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Congenital myasthenic syndromes
by
Finsterer, Josef
in
Acetylcholinesterase
/ Albuterol
/ Alkaloids
/ Antidepressants
/ Atracurium
/ Care and treatment
/ Cholinesterase Inhibitors - therapeutic use
/ Cognitive ability
/ Cognitive disorders
/ Congenital defects
/ Congenital diseases
/ Control
/ Defects
/ Diagnosis
/ Disease transmission
/ Electromyography
/ Enzymes
/ Ephedrine
/ Epilepsy
/ Esterase
/ Etiology
/ Etiology (Medicine)
/ Fatigue
/ Fluoxetine
/ Gene mutation
/ Genes
/ Genetic disorders
/ Hereditary
/ Human Genetics
/ Humans
/ Literature reviews
/ Medical research
/ Medicine
/ Medicine & Public Health
/ Muscles
/ Mutation
/ Myasthenia
/ Myasthenic syndrome
/ Myasthenic Syndromes, Congenital - diagnosis
/ Myasthenic Syndromes, Congenital - genetics
/ Myasthenic Syndromes, Congenital - pathology
/ Myasthenic Syndromes, Congenital - therapy
/ Neuromuscular Agents - therapeutic use
/ Neuromuscular blocking agents
/ Neuromuscular diseases
/ Neuromuscular junctions
/ Neuropathy
/ Pharmacology/Toxicology
/ Proteins
/ Proteins - genetics
/ Pyridine
/ Pyridines
/ Rare diseases
/ Rare neurological diseases
/ Repetitive nerve stimulation
/ Resveratrol
/ Review
/ Salbutamol
/ Sensors
/ Weakness
2019
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Congenital myasthenic syndromes
by
Finsterer, Josef
in
Acetylcholinesterase
/ Albuterol
/ Alkaloids
/ Antidepressants
/ Atracurium
/ Care and treatment
/ Cholinesterase Inhibitors - therapeutic use
/ Cognitive ability
/ Cognitive disorders
/ Congenital defects
/ Congenital diseases
/ Control
/ Defects
/ Diagnosis
/ Disease transmission
/ Electromyography
/ Enzymes
/ Ephedrine
/ Epilepsy
/ Esterase
/ Etiology
/ Etiology (Medicine)
/ Fatigue
/ Fluoxetine
/ Gene mutation
/ Genes
/ Genetic disorders
/ Hereditary
/ Human Genetics
/ Humans
/ Literature reviews
/ Medical research
/ Medicine
/ Medicine & Public Health
/ Muscles
/ Mutation
/ Myasthenia
/ Myasthenic syndrome
/ Myasthenic Syndromes, Congenital - diagnosis
/ Myasthenic Syndromes, Congenital - genetics
/ Myasthenic Syndromes, Congenital - pathology
/ Myasthenic Syndromes, Congenital - therapy
/ Neuromuscular Agents - therapeutic use
/ Neuromuscular blocking agents
/ Neuromuscular diseases
/ Neuromuscular junctions
/ Neuropathy
/ Pharmacology/Toxicology
/ Proteins
/ Proteins - genetics
/ Pyridine
/ Pyridines
/ Rare diseases
/ Rare neurological diseases
/ Repetitive nerve stimulation
/ Resveratrol
/ Review
/ Salbutamol
/ Sensors
/ Weakness
2019
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Congenital myasthenic syndromes
by
Finsterer, Josef
in
Acetylcholinesterase
/ Albuterol
/ Alkaloids
/ Antidepressants
/ Atracurium
/ Care and treatment
/ Cholinesterase Inhibitors - therapeutic use
/ Cognitive ability
/ Cognitive disorders
/ Congenital defects
/ Congenital diseases
/ Control
/ Defects
/ Diagnosis
/ Disease transmission
/ Electromyography
/ Enzymes
/ Ephedrine
/ Epilepsy
/ Esterase
/ Etiology
/ Etiology (Medicine)
/ Fatigue
/ Fluoxetine
/ Gene mutation
/ Genes
/ Genetic disorders
/ Hereditary
/ Human Genetics
/ Humans
/ Literature reviews
/ Medical research
/ Medicine
/ Medicine & Public Health
/ Muscles
/ Mutation
/ Myasthenia
/ Myasthenic syndrome
/ Myasthenic Syndromes, Congenital - diagnosis
/ Myasthenic Syndromes, Congenital - genetics
/ Myasthenic Syndromes, Congenital - pathology
/ Myasthenic Syndromes, Congenital - therapy
/ Neuromuscular Agents - therapeutic use
/ Neuromuscular blocking agents
/ Neuromuscular diseases
/ Neuromuscular junctions
/ Neuropathy
/ Pharmacology/Toxicology
/ Proteins
/ Proteins - genetics
/ Pyridine
/ Pyridines
/ Rare diseases
/ Rare neurological diseases
/ Repetitive nerve stimulation
/ Resveratrol
/ Review
/ Salbutamol
/ Sensors
/ Weakness
2019
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Journal Article
Congenital myasthenic syndromes
2019
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Overview
Objectives
Congenital myasthenic syndromes (CMSs) are a genotypically and phenotypically heterogeneous group of neuromuscular disorders, which have in common an impaired neuromuscular transmission. Since the field of CMSs is steadily expanding, the present review aimed at summarizing and discussing current knowledge and recent advances concerning the etiology, clinical presentation, diagnosis, and treatment of CMSs.
Methods
Systematic literature review.
Results
Currently, mutations in 32 genes are made responsible for autosomal dominant or autosomal recessive CMSs. These mutations concern 8 presynaptic, 4 synaptic, 15 post-synaptic, and 5 glycosilation proteins. These proteins function as ion-channels, enzymes, or structural, signalling, sensor, or transporter proteins. The most common causative genes are CHAT, COLQ, RAPSN, CHRNE, DOK7, and GFPT1. Phenotypically, these mutations manifest as abnormal fatigability or permanent or fluctuating weakness of extra-ocular, facial, bulbar, axial, respiratory, or limb muscles, hypotonia, or developmental delay. Cognitive disability, dysmorphism, neuropathy, or epilepsy are rare. Low- or high-frequency repetitive nerve stimulation may show an abnormal increment or decrement, and SF-EMG an increased jitter or blockings. Most CMSs respond favourably to acetylcholine-esterase inhibitors, 3,4-diamino-pyridine, salbutamol, albuterol, ephedrine, fluoxetine, or atracurium.
Conclusions
CMSs are an increasingly recognised group of genetically transmitted defects, which usually respond favorably to drugs enhancing the neuromuscular transmission. CMSs need to be differentiated from neuromuscular disorders due to muscle or nerve dysfunction.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
Subject
/ Cholinesterase Inhibitors - therapeutic use
/ Control
/ Defects
/ Enzymes
/ Epilepsy
/ Esterase
/ Etiology
/ Fatigue
/ Genes
/ Humans
/ Medicine
/ Muscles
/ Mutation
/ Myasthenic Syndromes, Congenital - diagnosis
/ Myasthenic Syndromes, Congenital - genetics
/ Myasthenic Syndromes, Congenital - pathology
/ Myasthenic Syndromes, Congenital - therapy
/ Neuromuscular Agents - therapeutic use
/ Neuromuscular blocking agents
/ Proteins
/ Pyridine
/ Repetitive nerve stimulation
/ Review
/ Sensors
/ Weakness
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