Barry E Argent
Overview
Explore the profile of Barry E Argent including associated specialties, affiliations and a list of published articles.
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15
Citations
257
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Recent Articles
1.
Broadbent S, Ramjeesingh M, Bear C, Argent B, Linsdell P, Gray M
Pflugers Arch
. 2014 Oct;
467(8):1783-94.
PMID: 25277268
The cystic fibrosis transmembrane conductance regulator (CFTR) is a Cl(-) channel that governs the quantity and composition of epithelial secretions. CFTR function is normally tightly controlled as dysregulation can lead...
2.
Pallagi P, Venglovecz V, Rakonczay Jr Z, Borka K, Korompay A, Ozsvari B, et al.
Gastroenterology
. 2011 Sep;
141(6):2228-2239.e6.
PMID: 21893120
Background & Aims: The effects of trypsin on pancreatic ductal epithelial cells (PDECs) vary among species and depend on the localization of proteinase-activated receptor 2 (PAR-2). We compared PAR-2 localization...
3.
Kemeny L, Hegyi P, Rakonczay Jr Z, Borka K, Korompay A, Gray M, et al.
Pancreas
. 2011 Jun;
40(5):793-5.
PMID: 21673544
No abstract available.
4.
Ignath I, Hegyi P, Venglovecz V, Szekely C, Carr G, Hasegawa M, et al.
Pancreas
. 2009 Sep;
38(8):921-9.
PMID: 19752774
Objectives: Low doses of chenodeoxycholate (CDC) stimulate apical anion exchange and HCO3(-) secretion in guinea pig pancreatic duct cells (Gut. 2008;57:1102-1112). We examined the effects of CDC on intracellular pH...
5.
Hegyi P, Rakonczay Jr Z, Farkas K, Venglovecz V, Ozsvari B, Seidler U, et al.
Pancreas
. 2008 Jul;
37(2):232-4.
PMID: 18665094
No abstract available.
6.
Rakonczay Jr Z, Hegyi P, Hasegawa M, Inoue M, You J, Iida A, et al.
J Cell Physiol
. 2007 Jul;
214(2):442-55.
PMID: 17654517
Cystic fibrosis (CF) is a fatal inherited disease caused by the absence or dysfunction of the CF transmembrane conductance regulator (CFTR) Cl- channel. About 70% of CF patients are exocrine...
7.
Hegyi P, Rakonczay Jr Z, Tiszlavicz L, Varro A, Toth A, Racz G, et al.
Novartis Found Symp
. 2006 Nov;
273:164-73.
PMID: 17120767
SLC26 anion exchangers (probably SLC26A3 and SLC26A6) are expressed on the apical membrane of pancreatic duct cells and play a key role in HCO3- secretion; a process that is inhibited...
8.
Rakonczay Jr Z, Fearn A, Hegyi P, Boros I, Gray M, Argent B
World J Gastroenterol
. 2006 Mar;
12(6):885-95.
PMID: 16521216
Aim: To characterize H+ and HCO3- transporters in polarized CFPAC-1 human pancreatic duct cells, which were derived from a cystic fibrosis patient with the DeltaF508 CFTR mutation. Methods: CFPAC-1 cells...
9.
Hegyi P, Rakonczay Jr Z, Tiszlavicz L, Varro A, Toth A, Racz G, et al.
Am J Physiol Cell Physiol
. 2004 Dec;
288(5):C1030-41.
PMID: 15625303
The inhibitory control of pancreatic ductal HCO(3)(-) secretion may be physiologically important in terms of limiting the hydrostatic pressure developed within the ducts and in terms of switching off pancreatic...
10.
Davidson D, Gray M, Kilanowski F, Tarran R, Randell S, Sheppard D, et al.
J Cyst Fibros
. 2004 Oct;
3 Suppl 2:59-62.
PMID: 15463928
We describe an air-liquid interface primary culture method for murine tracheal epithelial cells on semi-permeable membranes, forming polarized epithelia with a high transepithelial resistance, differentiation to ciliated and secretory cells,...