Literature DB >> 27307205

Hyponatraemia alters the biophysical properties of neuronal cells independently of osmolarity: a study on Ni(2+) -sensitive current involvement.

Roberta Squecco1, Paola Luciani2, Eglantina Idrizaj1, Cristiana Deledda2, Susanna Benvenuti2, Corinna Giuliani2, Benedetta Fibbi2, Alessandro Peri2, Fabio Francini1.   

Abstract

What is the central question of this study? Hyponatraemia, an electrolyte disorder encountered in hospitalized patients, can cause neurological symptoms usually attributed to a reduction in plasma osmolarity. Here, we investigated whether low [Na(+) ] per se can cause neuronal changes independent of osmolarity, focusing on involvement of the Na(+) -Ca(2+) exchanger. What is the main finding and its importance? We show that hyponatraemia per se causes alterations of neuronal properties. The novel finding of Na(+) -Ca(2+) exchanger involvement helps us to elucidate the volume regulation following hyponatraemia. This might have relevance in a translational perspective because Na(+) -Ca(2+) exchanger could be a target for novel therapies. Hyponatraemia is the most frequent electrolyte disorder encountered in hospitalized patients, and it can cause a wide variety of neurological symptoms. Most of the negative effects of this condition on neuronal cells are attributed to cell swelling because of the reduction of plasma osmolarity, although in hyponatraemia different membrane proteins are supposed to be involved in the conservation of neuronal volume. We have recently reported detrimental effects of hyponatraemia on two different neuronal cell lines, SK-N-AS and SH-SY5Y, independent of osmotic alterations. In this study we investigated, in the same cell lines, whether hyponatraemic conditions per se can cause electrophysiological alterations and whether these effects vary over time. Accordingly, we carried out experiments in low-sodium medium in either hyposmotic [Osm(-)] or isosmotic [Osm(+)] conditions, for a short (24 h) or long time (7 days). Using a patch pipette in voltage-clamp conditions, we recorded possible modifications of cell capacitance (Cm ) and membrane conductance (Gm ). Our results indicate that in both Osm(-) and Osm(+) medium, Cm and Gm show a similar increase, but such effects are dependent on the time in culture in different ways. Notably, regarding the possible mechanisms involved in the maintenance of Cm , Gm and Gm /Cm in Osm(+) conditions, we observed a greater contribution of the Na(+) -Ca(2+) exchanger compared with Osm(-) and control conditions. Overall, these novel electrophysiological results help us to understand the mechanisms of volume regulation after ionic perturbation. Our results might also have relevance in a translational perspective because the Na(+) -Ca(2+) exchanger can be considered a target for planning novel therapies.
© 2016 The Authors. Experimental Physiology © 2016 The Physiological Society.

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Year:  2016        PMID: 27307205     DOI: 10.1113/EP085806

Source DB:  PubMed          Journal:  Exp Physiol        ISSN: 0958-0670            Impact factor:   2.969


  3 in total

1.  Effects of low extracellular sodium on proliferation and invasive activity of cancer cells in vitro.

Authors:  Giada Marroncini; Benedetta Fibbi; Alice Errico; Cecilia Grappone; Mario Maggi; Alessandro Peri
Journal:  Endocrine       Date:  2019-11-29       Impact factor: 3.633

Review 2.  The Hyponatremia Epidemic: A Frontier Too Far?

Authors:  Angela J Drake-Holland; Mark I M Noble
Journal:  Front Cardiovasc Med       Date:  2016-10-07

3.  Prognostic Impact of Hyponatremia and Hypernatremia in COVID-19 Pneumonia. A HOPE-COVID-19 (Health Outcome Predictive Evaluation for COVID-19) Registry Analysis.

Authors:  Jorge Gabriel Ruiz-Sánchez; Ivan J Núñez-Gil; Martin Cuesta; Miguel A Rubio; Charbel Maroun-Eid; Ramón Arroyo-Espliguero; Rodolfo Romero; Victor Manuel Becerra-Muñoz; Aitor Uribarri; Gisela Feltes; Daniela Trabattoni; María Molina; Marcos García Aguado; Martino Pepe; Enrico Cerrato; Emilio Alfonso; Alex Fernando Castro Mejía; Sergio Raposeiras Roubin; Luis Buzón; Elvira Bondia; Francisco Marin; Javier López Pais; Mohammad Abumayyaleh; Fabrizio D'Ascenzo; Elisa Rondano; Jia Huang; Cristina Fernandez-Perez; Carlos Macaya; Paz de Miguel Novoa; Alfonso L Calle-Pascual; Vicente Estrada Perez; Isabelle Runkle
Journal:  Front Endocrinol (Lausanne)       Date:  2020-11-30       Impact factor: 5.555

  3 in total

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