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Dive into the research topics where María Carolina Ciancio is active.

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Featured researches published by María Carolina Ciancio.


Journal of Molecular and Cellular Cardiology | 2015

Aldosterone stimulates the cardiac sodium/bicarbonate cotransporter via activation of the g protein-coupled receptor gpr30

Verónica C. De Giusti; Alejandro Orlowski; María Carolina Ciancio; María Sofía Espejo; Luis Alberto Gonano; Claudia I. Caldiz; Martin Vila Petroff; María C. Villa-Abrille; Ernesto A. Aiello

Some cardiac non-genomic effects of aldosterone (Ald) are reported to be mediated through activation of the classic mineralocorticoid receptor (MR). However, in the last years, it was proposed that activation of the novel G protein-coupled receptor GPR30 mediates certain non-genomic effects of Ald. The aim of this study was to elucidate if the sodium/bicarbonate cotransporter (NBC) is stimulated by Ald and if the activation of GPR30 mediates this effect. NBC activity was evaluated in rat cardiomyocytes perfused with HCO3(-)/CO2 solution in the continuous presence of HOE642 (sodium/hydrogen exchanger blocker) during recovery from acidosis using intracellular fluorescence measurements. Ald enhanced NBC activity (% of ΔJHCO3(-); control: 100±5.82%, n=7 vs Ald: 151.88±11.02%, n=5; P<0.05), which was prevented by G15 (GPR30 blocker, 90.53±7.81%, n=7). Further evidence for the involvement of GPR30 was provided by G1 (GPR30 agonist), which stimulated NBC (185.13±18.28%, n=6; P<0.05) and this effect was abrogated by G15 (124.19±10.96%, n=5). Ald- and G1-induced NBC stimulation was abolished by the reactive oxygen species (ROS) scavenger MPG and by the NADPH oxidase inhibitor apocynin. In addition, G15 prevented Ald- and G1-induced ROS production. Pre-incubation of myocytes with wortmannin (PI3K-AKT pathway blocker) prevented Ald- or G1-induced NBC stimulation. In summary, Ald stimulates NBC by GPR30 activation, ROS production and AKT stimulation.


Cardiovascular Research | 2014

Reduced sarcolemmal expression and function of the NBCe1 isoform of the Na+–HCO3− cotransporter in hypertrophied cardiomyocytes of spontaneously hypertensive rats: role of the renin–angiotensin system

Alejandro Orlowski; María Carolina Ciancio; Claudia I. Caldiz; Verónica C. De Giusti; Ernesto A. Aiello

AIMS Electroneutral (NBCn1) and electrogenic (NBCe1) isoforms of the Na(+)-HCO3(-) cotransporter (NBC) coexist in the heart. We studied the expression and function of these isoforms in hearts of Wistar and spontaneously hypertensive rats (SHR), elucidating the direct implication of the renin-angiotensin system in the NBC regulation. METHODS AND RESULTS We used myocytes from Wistar, SHR, losartan-treated SHR (Los-SHR), and Angiotensin II (Ang II)-induced cardiac hypertrophy. We found an overexpression of NBCe1 and NBCn1 proteins in SHR that was prevented in Los-SHR. Hyperkalaemic-induced pHi alkalization was used to study selective activation of NBCe1. Despite the increase in NBCe1 expression, its activity was lower in SHR than in Wistar or Los-SHR. Similar results were found in Ang II-induced hypertrophy. A specific inhibitory antibody against NBCe1 allowed the discrimination between NBCe1 and NBCn1 activity. Whereas in SHR most of the pHi recovery was due to NBCn1 stimulation, in Wistar and Los-SHR the activity of both isoforms was equitable, suggesting that the deteriorated cardiac NBCe1 function observed in SHR is compensated by an enhanced activity of NBCn1. Using the biotin method, we observed greater level of internalized NBCe1 protein in SHR than in the non-hypertophic groups, while with immunofluorescence we localized the protein in endosomes near the nucleus only in SHR. CONCLUSIONS We conclude that Ang II is responsible for the impairment of the NBCe1 in hypertrophied hearts. This is due to retained transporter protein units in early endosomes. Moreover, NBCn1 activity seems to be increased in the hypertrophic myocardium of SHR, compensating impaired function of NBCe1.


Cellular Physiology and Biochemistry | 2014

Characterization of the Na+/HCO3- Cotransport in Human Neutrophils

Miriam S. Giambelluca; María Carolina Ciancio; Alejandro Orlowski; Oscar A. Gende; Marc Pouliot; Ernesto A. Aiello

Background: Bicarbonate transport has crucial roles in regulating intracellular pH (pHi) in a variety of cells. The purpose of this study was to evaluate its participation in the regulation of pHi in resting and stimulated human neutrophils. Methods: Freshly isolated human neutrophils acidified by an ammonium prepulse were used in this study. Results: We demonstrated that resting neutrophils have a bicarbonate transport mechanism that prevents acidification when the Na+/H+ exchanger is blocked by EIPA. Neutrophils acidified by an ammonium prepulse showed an EIPA-resistant recovery of pHi that was inhibited by the blocker of the anionic transporters SITS or the Na+/HCO3- cotransporter (NBC) selective inhibitor S0859, and abolished when sodium was removed from the extracellular medium. In western blot and RT-PCR analysis the expression of NBCe2 but not NBCe1 or NBCn1 was detected in neutrophils Acidified neutrophils increased the EIPA-insensitive pHi recovery rate when its activity was stimulated with fMLF/ cytochalasin B. This increase in the removal of acid equivalents was insensitive to the blockade of the NADPH oxidase with DPI. Conclusion: It is concluded that neutrophils have an NBC that regulates basal pHi and is modulated by chemotactic agents.


Channels | 2016

The cardiac electrogenic sodium/bicarbonate cotransporter (NBCe1) is activated by aldosterone through the G protein-coupled receptor 30 (GPR 30)

Alejandro Orlowski; Verónica C. De Giusti; María Carolina Ciancio; María Sofía Espejo; Ernesto A. Aiello

ABSTRACT The sodium/bicarbonate cotransporter (NBC) transports extracellular Na+ and HCO3− into the cytoplasm upon intracellular acidosis, restoring the acidic pHi to near neutral values. Two different NBC isoforms have been described in the heart, the electroneutral NBCn1 (1Na+:1HCO3−) and the electrogenic NBCe1 (1Na+:2HCO3−). Certain non-genomic effects of aldosterone (Ald) were due to an orphan G protein-couple receptor 30 (GPR30). We have recently demonstrated that Ald activates GPR30 in adult rat ventricular myocytes, which transactivates the epidermal growth factor receptor (EGFR) and in turn triggers a reactive oxygen species (ROS)- and PI3K/AKT-dependent pathway, leading to the stimulation of NBC. The aim of this study was to investigate the NBC isoform involved in the Ald/GPR30-induced NBC activation. Using specific NBCe1 inhibitory antibodies (a-L3) we demonstrated that Ald does not affect NBCn1 activity. Ald was able to increase NBCe1 activity recorded in isolation. Using immunofluorescence and confocal microscopy analysis we showed in this work that both NBCe1 and GPR30 are localized in t-tubules. In conclusion, we have demonstrated that NBCe1 is the NBC isoform activated by Ald in the heart.


Frontiers in Physiology | 2014

Modulation of the cardiac sodium/bicarbonate cotransporter by the renin angiotensin aldosterone system: pathophysiological consequences.

Verónica C. De Giusti; María Carolina Ciancio; Alejandro Orlowski; Ernesto A. Aiello

The sodium/bicarbonate cotransporter (NBC) is one of the major alkalinizing mechanisms in the cardiomyocytes. It has been demonstrated the existence of at least two functional isoforms, one that promotes the co-influx of 1 molecule of Na+ per 1 molecule of HCO−3 (electroneutral isoform; NBCn1) and the other one that generates the co-influx of 1 molecule of Na+ per 2 molecules of HCO−3 (electrogenic isoform; NBCe1). Both isoforms are important to maintain intracellular pH (pHi) and sodium concentration ([Na+]i). In addition, NBCe1 generates an anionic repolarizing current that modulates the action potential duration (APD). The renin-angiotensin-aldosterone system (RAAS) is implicated in the modulation of almost all physiological cardiac functions and is also involved in the development and progression of cardiac diseases. It was reported that angiotensin II (Ang II) exhibits an opposite effect on NBC isoforms: it activates NBCn1 and inhibits NBCe1. The activation of NBCn1 leads to an increase in pHi and [Na+]i, which indirectly, due to the stimulation of reverse mode of the Na+/Ca2+ exchanger (NCX), conduces to an increase in the intracellular Ca2+ concentration. On the other hand, the inhibition of NBCe1 generates an APD prolongation, potentially representing a risk of arrhythmias. In the last years, the potentially altered NBC function in pathological scenarios, as cardiac hypertrophy and ischemia-reperfusion, has raised increasing interest among investigators. This review attempts to draw the attention on the relevant regulation of NBC activity by RAAS, since it modulates pHi and [Na+]i, which are involved in the development of cardiac hypertrophy, the damage produced by ischemia-reperfusion and the generation of arrhythmic events, suggesting a potential role of NBC in cardiac diseases.


Tercera Época | 2016

Desarrollo de hipertrofia cardiaca inducida por la inhibición específica del cotransportador NA+/HCO3-electrogénico cardiaco

R. A. Di Mattía; María Carolina Ciancio; Ernesto A. Aiello; Alejandro Orlowski


Archive | 2015

on lactate transport into isolated cardiac myocytes Effect of myocardial volume overload and heart failure

Dean D. Schwartz; Alejandro Orlowski; María Carolina Ciancio; Claudia I. Caldiz; Verónica C. De Giusti; A Ernesto


Tercera Época | 2014

Desarrollo de un shRNA en un vector lentiviral para la inhibición específica de laisoforma electrogénica del cotransportador sodio/bicarbonato cardíaco

R. A. Di Mattía; María Carolina Ciancio; M. De Martino; Ernesto A. Aiello; Alejandro Orlowski


Archive | 2014

Characterization of the Na + /HCO 3 - Cotransport in Human Neutrophils

Miriam S. Giambelluca; María Carolina Ciancio; Alejandro Orlowski; Oscar A. Gende; Marc Pouliot; Ernesto A. Aiello


Tercera Época | 2012

La asociación funcional de la adenilato ciclasa soluble (sAC) y el cotransportadorsodio/bicarbonato (NBC) conforma una simbiosis reguladora de la contractilidad basalcardíaca

María Carolina Ciancio; Alejandro Orlowski; Julia Lembo; Ernesto A. Aiello

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Alejandro Orlowski

National University of La Plata

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Ernesto A. Aiello

National University of La Plata

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Verónica C. De Giusti

National University of La Plata

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Claudia I. Caldiz

National University of La Plata

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Miriam S. Giambelluca

National University of La Plata

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Oscar A. Gende

National University of La Plata

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María Sofía Espejo

National University of La Plata

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Luis Alberto Gonano

National University of La Plata

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Martin Vila Petroff

National University of La Plata

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