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Isometric and Eccentric Force Generation Assessment of Skeletal Muscles Isolated from Murine Models of Muscular Dystrophies
Published on: January 31, 2013
Congenital myopathies and congenital muscular dystrophies
N Tubridy1, B Fontaine, B Eymard
1Fédération de Neurologie, Institute of Myology and Inserm, La Pitié Salpêtrière, Paris, France.
Insights
Congenital myopathies and dystrophies are distinct inherited muscle diseases. Recent genetic discoveries are improving diagnosis and prognosis for these early-onset conditions.
Area of Science:
- Neurology
- Genetics
- Muscle Diseases
Background:
- Congenital myopathies and congenital myopathic dystrophies are distinct inherited muscle diseases presenting in infancy.
- Classification has evolved from morphological changes to genetic etiology, improving diagnosis and prognosis.
- Recent advances include identifying new gene mutations and developing clinical/genetic guidelines.
Purpose of the Study:
- To review the current understanding and classification of congenital myopathies and dystrophies.
- To highlight the impact of genetic discoveries on diagnosis and patient prognosis.
- To outline key genetic findings and identified disease entities.
Main Methods:
- Literature review of recent advancements in congenital myopathy and dystrophy research.
- Analysis of newly identified gene mutations and their clinical correlations.
- Summary of updated classification systems and diagnostic guidelines.
Main Results:
- New mutations identified in ryanodine receptor, tropomyosin, troponin T1, actin, and nebulin genes.
- Clinical and genetic guidelines proposed for nemaline rod myopathy and central core disease.
- Congenital myopathic dystrophies categorized, with merosin deficiency (LAMA2 gene) in half of cases without intellectual impairment.
- Fukuyama congenital myopathic dystrophy (FKTN gene) and Muscle-Eye-Brain syndrome (1p32-34) genetically characterized in cases with intellectual disability.
Conclusions:
- Genetic advancements have significantly refined the classification and diagnosis of congenital myopathies and dystrophies.
- Accurate genetic diagnosis enables more precise prognostication for affected individuals and families.
- Ongoing research continues to uncover the genetic basis of these heterogeneous muscle disorders.
Abstract:
Congenital myopathies and congenital myopathic dystrophies are distinct groups of inherited diseases of muscle, genetically heterogeneous, that manifest in early life or infancy. Congenital myopathic dystrophy is characterized by a dystrophic pattern, whereas no necrotic or degenerative changes are present in congenital myopathies. Much progress has been made in recent years in clarifying the classification of the congenital myopathies. This is a clinically and genetically heterogeneous group of conditions originally classified according to unique morphological changes seen in muscle. Not unlike the later-onset muscular dystrophies, the discovery of the genetic aetiology of many of the congenital myopathies has led to a revamping of how these conditions can now be diagnosed and this should enable physicians to give a more accurate prognosis to patients and their families. New mutations in the ryanodine receptor, slow tropomyosin, troponin T1, actin, and nebulin genes have been described in the last 2 years. Clinical and genetic guidelines for conditions like nemaline rod myopathy and central core disease have been suggested. The notion of minus and surplus protein myopathies has been developed. Several groups of congenital myopathic dystrophy have been identified. In the first category, without intellectual impairment or major structural brain abnormalities, half of the cases are merosin deficient due to mutations of the laminin alpha 2 chain gene. If generally the muscular phenotype is severe, mild allelic variants have been reported with early onset dystrophies and partial merosin deficiency. Among other pure congenital myopathic dystrophies unlinked to the laminin alpha 2 gene, one form has been assigned to chromosome 1q42. In the group of congenital myopathic dystrophies associated with mental retardation and structural brain abnormalities, two main entities are genetically characterized: (1) Fukuyama congenital myopathic dystrophy, affecting the Japanese population, is due to fukutin gene mutations, and (2) the muscle eye brain syndrome assigned to chromosome 1p32-34. In several cases, the gene localization remains unknown.
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