Further stratification, including diffusing capacity for carbon monoxide (DLCO), is needed for a comprehensive understanding.
Abstract:
Respiratory outcomes in Mucopolysaccharidosis Type I (MPS I), have mainly focused on upper airway obstruction, with the evolution of the restrictive lung disease being poorly documented. We report the long-term pulmonary function outcomes and examine the potential factors affecting these in 2 cohorts of MPS I patients, those who have undergone Haematopoietic Stem Cell Transplantation (HSCT) and those treated with Enzyme Replacement Therapy (ERT). The results were stratified using the American Thoracic Society (ATS) guidelines. 66 patients, capable of adequately performing testing, were identified by a retrospective case note review, 46 transplanted (45 Hurler, 1 Non-Hurler) and 20 having ERT (17 Non-Hurler and 3 Hurler diagnosed too late for HSCT). 5 patients died; 4 in the ERT group including the 3 Hurler patients. Overall 14% of patients required respiratory support (non-invasive ventilation (NIV) or supplemental oxygen)) at the end of follow up. Median length of follow-up was 12.2 (range = 4.9-32) years post HSCT and 14.34 (range = 3.89-20.4) years on ERT. All patients had restrictive lung disease. Cobb angle and male sex were significantly associated with more severe outcomes in the HSCT cohort, with 49% having severe to very severe disease. In the 17 Non-Hurler ERT treated patients there was no variable predictive of severity of disease with 59% having severe to very severe disease. During the course of follow up 67% of the HSCT cohort had no change or improved pulmonary function as did 52% of the ERT patients. However, direct comparison between therapeutic modalities was not possible. This initial evidence would suggest that a degree of restrictive lung disease is present in all treated paediatrically diagnosed MPS I and is still a significant cause of morbidity, though further stratification incorporating diffusing capacity for carbon monoxide (DLCO) is needed.
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