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Martin C Steward

Explore the profile of Martin C Steward including associated specialties, affiliations and a list of published articles. Areas
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Articles 28
Citations 496
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Recent Articles
11.
Hegyesi O, Foldes A, Bori E, Nemeth Z, Barabas J, Steward M, et al.
Tissue Eng Part C Methods . 2015 Jul; 21(12):1226-36. PMID: 26200762
Functional reconstruction of lost tissue by regenerative therapy of salivary glands would be of immense benefit following radiotherapy or in the treatment of Sjogren's syndrome. The purpose of this study...
12.
Campion K, McCormick W, Warwicker J, Bin Khayat M, Atkinson-Dell R, Steward M, et al.
J Am Soc Nephrol . 2015 Jan; 26(9):2163-71. PMID: 25556167
The calcium-sensing receptor (CaR) modulates renal calcium reabsorption and parathyroid hormone (PTH) secretion and is involved in the etiology of secondary hyperparathyroidism in CKD. Supraphysiologic changes in extracellular pH (pHo)...
13.
El-Chami C, Haslam I, Steward M, ONeill C
Exp Dermatol . 2014 Jun; 23(8):534-7. PMID: 24942488
The ability to conserve water is fundamental to terrestrial life. A number of organs such as the kidney and the bladder have important roles in the regulation of body water...
14.
Kim D, Kim J, Burghardt B, Best L, Steward M
Am J Physiol Cell Physiol . 2014 Jun; 307(2):C208-19. PMID: 24898583
Despite the importance of airway surface liquid pH in the lung's defenses against infection, the mechanism of airway HCO3- secretion remains unclear. Our aim was to assess the contribution of...
15.
Song Y, Yamamoto A, Steward M, Ko S, Stewart A, Soleimani M, et al.
Am J Physiol Cell Physiol . 2012 Aug; 303(8):C815-24. PMID: 22895259
To define the stoichiometry and molecular identity of the Cl(-)/HCO(3)(-) exchanger in the apical membrane of pancreatic duct cells, changes in luminal pH and volume were measured simultaneously in interlobular...
16.
Kim D, Steward M
J Med Invest . 2010 Mar; 56 Suppl:336-42. PMID: 20224219
The secretory epithelia of the pancreatic duct and airway share the ability to generate HCO(3)(-)-rich fluids. They both express CFTR (cystic fibrosis transmembrane conductance regulator) at the apical membrane and...
17.
Futakuchi S, Ishiguro H, Naruse S, Ko S, Fujiki K, Yamamoto A, et al.
J Med Invest . 2010 Mar; 56 Suppl:308-11. PMID: 20224212
Pancreatic duct cells express Na(+)-dependent glucose transporter, SGLT1 and Na(+)-independent glucose transporters, GLUT1, GLUT2, and GLUT8. We examined transepithelial glucose transport by pancreatic duct. Interlobular ducts were isolated from rat...
18.
Futakuchi S, Ishiguro H, Naruse S, Ko S, Fujiki K, Yamamoto A, et al.
Pflugers Arch . 2009 Sep; 459(1):215-26. PMID: 19756716
Cellular mechanisms underlying the impairment of pancreatic fluid and electrolyte secretion in diabetes were examined using interlobular ducts isolated from rat pancreas. Fluid secretion was assessed by monitoring changes in...
19.
Demeter I, Hegyesi O, Nagy A, Case M, Steward M, Varga G, et al.
Pancreas . 2009 Sep; 38(8):913-20. PMID: 19745779
Objectives: The human pancreatic duct cell line, HPAF, has been shown previously to secrete Cl(-) in response to Ca(2+)-mobilizing stimuli. Our aim was to assess the capacity of HPAF cells...
20.
Pascua P, Garcia M, Fernandez-Salazar M, Hernandez-Lorenzo M, Calvo J, Colledge W, et al.
Pflugers Arch . 2009 Aug; 459(1):203-14. PMID: 19655163
The pancreatic pathology in cystic fibrosis (CF) is normally attributed to the failure of ductal fluid secretion resulting from the lack of functional CF transmembrane conductance regulator (CFTR). However, murine...