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Published on: March 27, 2014
An algorithm for discontinuing mechanical ventilation in boys with x-linked myotubular myopathy after positive
Robert J Graham1, Reshma Amin2, Nadir Demirel3
1Boston Children's Hospital, Harvard Medical School, Boston, MA, USA.
Insights
Gene therapy for X-linked myotubular myopathy (XLMTM) demonstrated significant respiratory improvements, enabling ventilator independence in many children. A novel weaning algorithm was developed to support this process safely.
Area of Science:
- Neurology
- Genetics
- Pulmonology
Background:
- X-linked myotubular myopathy (XLMTM) is a severe congenital neuromuscular disorder causing profound muscle weakness and respiratory failure.
- Most affected infants require mechanical ventilation from birth, with historically poor prognoses for ventilator independence.
Purpose of the Study:
- To evaluate the efficacy of resamirigene bilparvovec gene therapy in improving respiratory function in XLMTM patients.
- To develop and implement a safe algorithm for weaning ventilator-dependent children with XLMTM off mechanical support.
Main Methods:
- The ASPIRO clinical trial administered a single intravenous dose of resamirigene bilparvovec to XLMTM participants.
- A multidisciplinary expert group created a stepwise algorithm for assessing weaning readiness, executing weaning, and monitoring patients.
Main Results:
- Participants receiving gene therapy showed significant reductions in daily ventilation hours compared to controls by 24 weeks.
- 16 out of 24 treated participants achieved complete ventilator independence, with weaning occurring between 14 and 97 weeks post-dosing.
Conclusions:
- Resamirigene bilparvovec gene therapy offers a promising treatment for XLMTM, significantly improving respiratory outcomes and enabling ventilator independence.
- The developed weaning algorithm provides a crucial framework for managing respiratory recovery in children with severe congenital neuromuscular diseases.
Abstract:
X-linked myotubular myopathy (XLMTM) is a rare, life-threatening congenital myopathy. Most (80%) children with XLMTM have profound muscle weakness and hypotonia at birth resulting in severe respiratory insufficiency, the inability to sit up, stand or walk, and early mortality. At birth, 85-90% of children with XLMTM require mechanical ventilation, with more than half requiring invasive ventilator support. Historically, ventilator-dependent children with neuromuscular-derived respiratory failure of this degree and nature, static or progressive, are not expected to achieve complete independence from mechanical ventilator support. In the ASPIRO clinical trial (NCT03199469), participants receiving a single intravenous dose of an investigational gene therapy (resamirigene bilparvovec) started showing significant improvements in daily hours of ventilation support compared with controls by 24 weeks post-dosing, and 16 of 24 dosed participants achieved ventilator independence between 14 and 97 weeks after dosing. At the time, there was no precedent or published guidance for weaning chronically ventilated children with congenital neuromuscular diseases off mechanical ventilation. When the first ASPIRO participants started showing dramatically improved respiratory function, the investigators initiated efforts to safely wean them off ventilator support, in parallel with primary protocol respiratory outcome measures. A group of experts in respiratory care and physiology and management of children with XLMTM developed an algorithm to safely wean children in the ASPIRO trial off mechanical ventilation as their respiratory muscle strength increased. The algorithm developed for this trial provides recommendations for assessing weaning readiness, a stepwise approach to weaning, and monitoring of children during and after the weaning process.
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