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Endogenous bioelectric currents promote differentiation of the mammalian lens.
Cao, Lin; Liu, Jie; Pu, Jin; Collinson, J Martin; Forrester, John V; McCaig, Colin D.
Afiliación
  • Cao L; Institute of Medical Sciences, School of Medicine, Medical Sciences and Nutrition, University of Aberdeen, Aberdeen, UK.
  • Liu J; Department of Ophthalmology, First Hospital Affiliated to the Chinese PLA General Hospital, Beijing, P.R. China.
  • Pu J; Institute of Medical Sciences, School of Medicine, Medical Sciences and Nutrition, University of Aberdeen, Aberdeen, UK.
  • Collinson JM; Institute of Medical Sciences, School of Medicine, Medical Sciences and Nutrition, University of Aberdeen, Aberdeen, UK.
  • Forrester JV; Institute of Medical Sciences, School of Medicine, Medical Sciences and Nutrition, University of Aberdeen, Aberdeen, UK.
  • McCaig CD; Institute of Medical Sciences, School of Medicine, Medical Sciences and Nutrition, University of Aberdeen, Aberdeen, UK.
J Cell Physiol ; 233(3): 2202-2212, 2018 Mar.
Article en En | MEDLINE | ID: mdl-28661005
ABSTRACT
The functional roles of bioelectrical signals (ES) created by the flow of specific ions at the mammalian lens equator are poorly understood. We detected that mature, denucleated lens fibers expressed high levels of the α1 and ß1 subunits of Na+ /K+ -ATPase (ATP1A1 and ATP1B1 of the sodium pump) and had a hyperpolarized membrane potential difference (Vmem ). In contrast, differentiating, nucleated lens fiber cells had little ATP1A1 and ATP1B1 and a depolarized Vmem . Mimicking the natural equatorial ES with an applied electrical field (EF) induced a striking reorientation of lens epithelial cells to lie perpendicular to the direction of the EF. An EF also promoted the expression of ß-crystallin, aquaporin-0 (AQP0) and the Beaded Filament Structural Protein 2 (BFSP2) in lens epithelial cells (LECs), all of which are hallmarks of differentiation. In addition, applied EF activated the AKT and CDC2 and inhibition of AKT reduced the activation of CDC2. Our results indicate that the endogenous bioelectrical signal at the lens equator promotes differentiation of LECs into denucleated lens fiber cells via depolarization of Vmem. Development of methods and devices of EF application or amplification in vivo may supply a novel treatment for lens diseases and even promote regeneration of a complete new lens following cataract surgery.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: ATPasa Intercambiadora de Sodio-Potasio / Conductividad Eléctrica / Células Epiteliales / Cristalino Límite: Animals / Humans Idioma: En Revista: J Cell Physiol Año: 2018 Tipo del documento: Article País de afiliación: Reino Unido

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: ATPasa Intercambiadora de Sodio-Potasio / Conductividad Eléctrica / Células Epiteliales / Cristalino Límite: Animals / Humans Idioma: En Revista: J Cell Physiol Año: 2018 Tipo del documento: Article País de afiliación: Reino Unido