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Items: 1 to 20 of 71

1.

Cellular mechanism underlying formaldehyde-stimulated Cl- secretion in rat airway epithelium.

Luo YL, Guo HM, Zhang YL, Chen PX, Zhu YX, Huang JH, Zhou WL.

PLoS One. 2013;8(1):e54494. doi: 10.1371/journal.pone.0054494. Epub 2013 Jan 23.

2.

Cellular mechanisms of carbachol-stimulated Cl- secretion in rat epididymal epithelium.

Du JY, Ruan YC, Zuo WL, Yang ZH, Chen MH, Wu ZL, Xiang H, Zhou WL.

Biol Reprod. 2006 Sep;75(3):407-13. Epub 2006 Jun 7.

PMID:
16760378
3.

Chloride channel function is linked to epithelium-dependent airway relaxation.

Fortner CN, Lorenz JN, Paul RJ.

Am J Physiol Lung Cell Mol Physiol. 2001 Feb;280(2):L334-41.

4.
5.

Evidence for basolateral Cl- channels as modulators of apical Cl- secretion in pulmonary epithelia of Xenopus laevis.

Berger J, Richter K, Clauss WG, Fronius M.

Am J Physiol Regul Integr Comp Physiol. 2011 Mar;300(3):R616-23. doi: 10.1152/ajpregu.00464.2010. Epub 2010 Dec 1.

6.

Influence of influenza A infection on capsaicin-induced responses in murine airways.

Taylor SJ, Mann TS, Henry PJ.

J Pharmacol Exp Ther. 2012 Feb;340(2):377-85. doi: 10.1124/jpet.111.187872. Epub 2011 Nov 7.

7.

Suppression of CFTR-mediated Cl secretion of airway epithelium in vitamin C-deficient mice.

Kim Y, Kim H, Yoo HY, Kang JS, Kim SJ, Kim JK, Cho HS.

J Korean Med Sci. 2011 Mar;26(3):317-24. doi: 10.3346/jkms.2011.26.3.317. Epub 2011 Feb 25.

8.

Novel effects of minocycline on Ca(2+)-dependent Cl(-) secretion in human airway epithelial Calu-3 cells.

Ito Y, Son M, Kume H, Yamaki K.

Toxicol Appl Pharmacol. 2001 Oct 15;176(2):101-9.

PMID:
11601886
10.

Polarized distribution of HCO3- transport in human normal and cystic fibrosis nasal epithelia.

Paradiso AM, Coakley RD, Boucher RC.

J Physiol. 2003 Apr 1;548(Pt 1):203-18. Epub 2003 Jan 31.

11.

Basolateral Cl channels in primary airway epithelial cultures.

Fischer H, Illek B, Finkbeiner WE, Widdicombe JH.

Am J Physiol Lung Cell Mol Physiol. 2007 Jun;292(6):L1432-43. Epub 2007 Feb 23.

12.

Cordyceps militaris extract stimulates Cl(-) secretion across human bronchial epithelia by both Ca(2+)(-) and cAMP-dependent pathways.

Fung JC, Yue GG, Fung KP, Ma X, Yao XQ, Ko WH.

J Ethnopharmacol. 2011 Oct 31;138(1):201-11. doi: 10.1016/j.jep.2011.08.081. Epub 2011 Sep 12.

PMID:
21939749
13.

CFTR and calcium-activated chloride channels in primary cultures of human airway gland cells of serous or mucous phenotype.

Fischer H, Illek B, Sachs L, Finkbeiner WE, Widdicombe JH.

Am J Physiol Lung Cell Mol Physiol. 2010 Oct;299(4):L585-94. doi: 10.1152/ajplung.00421.2009. Epub 2010 Jul 30.

14.

Acid-induced modulation of airway basal tone and contractility: role of acid-sensing ion channels (ASICs) and TRPV1 receptor.

Faisy C, Planquette B, Naline E, Risse PA, Frossard N, Fagon JY, Advenier C, Devillier P.

Life Sci. 2007 Sep 8;81(13):1094-102. Epub 2007 Sep 4.

PMID:
17869310
15.

Involvement of Na+-HCO3- cotransporter in mediating cyclic adenosine 3',5'-monophosphate-dependent HCO3- secretion by mouse endometrial epithelium.

Wang XF, Yu MK, Leung KM, Yip CY, Ko WH, Liu CQ, Chan HC.

Biol Reprod. 2002 Jun;66(6):1846-52.

PMID:
12021071
16.

Inhibition of amiloride-sensitive Na(+) absorption by activation of CFTR in mouse endometrial epithelium.

Chan LN, Wang XF, Tsang LL, So SC, Chung YW, Liu CQ, Chan HC.

Pflugers Arch. 2001;443 Suppl 1:S132-6. Epub 2001 Jul 10.

PMID:
11845319
17.
18.

Comparison of vectorial ion transport in primary murine airway and human sinonasal air-liquid interface cultures, models for studies of cystic fibrosis, and other airway diseases.

Zhang S, Fortenberry JA, Cohen NA, Sorscher EJ, Woodworth BA.

Am J Rhinol Allergy. 2009 Mar-Apr;23(2):149-52. doi: 10.2500/ajra.2009.23.3285.

PMID:
19401039
20.

Naringenin Regulates CFTR Activation and Expression in Airway Epithelial Cells.

Shi R, Xiao ZT, Zheng YJ, Zhang YL, Xu JW, Huang JH, Zhou WL, Li PB, Su WW.

Cell Physiol Biochem. 2017;44(3):1146-1160. doi: 10.1159/000485419. Epub 2017 Nov 27.

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