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1.
Cantiello Horacio F. 'альфа'[2]-Adrenergic receptors and the Na+/H+ exchanger in the intestinal epithelial cell line, HT-29 // J. Biol. Chem., 1989. Vol. 264, N 27.-С.16000-16007

2.
'каппа' Opioid receptor interacts with Na{+}/H{+}-exchanger regulatory factor-1/Ezrin-radixin-moesin-binding phosphoprotein-50 (NHERF-1/EBP50) to stimulate Na{+}/H{+} exchange independent of G[i]/G[o] proteins // J. Biol. Chem., 2004. Vol. 279, N 24.-С.25002-25009

3.
A Ca{2+}-dependent tryptic cleavage site and a protein kinase A phosphorylation site are present in the Ca{2+} regulatory domain of scallop muscle Na{+}-Ca{2+} exchanger // J. Biol. Chem., 2000. Vol. 275, N 30.-С.22961-22968

4.
Widdas W.F. A kinetic relationship of the red cell carbonic anhydrase and anion exchanger // J. Physiol. Proc., 1995, N 482.-С.36/P

5.
A model of Na{+}/H{+} exchanger and its central role in regulation of pH and Na{+} in cardiac myocytes // Biophys. J., 2009. Vol. 97, N 10.-С.2674-2683

6.
Kaneko A new stilbene disulfonate-insensitive anion exchange in canine reticulocytes // Jap. J. Vet. Res., 1993. Vol. 41, N 1.-С.24

7.
Atti A process for producing exchange devices for medical use and exchange device produced thereby

8.
A unique Na{+}/H{+} exchanger, analogous to NHE1, in the chicken embryonic fibroblast // Amer. J. Physiol., 1999. Vol. 276, N 3.-С.R838-R846

9.
A unique Na{+}/H{+} exchanger, analogous to NHE1, in the chicken embryonic fibroblast // Amer. J. Physiol., 1999. Vol. 276, N 3.-С.R838-R846

10.
A unique Na{+}/H{+} exchanger, analogous to NHE1, in the chicken embryonic fibroblast // Amer. J. Physiol., 1999. Vol. 276, N 3.-С.R838-R846

11.
Edelman Jeffrey L. Acidification stimulates chloride and fluid absorption across frog retinal pigment epithelium // Amer. J. Physiol., 1994. Vol. 266, N 4.-С.С946-С956

12.
Smith Activation of adenylyl cyclase downregulates sodium/calcium exchanger of arterial myocytes // Amer. J. Physiol., 1995. Vol. 269, N 6.-С.C1379-C1384

13.
Olszewski Activation of Na{+}/H{+} exchanger 1 by neurotensin signaling in pancreatic cancer cell lines // Biochem. and Biophys. Res. Commun., 2010. Vol. 393, N 3.-С.414-419

14.
Activation of the sodium/hydrogen exchanger via the fibronectin-integrin pathway results in hematopoietic stimulation // J. Cell. Physiol., 1998. Vol. 177, N 1.-С.109-122

15.
Hakvoort Active transport properties of porcine choroid plexus cells in culture // Brain Res., 1998. Vol. 795, N 1-2.-С.247-"56

16.
Acute saline infusion induces extracellular acidification and activation of the Na{+}/H{+} exchanger in man // Eur. J. Clin. Invest., 1997. Vol. 27, N 7.-С.558-565

17.
Laverty Adaptation of teleosts to very high salinity // Compar. Biochem. and Physiol. A, 2012. Vol. 163, N 1.-С.1-6

18.
AE4 is a DIDS-sensitive Cl{-}/HCO[3]{-} exchanger in the basolateral membrane of the renal CCD and the SMG duct // Amer. J. Physiol., 2002. Vol. 283, N 4.-С.C1206-C1218

19.
Aldosterone increases NHE-1 expression and induces NHE-1-dependent hypertrophy in neonatal rat ventricular myocytes // Hypertension, 2003. Vol. 42, N 6.-С.1171-1176

20.
Hoyt Kari R. Alkalinization prolongs recovery from glutamate-induced increases in intracellular Ca{2+} concentration by enhancing Ca{2+} efflux through the mitochondrial Na{+}/Ca{2+} exchanger in cultured rat forebrain neurons // J. Neurochem., 1998. Vol. 71, N 3.-С.1051-1058

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