Prevalence of genetically confirmed skeletal muscle channelopathies in the era of next generation sequencing

先天性肌强直 周期性麻痹 医学 骨骼肌 肌强直 低钾性周期性麻痹 离子通道病 人口 麻痹 内科学 儿科 外科 强直性营养不良 环境卫生
作者
Vinojini Vivekanandam,Rawan Jaibaji,Richa Sud,Rebecca Ellmers,Iwona Skorupinska,Louise Germaine,Natalie James,Sarah Holmes,Roope Männikkö,Dipa Jayaseelan,Michael G. Hanna
出处
期刊:Neuromuscular Disorders [Elsevier BV]
卷期号:33 (3): 270-273 被引量:10
标识
DOI:10.1016/j.nmd.2023.01.007
摘要

We provide an up-to-date and accurate minimum point prevalence of genetically defined skeletal muscle channelopathies which is important for understanding the population impact, planning for treatment needs and future clinical trials. Skeletal muscle channelopathies include myotonia congenita (MC), sodium channel myotonia (SCM), paramyotonia congenita (PMC), hyperkalemic periodic paralysis (hyperPP), hypokalemic periodic paralysis (hypoPP) and Andersen- Tawil Syndrome (ATS). Patients referred to the UK national referral centre for skeletal muscle channelopathies and living in UK were included to calculate the minimum point prevalence using the latest data from the Office for National Statistics population estimate. We calculated a minimum point prevalence of all skeletal muscle channelopathies of 1.99/100 000 (95% CI 1.981-1.999). The minimum point prevalence of MC due to CLCN1 variants is 1.13/100 000 (95% CI 1.123-1.137), SCN4A variants which encode for PMC and SCM is 0.35/100 000 (95% CI 0.346 - 0.354) and for periodic paralysis (HyperPP and HypoPP) 0.41/100 000 (95% CI 0.406-0.414). The minimum point prevalence for ATS is 0.1/100 000 (95% CI 0.098-0.102). There has been an overall increase in point prevalence in skeletal muscle channelopathies compared to previous reports, with the biggest increase found to be in MC. This can be attributed to next generation sequencing and advances in clinical, electrophysiological and genetic characterisation of skeletal muscle channelopathies.
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