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1 sociated' epigenomic alterations in cultured respiratory epithelia.
2 ine epigenomic effects of cigarette smoke in respiratory epithelia.
3 undance of the antibacterial lectin Reg3g in respiratory epithelia.
4  mediates efficient adherence to genital and respiratory epithelia.
5 e permeability, and water homeostasis in the respiratory epithelia.
6 rasite invasion occurs within the ductal and respiratory epithelia.
7 s corridor of oral, lingual, pharyngeal, and respiratory epithelia.
8 ired to facilitate gene transfer to ciliated respiratory epithelia.
9 to open tight junctions in the olfactory and respiratory epithelia.
10 ance between ion secretion and absorption by respiratory epithelia.
11 tion of TMEM16A attenuates IL-8 secretion in respiratory epithelia.
12 rafts demonstrated a loss of normal ciliated respiratory epithelia and a CD8/CD4-positive lymphocytic
13 irus was released from the apical surface of respiratory epithelia and did not disrupt tight junction
14 p C adenoviruses cause an acute infection in respiratory epithelia and establish a long-term or persi
15 evaluate microRNA expression in normal human respiratory epithelia and lung cancer cells cultured in
16 ory system, stimulation of T2Rs expressed in respiratory epithelia and smooth muscle has been implica
17 135 (E = 6e-78) highly expressed in ciliated respiratory epithelia and sperm, and to FAP50 (E = 1e-28
18 on of Na+ channels by CFTR is not limited to respiratory epithelia and to epithelial cells in culture
19 UC5B is a major polymeric mucin expressed by respiratory epithelia, and we investigated the molecular
20                          Epigenetic marks in respiratory epithelia are associated with allergic asthm
21 cular cells that support the neurons and the respiratory epithelia, because naris occlusion decreased
22 for IgA transport by intestinal, mammary, or respiratory epithelia but is necessary for the stable as
23 , despite the fact that ion transport across respiratory epithelia involves both cellular and paracel
24 a in children, the epigenetic alterations in respiratory epithelia might provide insight into allergi
25 agnitude was observed in fibroblasts, liver, respiratory epithelia, muscle, and brain.
26 tella pertussis, causes cytopathology in the respiratory epithelia of mammals and robustly triggers t
27        This gene is expressed throughout the respiratory epithelia of non-CF and CF lungs, and its pr
28 analysis and by in situ hybridization in the respiratory epithelia of trachea and bronchi.
29 ther play a direct role in attachment to the respiratory epithelia or exhibit similarity to known bac
30 od to quantify all the ion permeabilities of respiratory epithelia, the model may aid us in understan
31 at the diminution of transgene expression in respiratory epithelia was due to increased CTL reactivit
32  poxvirus infection and its interaction with respiratory epithelia, we used vaccinia virus and examin
33       The levels of full-length CFTR mRNA in respiratory epithelia were very low in these patients (1
34 Fv/alpha(1)-AT fusion protein penetrated the respiratory epithelia, with transcytosis of the fusion p

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