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Expression of genetic peripheral neuropathies in South African children
Sharika V Raga1, Gwendoline Q Kandawasvika2, Alvin Ndondo3
1Department of Paediatric Neurology, Red Cross War Memorial Children's Hospital, University of Cape Town, Cape Town, South Africa; International Centre for Genomic Medicine in Neuromuscular Diseases Study, University College London, UK.
Insights
Genetic peripheral neuropathies are underreported in African children. This study found axonal neuropathy predominant, with PMP22-related CMT1A rare in Indigenous Black Africans, highlighting challenges in genetic testing access.
Area of Science:
- Neurology
- Genetics
- Pediatrics
Background:
- Genetic peripheral neuropathies (GPNs) are less understood in African populations compared to European ancestry.
- Limited genetic testing access in sub-Saharan Africa hinders diagnosis and research for GPNs.
Purpose of the Study:
- To describe the genetic and phenotypic characteristics of GPNs in 64 children at a South African neuromuscular disease center.
- To investigate the prevalence of specific genetic causes and neuropathy types across different ancestries.
Main Methods:
- Retrospective cross-sectional study of pediatric patients with GPN.
- Diagnosis confirmed through molecular testing, histology, and neurophysiology.
- Next-generation sequencing used to identify causative variants.
Main Results:
- 33% of children had confirmed molecular diagnoses; 67% diagnosed via histology/neurophysiology.
- Axonal neuropathy was most common (73%), observed across African, Mixed, and European ancestries.
- PMP22 duplications (CMT1A) were identified in 11 children, but rare in Indigenous Black Africans.
Conclusions:
- Access to genetic testing remains a significant barrier for diagnosing GPNs in sub-Saharan Africa.
- Unsolved axonal diseases predominated, indicating a need for further research into African GPNs.
- PMP22-related CMT1A appears uncommon in Indigenous Black African children, suggesting population-specific genetic factors.
Abstract:
Genetic peripheral neuropathies have prevalence of 1:2500-1:10,000 in populations of European ancestry but are underreported in African populations. This retrospective cross-sectional study described 64 children with genetic peripheral neuropathy attending a neuromuscular disease centre in South Africa. Twenty-one children (21/64, 33 %) had confirmed molecular diagnoses, and 43/64 (67 %) were diagnosed via histology and neurophysiology. In seven children, next generation sequencing did not identify a causative variant. The identified genetic causes were PMP22 duplications (n = 11), and variants in ATL1 (n=1), IGHMBP2 (n = 2), MPZ (n = 1), MFN2 (n = 1), MTMR2 (n = 2), SH3TC2 (n = 1), SLC12A6 (n = 1), and SLC52A3 (n = 1). Axonal neuropathy was most common (47/64, 73 %), affecting 9/12 children with African, 17/26 Mixed, and 21/26 European ancestry. Only two of the 11 children with PMP22 duplication were of Indigenous Black African ancestry. Access to genetic closure for children in sub-Saharan Africa remains a challenge due limited access to genetic testing. In this study there was a predominance of unsolved axonal diseases. PMP22-related CMT1A, appeared rare in children of Indigenous Black African ancestry. More research is needed to elucidate the genetic underpinnings of neuropathies in Africa, for informed and relevant genetic and clinical diagnostic protocols for local patients.
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