Muscular dystrophies are a heterogeneous group of genetically determined disorders characterised by progressive degeneration of skeletal muscle. While Duchenne and Becker muscular dystrophies are the most common X-linked dystrophinopathies, several other primary muscular dystrophies present in pediatric practice with distinct clinical phenotypes, inheritance patterns, and genetic loci.
Genetic And Inheritance Profile
Disease
Mode Of Inheritance
Gene Location
Gene Product
Limb Girdle Muscular Dystrophy (LGMD)
AR / AD
5q / 15q
Sarcoglycans
Congenital Muscular Dystrophies (CMD)
AR
6q2 / 8q31
Merosin / Fukutin
Myotonic Dystrophies
AD
19q (CTG repeats)
DM, 2FN9
Facioscapulohumeral Dystrophy (FSHD)
AD
4q35
D4Z4 macrosatellite
Limb Girdle Muscular Dystrophy
Definition And Overview
Limb girdle muscular dystrophies are a group of clinically heterogeneous syndromes.
They primarily affect the muscles of the hip and shoulder girdles.
The disease is generally classified into two main clinical types.
These include the pelvifemoral (Leyden-MΓΆbius) type and the scapulohumeral (Erb's juvenile) type.
Genetics And Inheritance
The condition exhibits genetic heterogeneity.
The inheritance pattern can be autosomal dominant or autosomal recessive.
There is also a high sporadic incidence associated with this disorder.
Inheritance Pattern
Clinical Characteristics
Specific Subtypes
Autosomal Recessive
Features early onset with rapid progression and higher creatine kinase values.
Dystrophin protein levels remain normal, distinguishing it from dystrophinopathies.
Management And Prognosis
Treatment is primarily symptomatic and supportive.
Medical management includes promoting ambulation and regular physiotherapy.
The disease is generally mildly progressive.
Life expectancy typically extends into mid to late adulthood.
Congenital Muscular Dystrophies (CMD)
Definition And Overview
Congenital muscular dystrophies are a group of hereditary disorders characterized by an early onset in the prenatal, neonatal, or early childhood period.
They demonstrate histologic features that are suggestive of a dystrophic process.
A distinguishing feature of congenital dystrophies is a remarkably high association with structural brain malformations, such as lissencephaly or polymicrogyria.
The majority of these disorders are inherited in an autosomal recessive manner, with the exception of specific mutations like LMNA and COL6.
Clinical Features
Affected infants typically present at birth or in the first year of life.
They demonstrate severe generalized hypotonia, diffuse weakness, and a thin muscle mass.
Distal arthrogryposis or multiple joint contractures are frequently present at birth.
Ironically, the weakness is often static or only slowly progressive, following a more benign clinical course than the early onset would suggest.
Tendon stretch reflexes are generally hypoactive or entirely absent.
Ptosis, ophthalmoplegia, and severe bulbar weakness are typically rare in CMDs.
Patients with associated cerebral dysgenesis often suffer from severe epilepsy and intellectual disability.
Classification
Subcategory
Defective Gene / Protein
Clinical Characteristics
Dystroglycanopathies
POMT1, POMT2, FKTN, FKRP (Affects glycosylation of alpha-dystroglycan)
Associated with severe brain malformations like cobblestone lissencephaly. Includes Walker-Warburg, Muscle-Eye-Brain, and Fukuyama disease.
Basal Lamina Disorders
LAMA2 (Laminin alpha-2 / Merosin)
Classic merosin-negative CMD. Shows white matter hyperintensity on brain MRI.
Collagenopathies
COL6A1, COL6A2, COL6A3 (Collagen type VI)
Includes severe Ullrich CMD and milder Bethlem myopathy. Presents with distal hyperlaxity and proximal contractures.
Nuclear Envelope Defects
LMNA (Lamin A/C), EMD, Nesprin
Can present as dropped-head syndrome. High risk of cardiac arrhythmias.
Endoplasmic Reticulum Defects
SEPN1 (Selenoprotein N1)
Presents with early rigid spine syndrome.
Diagnosis
Serum creatine kinase (CK) levels are usually moderately elevated, ranging from several hundred to many thousands.
A brain MRI is crucial to identify and evaluate any associated cerebral malformations.
A muscle biopsy helps support the diagnosis by showing dystrophic myopathic features and extensive proliferation of endomysial collagen.
Advanced molecular genetic testing can now confidently confirm the specific mutation.
A confirmed genetic mutation combined with a typical phenotype often eliminates the need for an invasive muscle biopsy.
Myotonic Dystrophies
Definition And Genetics
Myotonic dystrophies are multisystem disorders inherited in an autosomal dominant pattern.
They are characterised by myotonia, progressive muscle weakness, and variable systemic involvement.
Genetic anticipation is a prominent feature, meaning successive generations experience earlier and more severe disease.
Feature
Myotonic Dystrophy Type 1 (Steinert Disease)
Myotonic Dystrophy Type 2
Gene And Locus
DMPK gene on chromosome 19q13.3.
ZNF9 gene on chromosome 3q21.
Mutation
CTG trinucleotide repeat expansion.
CCTG tetranucleotide repeat expansion.
Weakness Pattern
Distal predominant weakness.
Proximal predominant weakness.
Clinical Myotonia
Common and often pronounced.
Mild or inobvious.
Clinical Features
Classical Presentation
Myotonia is the hallmark clinical sign.
It is characterised by abnormally slow relaxation of muscle after a voluntary contraction or percussion.
Muscle weakness typically follows a distal distribution.
This distal wasting is a notable exception to the general rule of myopathies having proximal weakness.
Patients develop a characteristic myopathic "hatchet facies".
This includes an inverted V-shaped upper lip, scalloped temporalis muscles, and a high arched palate.
Systemic Manifestations
Cardiac manifestations include severe conduction defects, heart block, and risk of sudden death.
Endocrine disturbances are common and include testicular atrophy, insulin resistance, and hypothyroidism.
Ocular involvement frequently presents as premature Christmas tree-like or iridescent spoke-like posterior capsular cataracts.
Gastrointestinal smooth muscle dysfunction leads to poor peristalsis, delayed gastric emptying, and constipation.
Congenital Myotonic Dystrophy
This severe variant presents exclusively in infants born to affected mothers.
Antenatal history often reveals polyhydramnios and decreased fetal movements.
Neonates present with severe hypotonia, facial diplegia, club feet, and potentially fatal respiratory failure.
Clinical myotonia is characteristically absent in the neonatal period and early infancy.
Diagnosis And Management
DNA analysis to detect trinucleotide or tetranucleotide repeat expansions is the definitive diagnostic test.
Electromyography (EMG) is highly characteristic, revealing myotonic discharges that produce a classic 'revving engine' sound.
Serum creatine kinase levels generally remain normal or are only mildly elevated.
Management is primarily supportive.
Disabling myotonia can be managed with membrane-stabilising agents such as mexiletine, phenytoin, or carbamazepine.
Facioscapulohumeral Muscular Dystrophy (FSHD)
Definition And Overview
Facioscapulohumeral muscular dystrophy is the third most common muscular dystrophy.
It is primarily inherited as an autosomal dominant trait.
The condition demonstrates genetic anticipation, where successive generations experience earlier and more severe disease.
Patients generally have a normal life span.
Genetics And Pathophysiology
The disease shares a common final pathway resulting in the abnormal expression of the DUX4 gene, which is normally dormant.
Subtype
Genetic Mutation
Pathophysiology
FSHD 1
Integral deletion at the 4q35 locus.
Contraction of D4Z4 repeats to fewer than 10 copies allows chromatin remodeling and abnormal DUX4 expression.
FSHD 2
Mutation in the SMCHD1 gene on chromosome 18p.
Leads to hypomethylation of the D4Z4 region, subsequently permitting DUX4 expression.
Clinical Features
Facial And Bulbar Weakness
Facial and shoulder girdle muscle weakness are the earliest symptoms.
Facial weakness is typically asymmetrical.
Diminished facial movements manifest as an inability to smile or whistle.
The mouth appears rounded and puckered due to protruding lips.
Patients commonly exhibit an inability to completely close their eyes during sleep.
Musculoskeletal Manifestations
Scapular winging is a prominent and asymmetrical feature.
Biceps and triceps muscles are characteristically wasted and weak.
Deltoid and forearm muscles are selectively spared, creating a classic "Popeye" arm appearance.
Lower abdominal muscles weaken more than upper abdominal muscles.
This abdominal weakness results in a positive Beevor sign.
Systemic And Extramuscular Manifestations
High-frequency sensorineural hearing loss is frequently associated.
Retinal vasculopathy resembling Coats disease can occur, particularly in early-onset cases.
Diagnosis
Serum creatine kinase (CK) levels vary widely, ranging from normal to elevations of several thousands.