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Anetoderma in a patient with terminal osseous dysplasia with pigmentary defects
Cody J Connor1, Oleg A Shchelochkov2, Heather Ciliberto3
1Carver College of Medicine, University of Iowa Hospitals and Clinics.
Abstract:
Terminal osseous dysplasia with pigmentary defects (TODPD) is a rare, X-linked syndrome classically characterized by distal limb anomalies, pigmented skin defects of the face, and recurrent digital fibromas. X-inactivation plays a major role in determining the range of phenotypic expression. Thus, patients can demonstrate a wide spectrum of disease severity, making accurate diagnosis more challenging. Recent studies have identified a FLNA c.5217G>A mutation as the cause of TODPD, allowing for diagnostic genetic testing. We present a case of molecularly confirmed TODPD in a girl with the 47,XXX chromosomal complement and deformities of the hands and feet, craniofacial abnormalities, and discolored, linear facial lesions. Skin biopsy of the patient's facial lesion revealed absent papillary dermal elastic fibers, consistent with anetoderma, which contrasts with the dermal hypoplasia described in the only other such facial biopsy reported in the literature. The finding of absent elastic fibers in the skin lesions suggests that mutated filamin A, in part, exerts its effects through dysregulated elastin biology, which may explain the nature of many connective tissue pleotropic effects in FLNA-related disorders.
Insights
Terminal osseous dysplasia with pigmentary defects (TODPD) is a rare X-linked syndrome. A FLNA mutation causes TODPD, leading to limb anomalies, skin defects, and fibromas, with variable severity.
Area of Science:
- Genetics
- Dermatology
- Medical Science
Background:
- Terminal osseous dysplasia with pigmentary defects (TODPD) is a rare X-linked disorder.
- Phenotypic variability is significant due to X-inactivation.
- A FLNA c.5217G>A mutation has been identified as the cause.
Observation:
- A case of molecularly confirmed TODPD is presented in a 47,XXX female.
- The patient exhibited limb deformities, craniofacial abnormalities, and facial lesions.
- Skin biopsy revealed absent papillary dermal elastic fibers, consistent with anetoderma.
Findings:
- The FLNA mutation is confirmed as the cause of TODPD.
- The patient's presentation included typical and atypical features.
- Skin biopsy findings suggest a role in elastin biology.
Implications:
- Accurate diagnosis is aided by genetic testing for FLNA mutations.
- Mutated filamin A may affect elastin biology, explaining connective tissue abnormalities.
- Understanding the mechanism can inform future research on FLNA-related disorders.
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