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A Multisystem Perspective of Pediatric Cell Trafficking Disorders: Within the Cells, Beneath the Signs
Merve Yoldaş Çelik1, Burcu Köşeci1, Ezgi Burgaç1
1Adana City Training and Research Hospital Department of Pediatric Metabolism Adana Türkiye.
Insights
Cell trafficking disorders (CTDs) are rare genetic conditions often underdiagnosed due to overlapping symptoms. This study analyzed pediatric CTD cases, revealing shared clinical and biochemical features across diverse genetic causes, aiding in better recognition.
Area of Science:
- Genetics and Molecular Biology
- Pediatric Neurology
- Cell Biology
Background:
- Cell trafficking disorders (CTDs) are rare inherited conditions affecting intracellular transport.
- CTDs are frequently underdiagnosed due to overlapping phenotypes with other genetic disorders.
- Impaired vesicular trafficking, cytoskeletal dynamics, and organelle interactions characterize CTDs.
Purpose of the Study:
- To retrospectively analyze pediatric patients with molecularly confirmed CTDs.
- To explore genotype-phenotype relationships and identify shared clinical features.
- To improve early recognition and management of CTDs.
Main Methods:
- Retrospective analysis of 14 pediatric patients with molecularly confirmed CTDs.
- Review of clinical, biochemical, imaging, and genetic findings.
- Identification of recurrently mutated genes and novel variants.
Main Results:
- Common symptoms included developmental delay, hypotonia, seizures, and hepatosplenomegaly.
- Biochemical abnormalities like elevated serum lactate and dicarboxylic aciduria were frequent.
- Mutations in AP4M1 and NPC1 were recurrent; two novel variants were identified.
Conclusions:
- Genetically diverse CTDs exhibit clinical and biochemical convergence.
- Trafficking defects play a significant role in neurodevelopmental and systemic dysfunction.
- Expanding diagnostic panels and adopting mechanism-based classification can enhance CTD recognition.
Abstract:
Cell trafficking disorders(CTDs) are rare, heterogeneous inherited conditions marked by impaired intracellular transport mechanisms such as vesicular trafficking, cytoskeletal dynamics, and organelle interactions. Although clinical awareness is increasing, CTDs are often underdiagnosed due to phenotypic overlap with mitochondrial, lysosomal, and glycosylation disorders. We retrospectively analyzed 14 pediatric patients with molecularly confirmed CTDs at a single center. Clinical, biochemical, imaging, and genetic findings were reviewed to explore genotype-phenotype relationships and shared clinical features. The cohort included 8 females and 6 males, with a median diagnostic age of 29 months (range: 1-86 months). Common initial symptoms were developmental delay, hypotonia, seizures, and hepatosplenomegaly. MRI abnormalities were noted in 7 patients. Elevated serum lactate and dicarboxylic aciduria were observed in 9 and 6 patients, respectively. Creatine kinase was raised in several cases, prominently in one with TANGO2 deficiency. Elevated AST (n = 12) and ALT (n = 5) indicated mild hepatic involvement. Immunological abnormalities included immunoglobulin deficiency (n = 3) and protein C/S deficiency (n = 4). Recurrently mutated genes were AP4M1 and NPC1 (n = 2 each); others included BSCL2, PACS1, RAB3GAP1, STXBP1, TANGO2, HERC1, KIF1A, ATP1A3, VPS13B, and NLGN3. Two novel variants were identified: AP4M1 c.929 + 1G>T and NPC1 c.145A>T. This case series highlights the clinical and biochemical convergence of genetically diverse CTDs, emphasizing the role of trafficking defects in neurodevelopmental and systemic dysfunction. Expanding diagnostic panels to include trafficking-related genes and adopting a mechanism-based classification may improve early recognition and tailored management of these complex disorders.
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