Infantile spinal muscular atrophy with respiratory distress type 1 (SMARD1)

K Grohmann, R Varon, P Stolz… - Annals of Neurology …, 2003 - Wiley Online Library
K Grohmann, R Varon, P Stolz, M Schuelke, C Janetzki, E Bertini, K Bushby, F Muntoni…
Annals of Neurology: Official Journal of the American Neurological …, 2003Wiley Online Library
Autosomal recessive spinal muscular atrophy with respiratory distress type 1 (SMARD1) is
the second anterior horn cell disease in infants in which the genetic defect has been
defined. SMARD1 results from mutations in the gene encoding the immunoglobulin μ‐
binding protein 2 (IGHMBP2) on chromosome 11q13. Our aim was to review the clinical
features of 29 infants affected with SMARD1 and report on 26 novel IGHMBP2 mutations.
Intrauterine growth retardation, weak cry, and foot deformities were the earliest symptoms of …
Abstract
Autosomal recessive spinal muscular atrophy with respiratory distress type 1 (SMARD1) is the second anterior horn cell disease in infants in which the genetic defect has been defined. SMARD1 results from mutations in the gene encoding the immunoglobulin μ‐binding protein 2 (IGHMBP2) on chromosome 11q13. Our aim was to review the clinical features of 29 infants affected with SMARD1 and report on 26 novel IGHMBP2 mutations. Intrauterine growth retardation, weak cry, and foot deformities were the earliest symptoms of SMARD1. Most patients presented at the age of 1 to 6 months with respiratory distress due to diaphragmatic paralysis and progressive muscle weakness with predominantly distal lower limb muscle involvement. Sensory and autonomic nerves are also affected. Because of the poor prognosis, there is a demand for prenatal diagnosis, and clear diagnostic criteria for infantile SMARD1 are needed. The diagnosis of SMARD1 should be considered in infants with non‐5q spinal muscular atrophy, neuropathy, and muscle weakness and/or respiratory distress of unclear cause. Furthermore, consanguineous parents of a child with sudden infant death syndrome should be examined for IGHMBP2 mutations.
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