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1
Novel brain expression of ClC-1 chloride channels and enrichment of CLCN1 variants in epilepsy.
Neurology. 2013 Mar 19;80(12):1078-85. doi: 10.1212/WNL.0b013e31828868e7. Epub 2013 Feb 13.
2
Are myotonia and epilepsy linked by a chloride channel?
Neurology. 2013 Mar 19;80(12):1074-5. doi: 10.1212/WNL.0b013e3182886a2c. Epub 2013 Feb 13.
3
ClC-1 chloride channels: state-of-the-art research and future challenges.
Front Cell Neurosci. 2015 Apr 27;9:156. doi: 10.3389/fncel.2015.00156. eCollection 2015.
4
Functional consequences of chloride channel gene (CLCN1) mutations causing myotonia congenita.
Neurology. 2000 Feb 22;54(4):937-42. doi: 10.1212/wnl.54.4.937.
6
Mutations and polymorphisms of the CLCN2 gene in idiopathic epilepsy.
Neurology. 2004 Oct 26;63(8):1500-2. doi: 10.1212/01.wnl.0000142093.94998.1a.
7
Muscle chloride channel dysfunction in two mouse models of myotonic dystrophy.
J Gen Physiol. 2007 Jan;129(1):79-94. doi: 10.1085/jgp.200609635. Epub 2006 Dec 11.
8
Chloride channelopathy in myotonic dystrophy resulting from loss of posttranscriptional regulation for CLCN1.
Am J Physiol Cell Physiol. 2007 Apr;292(4):C1291-7. doi: 10.1152/ajpcell.00336.2006. Epub 2006 Nov 29.
9
Quantification of chloride channel 2 (CLCN2) gene isoforms in normal versus lesion- and epilepsy-associated brain tissue.
Biochim Biophys Acta. 2007 Jan;1772(1):15-20. doi: 10.1016/j.bbadis.2006.10.015. Epub 2006 Nov 1.
10
Exon 17 skipping in CLCN1 leads to recessive myotonia congenita.
Muscle Nerve. 2004 May;29(5):670-6. doi: 10.1002/mus.20005.

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1
Role of voltage-gated chloride channels in epilepsy: current insights and future directions.
Front Pharmacol. 2025 Mar 28;16:1560392. doi: 10.3389/fphar.2025.1560392. eCollection 2025.
3
Idiopathic generalized epilepsy in a family with SCN4A-related myotonia.
Epilepsia Open. 2024 Jun;9(3):951-959. doi: 10.1002/epi4.12920. Epub 2024 Mar 27.
4
Pharmacological modulation of chloride channels as a therapeutic strategy for neurological disorders.
Front Physiol. 2023 Mar 2;14:1122444. doi: 10.3389/fphys.2023.1122444. eCollection 2023.
5
Case report: Coexistence of myotonia congenita and Brugada syndrome in one family.
Front Neurol. 2022 Sep 23;13:1011956. doi: 10.3389/fneur.2022.1011956. eCollection 2022.
8
Chloride channels with ClC-1-like properties differentially regulate the excitability of dopamine receptor D1- and D2-expressing striatal medium spiny neurons.
Am J Physiol Cell Physiol. 2022 Mar 1;322(3):C395-C409. doi: 10.1152/ajpcell.00397.2021. Epub 2022 Jan 26.
9
Respiratory alkalosis provokes spike-wave discharges in seizure-prone rats.
Elife. 2022 Jan 4;11:e72898. doi: 10.7554/eLife.72898.
10
Peptide barcodes in dogs affected by mitral valve disease with and without pulmonary hypertension using MALDI-TOF MS and LC-MS/MS.
PLoS One. 2021 Aug 12;16(8):e0255611. doi: 10.1371/journal.pone.0255611. eCollection 2021.

本文引用的文献

2
Presynaptic CLC-3 determines quantal size of inhibitory transmission in the hippocampus.
Nat Neurosci. 2011 Apr;14(4):487-94. doi: 10.1038/nn.2775. Epub 2011 Mar 6.
3
Cardiac arrhythmia and thyroid dysfunction: a novel genetic link.
Int J Biochem Cell Biol. 2010 Nov;42(11):1767-70. doi: 10.1016/j.biocel.2010.07.013. Epub 2010 Aug 3.
4
Arrhythmia in heart and brain: KCNQ1 mutations link epilepsy and sudden unexplained death.
Sci Transl Med. 2009 Oct 14;1(2):2ra6. doi: 10.1126/scitranslmed.3000289.
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A method and server for predicting damaging missense mutations.
Nat Methods. 2010 Apr;7(4):248-9. doi: 10.1038/nmeth0410-248.
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No evidence for a role of CLCN2 variants in idiopathic generalized epilepsy.
Nat Genet. 2010 Jan;42(1):3. doi: 10.1038/ng0110-3.
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The non-dystrophic myotonias: molecular pathogenesis, diagnosis and treatment.
Brain. 2010 Jan;133(Pt 1):9-22. doi: 10.1093/brain/awp294. Epub 2009 Nov 16.
10
Variants in KCNQ1 are associated with susceptibility to type 2 diabetes mellitus.
Nat Genet. 2008 Sep;40(9):1092-7. doi: 10.1038/ng.207.

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