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Exome Sequencing in Paediatric Patients with Movement Disorders with Treatment Possibilities

Authors :
Li-Yan Tsung
Monkol Lek
Sander Pajusalu
Che-Kwan Ma
Kate Lok-San Chan
Eva Lai-Wah Fung
Cheuk-Wing Fung
Mandy H.Y. Tsang
Man-Mut Yau
Shuk-Mui Tai
Jasmine L.F. Fung
Richard J. Rodenburg
Sharon T. H. Fung
Kam-Tim Liu
Cheung Tsoi
Shushu Huang
Jan A.M. Smeitink
Nick Shun-Ping Wu
Christopher C.Y. Mak
Brian H.Y. Chung
Sheila Wong
Anna Ka-Yee Kwong
Eric Kin-Cheong Yau
Publication Year :
2020
Publisher :
Research Square Platform LLC, 2020.

Abstract

Background: Movement disorders are a group of heterogeneous neurological diseases including hyperkinetic disorders with unwanted excess movements and hypokinetic disorders with reduction in the degree of movements. The objective of our study is to investigate the genetic etiology of a cohort of paediatric patients with movement disorders by whole exome sequencing and to review the potential treatment implications after a genetic diagnosis. Results: We studied a cohort of 31 patients who have paediatric-onset movement disorders with unrevealing etiologies. Whole exome sequencing was performed and rare variants were interrogated for pathogenicity. Genetic diagnoses have been confirmed in 10 patients with disease-causing variants in CTNNB1, SPAST, ATP1A3, PURA, SLC2A1, KMT2B, ACTB, GNAO1 and SPG11. 80% (8/10) of patients with genetic diagnosis have potential targeted treatment implications and treatments have been offered to them. One patient with KMT2B dystonia showed clinical improvement with decrease in dystonia after receiving globus pallidus interna deep brain stimulation. Conclusion: A diagnostic yield of 32% (10/31) was reported in our cohort and this allows a better prediction of prognosis and contributes to a more effective clinical management using targeted therapies. The study highlights the potential of implementing precision medicine in the patients.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........819aafdceb3288e1b79c63f1cd713c2c