Publications by authors named "Kamila Berankova"

Background: Maternally inherited complex I deficiencies due to mutations in MT-ND genes represent a heterogeneous group of multisystem mitochondrial disorders (MD) with a unfavourable prognosis. The aim of the study was to characterize the impact of the mutations in MT-ND genes, including the novel m.13091 T > C variant, on the course of the disease, and to analyse the activities of respiratory chain complexes, the amount of protein subunits, and the mitochondrial energy-generating system (MEGS) in available muscle biopsies and cultivated fibroblasts.

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Muckle-Wells syndrome (MWS) represents a moderate phenotype of cryopyrinopathies. Sensorineural hearing loss and AA amyloidosis belong to the most severe manifestations of uncontrolled disease. Simultaneous discovery of MWS in four generations of one large kindred has enabled us to document natural evolution of untreated disease and their response to targeted therapy.

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Article Synopsis
  • - Sideroblastic anemia is a rare condition that affects iron utilization and production of red blood cells, and it was identified in a small group (8 out of 421) of children with multisystem mitochondrial diseases.
  • - Five of these children had confirmed sideroblastic anemia characterized by high numbers of ring sideroblasts, with some having severe genetic issues, including deletions in the PUS1 gene linked to MLASA1 syndrome, which resulted in two fatalities.
  • - The study indicates that less than 1.2% of patients with multisystem mitochondrial disease experience sideroblastic anemia, which typically correlates with poor health outcomes.
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Hereditary multiple exostoses (HME) represents a heterogeneous group of diseases often associated with progressive skeletal deformities. Most frequently, mutations in EXT1 and EXT2 genes with autosomal dominant inheritance are responsible for HME. In our group of 9 families with HME we evaluated the clinical course of the disease and analysed molecular background using Sanger sequencing and MLPA in EXT1 and EXT2 genes.

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