The Role of Mutations on HLA Genes in Lambert-Eaton Myasthenic Syndrome

S. Asadi, Mahsa Hemati, Naser Shagerdi Esmaeli
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Abstract

Lambert-Eaton myasthenic syndrome (LEMS) is a rare presynaptic disorder of neuromuscular transmission in which quantal release of acetylcholine (ACh) is impaired, causing a unique set of clinical characteristics, which include proximal muscle weakness, depressed tendon reflexes, posttetanic potentiation, and autonomic changes. [1] The initial presentation can be similar to that of myasthenia gravis (MG), but the progressions of the 2 diseases have some important differences. LEMS disrupts the normally reliable neurotransmission at the neuromuscular junction (NMJ). This disruption is thought to result from an autoantibody-mediated removal of a subset of the P/Q-type Ca2+ channels involved with neurotransmitter release.
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HLA基因突变在Lambert-Eaton肌无力综合征中的作用
Lambert-Eaton肌无力综合征(LEMS)是一种罕见的神经肌肉传导突触前障碍,乙酰胆碱(ACh)的定量释放受损,导致一系列独特的临床特征,包括近端肌肉无力、肌腱反射抑制、节后增强和自主神经变化。[1] 最初的表现可能与重症肌无力(MG)相似,但这两种疾病的进展有一些重要的差异。LEMS破坏了神经肌肉接头(NMJ)正常可靠的神经传递。这种破坏被认为是由自身抗体介导的与神经递质释放有关的P/Q型Ca2+通道亚群的去除引起的。
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