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 1-20    21-40   41-60   61-65 
1.
A newly developed in vitro model of the human epithelial airway barrier to study the toxic potential of nanoparticles // Altex, 2007. Vol. 24, N 3.-С.188-189

2.
Airway epithelial cells release eosinophil survival promoting factors following stimulation of proteinase-activated receptor-2 (PAR-2) // J. Allergy and Clin. Immunol., 2000. Vol. 105, N 1.-С.S171

3.
Airway epithelial expression of TLR5 is downregulated in healthy smokers and smokers with chronic obstructive pulmonary disease // J. Immunol., 2012. Vol. 189, N 5.-С.2217-2225

4.
Airway epithelial expression of TLR5 is downregulated in healthy smokers and smokers with chronic obstructive pulmonary disease // J. Immunol., 2012. Vol. 189, N 5.-С.2217-2225

5.
Arsenic alters ATP-dependent Ca{2+} signaling in human airway epithelial cell wound response // Toxicol. Sci., 2011. Vol. 121, N 1.-С.191-206

6.
Association of epithelial damage and signs of neutrophil mobilization in the airways during acute exacerbations of paediatric asthma // Clin. and Exp. Immunol., 2006. Vol. 144, N 2.-С.212-216

7.
Bordetella parapertussis invasion of HeLa 229 cells and human respiratory epithelial cells in primary culture // Infec. and Immun., 1989. Vol. 57, N 4.-С.1240-1247

8.
Cao Экспрессия Gq в бронхолегочных тканях у крыс после ингаляции сигаретного дыма // Di-san junyi daxue xuebao, 2004. Vol. 26, N 10.-С.895-898

9.
Cao Экспрессия Gq в бронхолегочных тканях у крыс после ингаляции сигаретного дыма // Di-san junyi daxue xuebao, 2004. Vol. 26, N 10.-С.895-898

10.
Contractile effects of nucleotides in guinea pig isolated, perfused trachea: involvement of respiratory epithelium, prostanoids and Na{+} and Cl{-} channels // J. Pharmacol. and Exp. Ther., 1993. Vol. 264, N 1.-С.210-216

11.
Correlation between airway epithelium-induced relaxation of rat aorta in the co-axial bioassay and cyclic nucleotide levels // Brit. J. Pharmacol., 1992. Vol. 105, N 4.-С.954-958

12.
Coyne C.B. Systematic evaluation of intercellular junctional regulation to enhance gene transfer to airway epithelium // Pediat. Pulmonol., 1999, Suppl. 19.-С.258

13.
Coyne C.B. Systematic evaluation of intercellular junctional regulation to enhance gene transfer to airway epithelium // Pediat. Pulmonol., 1999, Suppl. 19.-С.258

14.
Cytokine, chemokine, and nitric oxide (NO) release in stimulated small airway epithelial cells (SAEC) treated with 'бета'[2]-agonist enantiomers of albuterol // J. Allergy and Clin. Immunol., 2000. Vol. 105, N 1.-С.S292

15.
Cytokine, chemokine, and nitric oxide (NO) release in stimulated small airway epithelial cells (SAEC) treated with 'бета'[2]-agonist enantiomers of albuterol // J. Allergy and Clin. Immunol., 2000. Vol. 105, N 1.-С.S292

16.
Cytokine, chemokine, and nitric oxide (NO) release in stimulated small airway epithelial cells (SAEC) treated with 'бета'[2]-agonist enantiomers of formoterol // J. Allergy and Clin. Immunol., 2000. Vol. 105, N 1.-С.S292

17.
Cytokine, chemokine, and nitric oxide (NO) release in stimulated small airway epithelial cells (SAEC) treated with 'бета'[2]-agonist enantiomers of formoterol // J. Allergy and Clin. Immunol., 2000. Vol. 105, N 1.-С.S292

18.
Distinct transduction difference between adeno-associated virus type 1 and type 6 vectors in human polarized airway epithelia // Gene Ther., 2013. Vol. 20, N 3.-С.328-337

19.
Effect of an adrenergic agonist and a cholinergic antagonist on the airway epithelium // Vet. med., 1997. Vol. 42, N 10.-С.289-293

20.
Effect of an adrenergic agonist and a cholinergic antagonist on the airway epithelium // Vet. med., 1997. Vol. 42, N 10.-С.289-293

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