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Novel ion channel targets in atrial fibrillation.
Hancox, Jules C; James, Andrew F; Marrion, Neil V; Zhang, Henggui; Thomas, Dierk.
Afiliación
  • Hancox JC; a School of Physiology, Pharmacology and Neuroscience , University Walk , Bristol , UK.
  • James AF; a School of Physiology, Pharmacology and Neuroscience , University Walk , Bristol , UK.
  • Marrion NV; a School of Physiology, Pharmacology and Neuroscience , University Walk , Bristol , UK.
  • Zhang H; b Biological Physics Group, School of Physics and Astronomy , University of Manchester , Manchester , United Kingdom.
  • Thomas D; c Department of Cardiology , University of Heidelberg , Heidelberg , Germany.
Expert Opin Ther Targets ; 20(8): 947-58, 2016 Aug.
Article en En | MEDLINE | ID: mdl-26918581
INTRODUCTION: Atrial fibrillation (AF) is the most common arrhythmia in humans. It is progressive and the development of electrical and structural remodeling makes early intervention desirable. Existing antiarrhythmic pharmacological approaches are not always effective and can produce unwanted side effects. Additional atrial-selective antiarrhythmic strategies are therefore desirable. AREAS COVERED: Evidence for three novel ion channel atrial-selective therapeutic targets is evaluated: atrial-selective fast sodium channel current (INa) inhibition; small conductance calcium-activated potassium (SK) channels; and two-pore (K2P) potassium channels. EXPERT OPINION: Data from animal models support atrial-ventricular differences in INa kinetics and also suggest atrial-ventricular differences in sodium channel ß subunit expression. Further work is required to determine whether intrinsic atrial-ventricular differences in human INa exist or whether functional differences occur due to distinct atrial and ventricular action and resting potentials. SK and K2P channels (particularly K2P 3.1) offer potentially attractive atrial-selective targets. Work is needed to identify the underlying basis of SK current that contributes to (patho)physiological atrial repolarization and settings in which SK inhibition is anti- versus pro-arrhythmic. Although K2P3.1 appears to be a promising target with comparatively selective drugs for experimental use, a lack of selective pharmacology hinders evaluation of other K2P channels as potential atrial-selective targets.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Fibrilación Atrial / Terapia Molecular Dirigida / Antiarrítmicos Límite: Animals / Humans Idioma: En Revista: Expert Opin Ther Targets Asunto de la revista: TERAPEUTICA Año: 2016 Tipo del documento: Article Pais de publicación: Reino Unido

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Fibrilación Atrial / Terapia Molecular Dirigida / Antiarrítmicos Límite: Animals / Humans Idioma: En Revista: Expert Opin Ther Targets Asunto de la revista: TERAPEUTICA Año: 2016 Tipo del documento: Article Pais de publicación: Reino Unido