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Potentiating TMEM16A does not stimulate airway mucus secretion or bronchial and pulmonary arterial smooth muscle contraction.
Danahay, Henry; Fox, Roy; Lilley, Sarah; Charlton, Holly; Adley, Kathryn; Christie, Lee; Ansari, Ejaz; Ehre, Camille; Flen, Alexis; Tuvim, Michael J; Dickey, Burton F; Williams, Colin; Beaudoin, Sarah; Collingwood, Stephen P; Gosling, Martin.
Afiliação
  • Danahay H; Enterprise Therapeutics Ltd, Science Park Square Brighton UK.
  • Fox R; School of Life Sciences University of Sussex Brighton UK.
  • Lilley S; School of Life Sciences University of Sussex Brighton UK.
  • Charlton H; School of Life Sciences University of Sussex Brighton UK.
  • Adley K; School of Life Sciences University of Sussex Brighton UK.
  • Christie L; REPROCELL Europe Ltd, West of Scotland Science Park Glasgow UK.
  • Ansari E; REPROCELL Europe Ltd, West of Scotland Science Park Glasgow UK.
  • Ehre C; Marsico Lung Institute University of North Carolina Chapel Hill NC USA.
  • Flen A; Marsico Lung Institute University of North Carolina Chapel Hill NC USA.
  • Tuvim MJ; Department of Pulmonary Medicine The University of Texas MD Anderson Cancer Center Houston TX USA.
  • Dickey BF; Department of Pulmonary Medicine The University of Texas MD Anderson Cancer Center Houston TX USA.
  • Williams C; Covance Laboratories Ltd Huntingdon UK.
  • Beaudoin S; Covance Laboratories Ltd Huntingdon UK.
  • Collingwood SP; Enterprise Therapeutics Ltd, Science Park Square Brighton UK.
  • Gosling M; Enterprise Therapeutics Ltd, Science Park Square Brighton UK.
FASEB Bioadv ; 2(8): 464-477, 2020 Aug.
Article em En | MEDLINE | ID: mdl-32821878
The calcium-activated chloride channel (CaCC) TMEM16A enables chloride secretion across several transporting epithelia, including in the airways. Additional roles for TMEM16A have been proposed, which include regulating mucus production and secretion and stimulating smooth muscle contraction. The aim of the present study was to test whether the pharmacological regulation of TMEM16A channel function, could affect any of these proposed biological roles in the airways. In vitro, neither a potent and selective TMEM16A potentiator (ETX001) nor the potent TMEM16A inhibitor (Ani9) influenced either baseline mucin release or goblet cell numbers in well-differentiated primary human bronchial epithelial (HBE) cells. In vivo, a TMEM16A potentiator was without effect on goblet cell emptying in an IL-13 stimulated goblet cell metaplasia model. Using freshly isolated human bronchi and pulmonary arteries, neither ETX001 or Ani9 had any effect on the contractile or relaxant responses of the tissues. In vivo, ETX001 also failed to influence either lung or cardiovascular function when delivered directly into the airways of telemetered rats. Together, these studies do not support a role for TMEM16A in the regulation of goblet cell numbers or baseline mucin release, or on the regulation of airway or pulmonary artery smooth muscle contraction.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: FASEB Bioadv Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: FASEB Bioadv Ano de publicação: 2020 Tipo de documento: Article