Micronutrient and vitamin deficiencies in young adults in the United States are relatively rare and often pose a diagnostic challenge. Here, we present the case of a young female who developed acute encephalopathy and muscular weakness two days following an endoscopic procedure performed to investigate the patient's four-month history of intractable nausea, vomiting, dysphagia, and weight loss. She was diagnosed with severe Wernicke encephalopathy due to thiamine deficiency as well as myotonic dystrophy type 1 (DM1). The patient's family history revealed an undiagnosed muscular disorder that required her father to ambulate with a wheelchair in the fourth decade of his life. DM1 with 11 trinucleotide repeats of cytosine-thymine-guanine in allele 1 and more than 150 in allele 2 of the () gene were found on genetic testing. The patient's progressive dysphagia was likely a chronic manifestation of myotonic dystrophy that became more apparent following general anesthesia. DM1 is a multisystem genetic disorder of both skeletal and smooth muscles caused by deviation in the gene. Due to the involvement of esophageal smooth muscle, dysphagia may also be present. The long-standing dysphagia in our patient resulted in significant vitamin deficiency presenting as Wernicke encephalopathy. This case highlights the need for detailed, accurate family history and heightened suspicion for malnutrition in young adults who have eating disorders, dysphagia, and unexplained neurological changes.
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http://dx.doi.org/10.7759/cureus.21180 | DOI Listing |
Genetics
January 2025
Department of Biochemistry, Jacobs School of Medicine and Biomedical Sciences, State University of New York at Buffalo, Buffalo, NY 14203, USA.
Mismatch repair (MMR) is a highly conserved DNA repair pathway that recognizes mispairs that occur spontaneously during DNA replication and coordinates their repair. In Saccharomyces cerevisiae, Msh2-Msh3 and Msh2-Msh6 initiate MMR by recognizing and binding insertion deletion loops (in/dels) up to ∼ 17 nucleotides (nt.) and base-base mispairs, respectively; the two complexes have overlapping specificity for small (1-2 nt.
View Article and Find Full Text PDFAndes Pediatr
October 2024
Departamento de Neuropediatría, Hospital Fundación Alcorcón, Madrid, España.
Unlabelled: Congenital myotonic dystrophy type 1 (DM1) is a rare entity that can pose a diagnostic challenge, especially if other processes such as prematurity coexist.
Objective: to describe the typical presentation of congenital DM1 and thus increase diagnostic suspicion.
Clinical Case: A 29-week preterm female newborn who required non-invasive mechanical ventilation until 41 weeks postmenstrual age; she presented with apnea requiring manual ventilation with a self-inflating bag and cardiac massage.
Zh Nevrol Psikhiatr Im S S Korsakova
December 2024
Republican Scientific and Practical Center of Neurology and Neurosurgery, Minsk, Belarus.
Objective: To analyze the results of nocturnal breathing parameters during sleep based on nocturnal pulse oximetry and to study of characteristics of external respiration in genetically confirmed patients with dystrophic myotonia (DM).
Material And Methods: The subjects of the study were patients with genetically confirmed DM types 1 and 2 who were hospitalized in the neurological departments of the Republican Scientific and Practical Center for Neurology and Neurosurgery. The clinical picture of the disease, comorbidities, sleep questionnaires, laboratory tests, overnight pulse oximetry and spirometry were performed and analyzed.
Genetics
December 2024
Institute of Biotechnology, HiLIFE, University of Helsinki, Helsinki 00790, Finland.
Expansion of nucleotide repeat sequences is associated with more than 40 human neuromuscular disorders. The different pathogenic mechanisms associated with the expression of nucleotide repeats are not well understood. We use a Caenorhabditis elegans model that expresses expanded CUG repeats only in cells of the body wall muscle and recapitulate muscle dysfunction and impaired organismal motility to identify the basis by which expression of RNA repeats is toxic to muscle function.
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