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The patch-clamp and planar lipid bilayer techniques: Powerful and versatile tools to investigate the CFTR Cl- channelSheppard, DN; Gray, MA; Gong, X; Sohma, Y; Kogan, I; Benos, DJ; ScottWard, TS; Chen, JH; Li, H; Cai, Z; Gupta, J; Li, C; Ramjeesingh, M; Berdiev, BK; Ismailov, II; Bear, CE; Hwang, TC; Linsdell, P; Hug, MJ2004131
Lung disease in mice with cystic fibrosisKent, G; Iles, R; Bear, CE; Huan, LJ; Griesenbach, U; McKerlie, C; Frndova, H; Ackerley, C; Gosselin, D; Radzioch, D; O'Brodovich, H; Tsui, LC; Buchwald, M; Tanswell, AK1997642
Incomplete rescue of cystic fibrosis transmembrane conductance regulator deficient mice by the human CFTR cDNARozmahel, R; Gyömörey, K; Plyte, S; Nguyen, V; Wilschanski, M; Durie, P; Bear, CE; Tsui, LC1997399
In vivo measurements of ion transport in long-living CF miceWilschanski, MA; Rozmahel, R; Beharry, S; Kent, G; Li, C; Tsui, LC; Durie, P; Bear, CE1996222
cAMP-inducible chloride conductance in mouse fibroblast lines stably expressing the human cystic fibrosis transmembrane conductance regulatorRommens, JM; Dho, S; Bear, CE; Kartner, N; Kennedy, D; Riordan, JR; Tsui, LC; Foskett, JK1991281
Expression of the cystic fibrosis gene in non-epithelial invertebrate cells produces a regulated anion conductanceKartner, N; Hanrahan, JW; Jensen, TJ; Naismith, AL; Shizhang, S; Ackerley, CA; Reyes, EF; Tsui, LC; Rommens, JM; Bear, CE; Riordan, JR1991248
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