Antisense oligonucleotide targeting of mRNAs encoding ENaC subunits α, β, and γ improves cystic fibrosis-like disease in mice

被引:17
作者
Zhao, Chenguang [1 ]
Crosby, Jeff [1 ]
Lv, Tinghong [1 ]
Bai, Dong [1 ]
Monia, Brett P. [1 ]
Guo, Shuling [1 ]
机构
[1] Ionis Pharmaceut, 2855 Gazelle Court, Carlsbad, CA 92010 USA
关键词
Cystic fibrosis; ENaC; Subunit; Antisense oligonucleotide; EPITHELIAL SODIUM-CHANNEL; NA+ CHANNEL; LUNG-DISEASE; RESPIRATORY EPITHELIA; POTENTIAL DIFFERENCE; AMILORIDE; EXPRESSION; TRIAL; CFTR; CONDUCTANCE;
D O I
10.1016/j.jcf.2018.07.006
中图分类号
R56 [呼吸系及胸部疾病];
学科分类号
摘要
Background: The epithelial sodium channel ENaC consists of three subunits encoded by Scnn1a, Scnn1b, and Scnn1g and increased sodium absorption through this channel is hypothesized to lead to mucus dehydration and accumulation in cystic fibrosis (CF) patients. Methods: We identified potent and specific antisense oligonucleotides (ASOs) targeting mRNAs encoding the ENaC subunits and evaluated these ASOs in mouse models of CF-like lung disease. Results: ASOs designed to target mRNAs encoding each ENaC subunit or a control ASO were administered directly into the lungs of mice. The reductions in ENaC subunits correlated well with a reduction in amiloride sensitive channel conductance. In addition, levels of mucus markers Gob5, AGR2, Muc5ac, and Muc5b, periodic acid-Schiff s reagent (PAS) goblet cell staining, and neutrophil recruitment were reduced and lung function was improved when levels of any of the ENaC subunits were decreased. Conclusions: Delivery of ASOs targeting mRNAs encoding each of the three ENaC subunits directly into the lung improved disease phenotypes in a mouse model of CF-like lung disease. These findings suggest that targeting ENaC subunits could be an effective approach for the treatment of CF. (C) 2018 Published by Elsevier B.V.
引用
收藏
页码:334 / 341
页数:8
相关论文
共 38 条
[1]   DEMONSTRATION THAT CFTR IS A CHLORIDE CHANNEL BY ALTERATION OF ITS ANION SELECTIVITY [J].
ANDERSON, MP ;
GREGORY, RJ ;
THOMPSON, S ;
SOUZA, DW ;
PAUL, S ;
MULLIGAN, RC ;
SMITH, AE ;
WELSH, MJ .
SCIENCE, 1991, 253 (5016) :202-205
[2]   Mutations in the Amiloride-Sensitive Epithelial Sodium Channel in Patients With Cystic Fibrosis-Like Disease [J].
Azad, Abul Kalam ;
Rauh, Robert ;
Vermeulen, Francois ;
Jaspers, Martine ;
Korbmacher, Judit ;
Boissier, Brigitte ;
Bassinet, Laurence ;
Fichou, Yann ;
des Georges, Marie ;
Stanke, Frauke ;
De Boeck, Kris ;
Dupont, Lieven ;
Balascakova, Miroslava ;
Hjelte, Lena ;
Lebecque, Patrick ;
Radojkovic, Dragica ;
Castellani, Carlo ;
Schwartz, Marianne ;
Stuhrmann, Manfred ;
Schwarz, Martin ;
Skalicka, Veronika ;
de Monestrol, Isabelle ;
Girodon, Emmanuelle ;
Ferec, Claude ;
Claustres, Mireille ;
Tuemmler, Burkhard ;
Cassiman, Jean-Jacques ;
Korbmacher, Christoph ;
Cuppens, Harry .
HUMAN MUTATION, 2009, 30 (07) :1093-1103
[3]   NA+ TRANSPORT IN CYSTIC-FIBROSIS RESPIRATORY EPITHELIA - ABNORMAL BASAL RATE AND RESPONSE TO ADENYLATE-CYCLASE ACTIVATION [J].
BOUCHER, RC ;
STUTTS, MJ ;
KNOWLES, MR ;
CANTLEY, L ;
GATZY, JT .
JOURNAL OF CLINICAL INVESTIGATION, 1986, 78 (05) :1245-1252
[4]   RELATIVE EXPRESSION OF THE HUMAN EPITHELIAL NA+ CHANNEL SUBUNITS IN NORMAL AND CYSTIC-FIBROSIS AIRWAYS [J].
BURCH, LH ;
TALBOT, CR ;
KNOWLES, MR ;
CANESSA, CM ;
ROSSIER, BC ;
BOUCHER, RC .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 1995, 269 (02) :C511-C518
[5]   Epithelial Sodium Channel Inhibition in Primary Human Bronchial Epithelia by Transfected siRNA [J].
Caci, Emanuela ;
Melani, Raffaella ;
Pedemonte, Nicoletta ;
Yueksekdag, Guelnihal ;
Ravazzolo, Roberto ;
Rosenecker, Joseph ;
Galietta, Luis J. V. ;
Zegarra-Moran, Olga .
AMERICAN JOURNAL OF RESPIRATORY CELL AND MOLECULAR BIOLOGY, 2009, 40 (02) :211-216
[6]   AMILORIDE-SENSITIVE EPITHELIAL NA+ CHANNEL IS MADE OF 3 HOMOLOGOUS SUBUNITS [J].
CANESSA, CM ;
SCHILD, L ;
BUELL, G ;
THORENS, B ;
GAUTSCHI, I ;
HORISBERGER, JD ;
ROSSIER, BC .
NATURE, 1994, 367 (6462) :463-467
[7]   Pharmacological Characterization of a Novel ENaCα siRNA (GSK2225745) With Potential for the Treatment of Cystic Fibrosis [J].
Clark, Kenneth L. ;
Hughes, Stephen A. ;
Bulsara, Pallav ;
Coates, Jill ;
Moores, Kitty ;
Parry, Joel ;
Carr, Michael ;
Mayer, Ruth J. ;
Wilson, Paul ;
Gruenloh, Chris ;
Levin, Daren ;
Darton, Jill ;
Weber, Wolf-Michael ;
Sobczak, Katja ;
Gill, Deborah R. ;
Hyde, Stephen C. ;
Davies, Lee A. ;
Pringle, Ian A. ;
Sumner-Jones, Stephanie G. ;
Jadhav, Vasant ;
Jamison, Sharon ;
Strapps, Walter R. ;
Pickering, Victoria ;
Edbrooke, Mark R. .
MOLECULAR THERAPY-NUCLEIC ACIDS, 2013, 2 :e65
[8]   Mechanisms of airway hyperresponsiveness [J].
Cockcroft, Donald W. ;
Davis, Beth E. .
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY, 2006, 118 (03) :551-559
[9]   Inhaled ENaC antisense oligonucleotide ameliorates cystic fibrosis-like lung disease in mice [J].
Crosby, Jeff R. ;
Zhao, Chenguang ;
Jiang, Chong ;
Bai, Dong ;
Katz, Melanie ;
Greenlee, Sarah ;
Kawabe, Hiroshi ;
McCaleb, Michael ;
Rotin, Daniela ;
Guo, Shuling ;
Monia, Brett P. .
JOURNAL OF CYSTIC FIBROSIS, 2017, 16 (06) :671-680
[10]   Epithelial Sodium Channel Silencing as a Strategy to Correct the Airway Surface Fluid Deficit in Cystic Fibrosis [J].
Gianotti, Ambra ;
Melani, Raffaella ;
Caci, Emanuela ;
Sondo, Elvira ;
Ravazzolo, Roberto ;
Galietta, Luis J. V. ;
Zegarra-Moran, Olga .
AMERICAN JOURNAL OF RESPIRATORY CELL AND MOLECULAR BIOLOGY, 2013, 49 (03) :445-452