Publications by authors named "Candace Myers"

Objective: To understand the etiological landscape and phenotypic differences between 2 developmental and epileptic encephalopathy (DEE) syndromes: DEE with spike-wave activation in sleep (DEE-SWAS) and epileptic encephalopathy with spike-wave activation in sleep (EE-SWAS).

Methods: All patients fulfilled International League Against Epilepsy (ILAE) DEE-SWAS or EE-SWAS criteria with a Core cohort (n = 91) drawn from our Epilepsy Genetics research program, together with 10 etiologically solved patients referred by collaborators in the Expanded cohort (n = 101). Detailed phenotyping and analysis of molecular genetic results were performed.

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Article Synopsis
  • The study aimed to gather long-term data on the function and complications of patients with nasopharyngeal carcinoma after receiving Intensity-Modulated Radiation Therapy (IMRT) and to identify predictive factors for negative outcomes.
  • Researchers conducted a longitudinal study, tracking 42 patients' functional performance, speech, and swallowing abilities at multiple time points post-treatment, revealing initial recovery followed by a decline in function years later.
  • The findings indicated that higher radiation doses were linked to poorer dietary intake and speech understandability, with a notable percentage of patients becoming dependent on feeding tubes five years after treatment.
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Background: Dominant gamma-smooth muscle actin gene () variants cause clinically diverse forms of visceral myopathy. Many patients undergo intestinal resection or biopsy before identification of their genetic defect. The pathology of -variant visceral myopathy has not been evaluated systematically.

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Somatic activating variants in , the gene that encodes the p110 catalytic subunit of phosphatidylinositol 3-kinase (PI3K), have been previously detected in ∼80% of lymphatic malformations (LMs). We report the presence of somatic activating variants in in individuals with LMs that do not possess pathogenic variants. The BRAF substitution p.

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Background: Study objectives were to determine whether the addition of postoperative radiation (PORT) resulted in a decline in oral function relative to surgery alone and to describe the longitudinal course of oral function following treatment of advanced oral cancer.

Methods: This was a 36-month retrospectively analyzed observational cohort study of patients with stage III-IV oral cancer. Prospectively collected, oral functional outcomes were acquired pretreatment and 3, 6, 12, 24, and 36 months post-treatment.

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FZR1, which encodes the Cdh1 subunit of the anaphase-promoting complex, plays an important role in neurodevelopment by regulating the cell cycle and by its multiple post-mitotic functions in neurons. In this study, evaluation of 250 unrelated patients with developmental and epileptic encephalopathies and a connection on GeneMatcher led to the identification of three de novo missense variants in FZR1. Whole-exome sequencing in 39 patient-parent trios and subsequent targeted sequencing in an additional cohort of 211 patients was performed to identify novel genes involved in developmental and epileptic encephalopathy.

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Aim: To delineate the speech and language phenotype of a cohort of individuals with FOXP1-related disorder.

Method: We administered a standardized test battery to examine speech and oral motor function, receptive and expressive language, non-verbal cognition, and adaptive behaviour. Clinical history and cognitive assessments were analysed together with speech and language findings.

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Chromosome 1q41-q42 deletion syndrome is a rare cause of intellectual disability, seizures, dysmorphology, and multiple anomalies. Two genes in the 1q41-q42 microdeletion, WDR26 and FBXO28, have been implicated in monogenic disease. Patients with WDR26 encephalopathy overlap clinically with those with 1q41-q42 deletion syndrome, whereas only one patient with FBXO28 encephalopathy has been described.

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Article Synopsis
  • NEXMIF encephalopathy is linked to intellectual disability, autism, and epilepsy, primarily caused by pathogenic variants in the NEXMIF gene.
  • The study involved 87 patients (63 females and 24 males) and identified a high prevalence of developmental delays and seizures, particularly in males, who exhibited more severe impairments.
  • Key findings show that all identified NEXMIF variants lead to premature stop codons or damaging changes, predominantly occurring de novo, with some cases of somatic mosaicism in affected families.
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Objective: We aimed to delineate the phenotypic spectrum and long-term outcome of individuals with KCNB1 encephalopathy.

Methods: We collected genetic, clinical, electroencephalographic, and imaging data of individuals with KCNB1 pathogenic variants recruited through an international collaboration, with the support of the family association "KCNB1 France." Patients were classified as having developmental and epileptic encephalopathy (DEE) or developmental encephalopathy (DE).

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Background: Wilson disease (WD) is an autosomal recessive disorder of copper transport caused by inherited defects in the gene and results in toxic accumulation of copper in various organs. We previously reported a family with three consecutive generations affected by WD that carries the variant, p.P1379S, which was classified at the time as likely pathogenic.

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Heterozygous de novo variants in the eukaryotic elongation factor EEF1A2 have previously been described in association with intellectual disability and epilepsy but never functionally validated. Here we report 14 new individuals with heterozygous EEF1A2 variants. We functionally validate multiple variants as protein-damaging using heterologous expression and complementation analysis.

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Background: We report the first case of a family with co-occurrence of Wilson disease (WD), an autosomal recessive disorder of copper metabolism, and X-linked agammaglobulinemia (XLA), a primary immunodeficiency disorder (PIDD) that features marked reduction in circulating B lymphocytes and serum immunoglobulins.

Methods And Results: Through utilization of a multiplexed biomarker peptide quantification method known as the immuno-SRM assay, we were able to simultaneously and independently identify which family members are affected with WD and which are affected with XLA using dried blood spots (DBS).

Conclusion: Being able to delineate multiple diagnoses using proteolytic analysis from a single DBS provides support for implementation of this methodology for clinical diagnostic use as well as large-scale population screening, such as newborn screening (NBS).

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Epilepsy of infancy with migrating focal seizures (EIMFS), one of the most severe developmental and epileptic encephalopathy syndromes, is characterized by seizures that migrate from one hemisphere to the other. EIMFS is genetically heterogeneous with 33 genes. We report five patients with EIMFS caused by recessive BRAT1 variants, identified via next generation sequencing.

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Developmental and epileptic encephalopathies (DEE) refer to a heterogeneous group of devastating neurodevelopmental disorders. Variants in KCNB1 have been recently reported in patients with early-onset DEE. KCNB1 encodes the α subunit of the delayed rectifier voltage-dependent potassium channel K 2.

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Infantile spasms (IS) is a developmental and epileptic encephalopathy with heterogeneous etiologies including many genetic causes. Genetic studies have identified pathogenic variants in over 30 genes as causes of IS. Many of these genetic causes are extremely rare, with only one reported incidence in an individual with IS.

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AMPA receptors (AMPARs) are tetrameric ligand-gated channels made up of combinations of GluA1-4 subunits encoded by GRIA1-4 genes. GluA2 has an especially important role because, following post-transcriptional editing at the Q607 site, it renders heteromultimeric AMPARs Ca-impermeable, with a linear relationship between current and trans-membrane voltage. Here, we report heterozygous de novo GRIA2 mutations in 28 unrelated patients with intellectual disability (ID) and neurodevelopmental abnormalities including autism spectrum disorder (ASD), Rett syndrome-like features, and seizures or developmental epileptic encephalopathy (DEE).

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Epilepsy with auditory features (EAF) is a focal epilepsy syndrome characterized by prominent auditory ictal manifestations. Two main genes, LGI1 and RELN, have been implicated in EAF, but the genetic aetiology remains unknown in half of families and most sporadic cases. We previously described a pathogenic SCN1A missense variant (p.

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Article Synopsis
  • - The study aimed to discover how ultrarare gene variants related to mTOR complex 1 (mTORC1) contribute to sporadic focal epilepsies (FE) using genetic data from 121 Italian FE cases and 512 controls.
  • - Researchers identified a greater prevalence of eight significant ultrarare variants in the FE patients compared to the controls, indicating a genetic link to mTOR pathway genes.
  • - The findings suggest that ultrarare variants in genes associated with the mTOR complexes could play a role in sporadic FE, highlighting the potential for personalized treatment approaches based on genetic causes.
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Rapid advances in genomic technologies have facilitated the identification pathogenic variants causing human disease. We report siblings with developmental and epileptic encephalopathy due to a novel, shared heterozygous pathogenic 13 bp duplication in SYNGAP1 (c.435_447dup, p.

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  • Baratela-Scott syndrome (BSS) is a rare genetic disorder caused by mutations in the XYLT1 gene, leading to symptoms like short stature and developmental delays.
  • In a study involving 10 families with BSS, only two families had identifiable genetic variants, while others showed hypermethylation of the XYLT1 gene, indicating additional non-sequence-based alterations.
  • The findings suggest that BSS is also linked to a trinucleotide repeat expansion in the XYLT1 promoter, highlighting the need for researchers to consider epigenetic changes when studying genetic disorders.
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Objective: To delineate the epileptology, a key part of the phenotypic spectrum, in a large patient cohort.

Methods: Patients were recruited via investigators' practices or social media. We included patients with (likely) pathogenic variants or chromosome 6p21.

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Developmental and epileptic encephalopathies (DEEs) are severe neurodevelopmental disorders often beginning in infancy or early childhood that are characterized by intractable seizures, abundant epileptiform activity on EEG, and developmental impairment or regression. CACNA1E is highly expressed in the central nervous system and encodes the α-subunit of the voltage-gated Ca2.3 channel, which conducts high voltage-activated R-type calcium currents that initiate synaptic transmission.

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Next-generation sequencing combined with international data sharing has enormously facilitated identification of new disease-associated genes and mutations. This is particularly true for genetically extremely heterogeneous entities such as neurodevelopmental disorders (NDDs). Through exome sequencing and world-wide collaborations, we identified and assembled 20 individuals with de novo variants in FBXO11.

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