Literature DB >> 7586232

pHi regulation in myocardium of the spontaneously hypertensive rat. Compensated enhanced activity of the Na(+)-H+ exchanger.

N G Pérez1, B V Alvarez, M C Camilión de Hurtado, H E Cingolani.   

Abstract

To elucidate the mechanisms controlling pHi in myocardium of the spontaneously hypertensive rat (SHR), experiments were performed in papillary muscles (isometrically contracting at 0.2 Hz) from SHR and age-matched normotensive Wistar-Kyoto (WKY) rats loaded with the pH-sensitive fluorescent probe BCECF-AM. An enhanced activity of the Na(+)-H+ exchanger was detected in the hypertrophic myocardium of SHR. This conclusion was based on the following: (1) The myocardial pHi was more alkaline in SHR (7.23 +/- 0.03) than in WKY rats (7.10 +/- 0.03) (P < .05) in HEPES buffer. (2) SITS (0.1 mmol/L in HEPES buffer) did not alter pHi in the SHR (pHi 7.26 +/- 0.03 and 7.28 +/- 0.03 before and after SITS, respectively). (3) The fall in pHi observed after 20 minutes of Na(+)-H+ exchanger inhibition [5 mumol/L 5-(N-ethyl-N-isopropyl)amiloride (EIPA)] was greater in SHR (-0.16 +/- 0.01) than in WKY rats (-0.09 +/- 0.02, P < 0.05). (4) The velocity of pHi recovery from an intracellular acid load was faster in SHR than in WKY rats (0.068 +/- 0.02 versus 0.014 +/- 0.002 pH units/min at pHi 6.99, P < .05). (5) After EIPA inhibition, the rate of pHi recovery from the same acid load decreased to a similar value in both rat strains (0.0032 +/- 0.002 pH units/min in SHR and 0.0032 +/- 0.002 pH units/min in WKY rats). Under the more physiological HCO3(-)-CO2 buffer, no significant difference in steady state myocardial pHi was detected between rat strains (7.15 +/- 0.03 in SHR and 7.11 +/- 0.05 in WKY rats).(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1995        PMID: 7586232     DOI: 10.1161/01.res.77.6.1192

Source DB:  PubMed          Journal:  Circ Res        ISSN: 0009-7330            Impact factor:   17.367


  21 in total

1.  Antibodies against the cardiac sodium/bicarbonate co-transporter (NBCe1) as pharmacological tools.

Authors:  Verónica C De Giusti; Alejandro Orlowski; María C Villa-Abrille; Gladys E Chiappe de Cingolani; Joseph R Casey; Bernardo V Alvarez; Ernesto A Aiello
Journal:  Br J Pharmacol       Date:  2011-12       Impact factor: 8.739

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

Authors:  Alejandro Orlowski; Verónica C De Giusti; María C Ciancio; María S Espejo; Ernesto A Aiello
Journal:  Channels (Austin)       Date:  2016-06-01       Impact factor: 2.581

3.  Loss of the AE3 anion exchanger in a hypertrophic cardiomyopathy model causes rapid decompensation and heart failure.

Authors:  Nabeel J Al Moamen; Vikram Prasad; Ilona Bodi; Marian L Miller; Michelle L Neiman; Valerie M Lasko; Seth L Alper; David F Wieczorek; John N Lorenz; Gary E Shull
Journal:  J Mol Cell Cardiol       Date:  2010-11-04       Impact factor: 5.000

4.  The reduced myofilament responsiveness to calcium contributes to the negative force-frequency relationship in rat cardiomyocytes: role of reactive oxygen species and p-38 map kinase.

Authors:  María Sofía Espejo; Ignacio Aiello; Marisa Sepúlveda; Martín G Vila Petroff; Ernesto A Aiello; Verónica C De Giusti
Journal:  Pflugers Arch       Date:  2017-08-23       Impact factor: 3.657

5.  Ca(2+)/calmodulin-dependent protein kinase II contributes to intracellular pH recovery from acidosis via Na(+)/H(+) exchanger activation.

Authors:  Martín Vila-Petroff; Cecilia Mundiña-Weilenmann; Noelia Lezcano; Andrew K Snabaitis; María Ana Huergo; Carlos A Valverde; Metin Avkiran; Alicia Mattiazzi
Journal:  J Mol Cell Cardiol       Date:  2009-12-21       Impact factor: 5.000

6.  In vivo key role of reactive oxygen species and NHE-1 activation in determining excessive cardiac hypertrophy.

Authors:  Oscar H Cingolani; Néstor G Pérez; Irene L Ennis; María C Alvarez; Susana M Mosca; Guillermo R Schinella; Eduardo M Escudero; Gloria Cónsole; Horacio E Cingolani
Journal:  Pflugers Arch       Date:  2011-08-26       Impact factor: 3.657

7.  Elevated myocardial Na+/H+ exchanger isoform 1 activity elicits gene expression that leads to cardiac hypertrophy.

Authors:  Jin Xue; Fatima Mraiche; Dan Zhou; Morris Karmazyn; Tatsujiro Oka; Larry Fliegel; Gabriel G Haddad
Journal:  Physiol Genomics       Date:  2010-05-11       Impact factor: 3.107

8.  Bicarbonate homeostasis in excitable tissues: role of AE3 Cl-/HCO3- exchanger and carbonic anhydrase XIV interaction.

Authors:  Joseph R Casey; William S Sly; Gul N Shah; Bernardo V Alvarez
Journal:  Am J Physiol Cell Physiol       Date:  2009-08-19       Impact factor: 4.249

9.  Dietary salt restriction in hyperthyroid rats. Differential influence on left and right ventricular mass.

Authors:  Rosemary Wangensteen; Isabel Rodríguez-Gómez; Rocío Perez-Abud; Andrés Quesada; Sebastián Montoro-Molina; Antonio Osuna; Félix Vargas
Journal:  Exp Biol Med (Maywood)       Date:  2014-07-16

10.  The functional association between the sodium/bicarbonate cotransporter (NBC) and the soluble adenylyl cyclase (sAC) modulates cardiac contractility.

Authors:  María S Espejo; Alejandro Orlowski; Alejandro M Ibañez; Romina A Di Mattía; Fernanda Carrizo Velásquez; Noelia S Rossetti; María C Ciancio; Verónica C De Giusti; Ernesto A Aiello
Journal:  Pflugers Arch       Date:  2019-11-22       Impact factor: 3.657

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