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Published on: December 31, 2013
Compressive Myelopathy Secondary to TRPV4 Skeletal Dysplasia: Spondylometaphyseal Dysplasia, Kozlowski Type
Vykuntaraju K Gowda1, Varunvenkat M Srinivasan1, Varsha M Reddy1
1Department of Pediatric Neurology, Indira Gandhi Institute of Child Health, Bengaluru, Karnataka, India.
Insights
Mutations in the TRPV4 gene can cause skeletal and nerve conditions. This case highlights spondylometaphyseal dysplasia, Kozlowski type (SMD-K), in a child with a TRPV4 variant, emphasizing the need for early diagnosis and spinal injury avoidance.
Area of Science:
- Genetics
- Orthopedics
- Neurology
Background:
- Transient receptor potential vanilloid 4 channel (TRPV4) gene mutations are linked to skeletal and peripheral nervous system disorders.
- Spondylometaphyseal dysplasia, Kozlowski type (SMD-K) is a rare skeletal dysplasia.
- Atlantoaxial instability and spinal cord compression can occur in skeletal dysplasias.
Purpose of the Study:
- To report a case of spondylometaphyseal dysplasia, Kozlowski type (SMD-K) caused by a novel TRPV4 gene variant.
- To describe the clinical, radiological, and genetic findings in a child with SMD-K.
- To highlight the importance of early diagnosis and management of spinal complications in SMD-K.
Main Methods:
- Clinical examination and skeletal survey.
- Magnetic resonance imaging (MRI) of the spine.
- Whole exome sequencing to identify genetic variants.
Main Results:
- A 9-year-old male presented with progressive joint stiffness, limb weakness, and urinary incontinence.
- Radiological findings included platyspondyly, metaphyseal dysplasia, and atlantoaxial instability with cervical cord compression.
- Exome sequencing identified a heterozygous de novo variant (c.2389G>A) in the TRPV4 gene, leading to p.Glu797Lys substitution.
Conclusions:
- The identified TRPV4 variant is associated with spondylometaphyseal dysplasia, Kozlowski type (SMD-K).
- Surgical intervention for atlantoaxial instability and compressive myelopathy was performed.
- Children with progressive kyphoscoliosis, short stature, platyspondyly, and metaphyseal changes should be evaluated for SMD-K, and spinal injuries should be avoided.
Abstract:
Transient receptor potential vanilloid 4 channel ( TRPV4 ) gene mutations have been described in skeletal system and peripheral nervous system pathology. The case described here is a 9-year-old male child patient, born to a nonconsanguineous marriage with normal birth history who had difficulty in walking and stiffness of joints for the last 7 years, and progressive weakness of all four limbs and urine incontinence for 1 year following falls. Physical examination showed below-average weight and height and short trunk. Musculoskeletal examination revealed bony prominence bilaterally in the knee joints and contractures in knee and elbow joints with brachydactyly; muscle tone was increased, with brisk deep tendon reflexes. Skeletal survey showed platyspondyly with anterior beaking with metaphyseal dysplasia. Magnetic resonance imaging of the spine revealed atlantoaxial instability with hyperintense signal changes at a cervicomedullary junction and upper cervical cord with thinning and spinal canal stenosis suggestive of compressive myelopathy with platyspondyly and anterior beaking of the spine at cervical, thoracic and lumbar vertebrae. Exome sequencing revealed a heterozygous de novo variant c.2389G > A in exon 15 of TRPV4 , which results in the amino acid substitution p.Glu797Lys in the encoded protein. The characteristics observed indicated spondylometaphyseal dysplasia, Kozlowski type (SMD-K). The child underwent surgical intervention for compressive myelopathy by reduction of atlantoaxial dislocation with C1 lateral mass and C2 pars fusion using rib graft and fixation using screws and rods. To conclude, for any child presenting with progressive kyphoscoliosis, short stature, platyspondyly, and metaphyseal changes, a diagnosis of SMD-K should be considered and the patient and family should be advised to avoid spinal injuries.
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