Congenital myasthenic syndromes (CMS) are inherited disorders caused by defects in proteins essential for neuromuscular transmission. In this nationwide, multicenter retrospective study, we analyzed 133 genetically confirmed CMS cases from 118 unrelated families between 2017 and 2024 across 28 centers in Türkiye. Clinical, electrophysiological, and genetic data were collected from medical records. In addition, we performed a PubMed-based review of previously reported genetically confirmed Turkish CMS cases to place our findings in a broader national context. The median age at symptom onset, and the median diagnostic delay were 6 months and 24 months, respectively. Ocular involvement was the most common clinical feature, followed by respiratory and bulbar involvement. High consanguinity (82%) contributed to a predominance of homozygous variants. Variants were identified in 16 CMS-associated genes, with COLQ (34.6%), CHRNE (24.1%), and CHAT (12.8%) being the most frequent. Postsynaptic CMS was the most common anatomical subgroup. Eighteen novel variants across 11 genes expanded the mutational spectrum of CMS. Review of 23 previously published studies from Türkiye identified 139 additional genetically confirmed cases, showing a broadly similar genetic distribution, with CHRNE and COLQ predominating, followed by CHAT, whereas other CMS-associated genes were reported only sporadically. >These findings define the clinical and genetic landscape of CMS in Türkiye and, together with previously published Turkish cases, provide a broad national overview based on 272 genetically confirmed cases. The results highlight the major contribution of a limited number of genes and underscore the importance of early molecular diagnosis in a population with high consanguinity.
Canan Üstün, I. Polat, Gülten Öztürk et al.· Neuromuscular Disorders· 0 citations
Malformations of cortical development (MCDs) are heterogeneous neurodevelopmental disorders resulting from abnormalities in neuronal proliferation, migration, and post-migrational organization, and they represent an important cause of pediatric epilepsy. High-resolution magnetic resonance imaging (MRI), particularly three-dimensional fluid-attenuated inversion recovery (3D-FLAIR), improves the detection of subtle cortical abnormalities such as focal cortical dysplasia (FCD).This study aimed to describe the distribution, clinical characteristics, and epilepsy-related features of malformations of cortical development in children, and to evaluate the added value of 3D FLAIR MRI in the detection and characterization of focal cortical dysplasia. A total of 47 pediatric patients were included. Post-migrational abnormalities were the most common findings (74.4%), followed by migration disorders (21.2%) and abnormalities of proliferation or apoptosis (4.2%). Seizures were the most frequent presenting symptom, and FCD was the most common subtype. Among the 17 patients with FCD, four lesions not visible on routine imaging were detected using the 3D-FLAIR sequence. In conclusion, MCDs are an important cause of pediatric epilepsy. High-resolution MRI, particularly 3D FLAIR imaging, improves the detection of subtle cortical abnormalities, especially focal cortical dysplasia. Optimized MRI protocols using widely available 1.5-T systems may significantly enhance diagnostic accuracy and support therapeutic planning.
Şükriye Yılmaz, Aslı Ercili Erdal, Mehmet Can Pençe et al.· OSMANGAZİ JOURNAL OF MEDICIN...· 0 citations
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