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Thymosin α-1 does not correct F508del-CFTR in cystic fibrosis airway epithelia
Valeria Tomati, Emanuela Caci, Loretta Ferrera, Emanuela Pesce, Elvira Sondo, Deborah M. Cholon, Nancy L. Quinney, Susan E. Boyles, Andrea Armirotti, Roberto Ravazzolo, Luis J.V. Galietta, Martina Gentzsch, Nicoletta Pedemonte
Valeria Tomati, Emanuela Caci, Loretta Ferrera, Emanuela Pesce, Elvira Sondo, Deborah M. Cholon, Nancy L. Quinney, Susan E. Boyles, Andrea Armirotti, Roberto Ravazzolo, Luis J.V. Galietta, Martina Gentzsch, Nicoletta Pedemonte
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Research Article Therapeutics

Thymosin α-1 does not correct F508del-CFTR in cystic fibrosis airway epithelia

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Abstract

In cystic fibrosis (CF), deletion of phenylalanine 508 (F508del) in the cystic fibrosis transmembrane conductance regulator (CFTR) anion channel causes misfolding and premature degradation. Considering the numerous effects of the F508del mutation on the assembly and processing of CFTR protein, combination therapy with several pharmacological correctors is likely to be required to treat CF patients. Recently, it has been reported that thymosin α-1 (Tα-1) has multiple beneficial effects that could lead to a single-molecule-based therapy for CF patients with F508del. Such effects include suppression of inflammation, improvement in F508del-CFTR maturation and gating, and stimulation of chloride secretion through the calcium-activated chloride channel (CaCC). Given the importance of such a drug, we aimed to characterize the underlying molecular mechanisms of action of Tα-1. In-depth analysis of Tα-1 effects was performed using well-established microfluorimetric, biochemical, and electrophysiological techniques on epithelial cell lines and primary bronchial epithelial cells from CF patients. The studies, which were conducted in 2 independent laboratories with identical outcome, demonstrated that Tα-1 is devoid of activity on mutant CFTR as well as on CaCC. Although Tα-1 may still be useful as an antiinflammatory agent, its ability to target defective anion transport in CF remains to be further investigated.

Authors

Valeria Tomati, Emanuela Caci, Loretta Ferrera, Emanuela Pesce, Elvira Sondo, Deborah M. Cholon, Nancy L. Quinney, Susan E. Boyles, Andrea Armirotti, Roberto Ravazzolo, Luis J.V. Galietta, Martina Gentzsch, Nicoletta Pedemonte

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Figure 3

Evaluation of thymosin α-1 (Tα-1) effect on F508del-CFTR and CaCC channel currents performed by whole-cell patch-clamp analysis on immortalized bronchial CFBE41o- cells.

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Evaluation of thymosin α-1 (Tα-1) effect on F508del-CFTR and CaCC channe...
(A) Representative whole-cell membrane currents and corresponding current–voltage relationships from patch-clamp experiments on F508del-CFTR expressing CFBE41o- cells treated for 24 hours with scrambled peptide (100 ng/ml + 0.1% DMSO), Tα-1 (100 ng/ml + 0.1% DMSO), or VX-809 (3 μM). The recordings were performed first on cells under resting conditions, after maximal CFTR stimulation with forskolin (Fsk, 20 μM) plus genistein (Gen, 30 μM) and after CFTR inhibition by CFTRinh-172 (1 μM). Each panel shows superimposed currents elicited at membrane potentials in the range −100 to +100 mV. (B) Current–voltage relationships corresponding to data from patch-clamp experiments performed as described in A. (C) Representative whole-cell membrane currents from patch-clamp experiments on CFBE41o- cells treated for 24 hours with DMSO alone (0.1%), scrambled peptide (100 ng/ml + 0.1% DMSO), or Tα-1 (100 ng/ml + 0.1% DMSO). The recordings were performed after acute treatment with ionomycin (500 nM) to maximally stimulate CaCC activity and after CaCC inhibition by niflumic acid (NFA) (100 μM). Each panel shows superimposed currents elicited at membrane potentials in the range −100 to +100 mV. (D) Current–voltage relationships corresponding to data from patch-clamp experiments performed as described in C.

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