Cargando…

Functional analysis of OCTN2 and ATB(0,+) in normal human airway epithelial cells

In human, OCTN2 (SLC22A5) and ATB(0,+) (SLC6A14) transporters mediate the uptake of L-carnitine, essential for the transport of fatty acids into mitochondria and the subsequent degradation by β-oxidation. Aim of the present study was to characterize L-carnitine transport in EpiAirway(™), a 3D organo...

Descripción completa

Detalles Bibliográficos
Autores principales: Rotoli, Bianca Maria, Visigalli, Rossana, Barilli, Amelia, Ferrari, Francesca, Bianchi, Massimiliano G., Di Lascia, Maria, Riccardi, Benedetta, Puccini, Paola, Dall’Asta, Valeria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7004352/
https://www.ncbi.nlm.nih.gov/pubmed/32027707
http://dx.doi.org/10.1371/journal.pone.0228568
_version_ 1783494705236934656
author Rotoli, Bianca Maria
Visigalli, Rossana
Barilli, Amelia
Ferrari, Francesca
Bianchi, Massimiliano G.
Di Lascia, Maria
Riccardi, Benedetta
Puccini, Paola
Dall’Asta, Valeria
author_facet Rotoli, Bianca Maria
Visigalli, Rossana
Barilli, Amelia
Ferrari, Francesca
Bianchi, Massimiliano G.
Di Lascia, Maria
Riccardi, Benedetta
Puccini, Paola
Dall’Asta, Valeria
author_sort Rotoli, Bianca Maria
collection PubMed
description In human, OCTN2 (SLC22A5) and ATB(0,+) (SLC6A14) transporters mediate the uptake of L-carnitine, essential for the transport of fatty acids into mitochondria and the subsequent degradation by β-oxidation. Aim of the present study was to characterize L-carnitine transport in EpiAirway(™), a 3D organotypic in vitro model of primary human tracheal-bronchial epithelial cells that form a fully differentiated, pseudostratified columnar epithelium at air-liquid interface (ALI) condition. In parallel, Calu-3 monolayers grown at ALI for different times (8d or 21d of culture) were used as comparison. OCTN2 transporter was equally expressed in both models and functional at the basolateral side. ATB(0,+) was, instead, highly expressed and active on the apical membrane of EpiAirway(™) and only in early-cultures of Calu-3 (8d but not 21d ALI). In both cell models, L-carnitine uptake on the apical side was significantly inhibited by the bronchodilators glycopyrrolate and tiotropium, that hence can be considered substrates of ATB(0,+); ipratropium was instead effective on the basolateral side, indicating its interaction with OCTN2. Inflammatory stimuli, such as LPS or TNFα, caused an induction of SLC6A14/ATB(0,+) expression in Calu-3 cells, along with a 2-fold increase of L-carnitine uptake only at the apical side; on the contrary SLC22A5/OCTN2 was not affected. As both OCTN2 and ATB(0,+), beyond transporting L-carnitine, have a significant potential as delivery systems for drugs, the identification of these transporters in EpiAirway(™) can open new fields of investigation in the study of drug inhalation and pulmonary delivery.
format Online
Article
Text
id pubmed-7004352
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-70043522020-02-19 Functional analysis of OCTN2 and ATB(0,+) in normal human airway epithelial cells Rotoli, Bianca Maria Visigalli, Rossana Barilli, Amelia Ferrari, Francesca Bianchi, Massimiliano G. Di Lascia, Maria Riccardi, Benedetta Puccini, Paola Dall’Asta, Valeria PLoS One Research Article In human, OCTN2 (SLC22A5) and ATB(0,+) (SLC6A14) transporters mediate the uptake of L-carnitine, essential for the transport of fatty acids into mitochondria and the subsequent degradation by β-oxidation. Aim of the present study was to characterize L-carnitine transport in EpiAirway(™), a 3D organotypic in vitro model of primary human tracheal-bronchial epithelial cells that form a fully differentiated, pseudostratified columnar epithelium at air-liquid interface (ALI) condition. In parallel, Calu-3 monolayers grown at ALI for different times (8d or 21d of culture) were used as comparison. OCTN2 transporter was equally expressed in both models and functional at the basolateral side. ATB(0,+) was, instead, highly expressed and active on the apical membrane of EpiAirway(™) and only in early-cultures of Calu-3 (8d but not 21d ALI). In both cell models, L-carnitine uptake on the apical side was significantly inhibited by the bronchodilators glycopyrrolate and tiotropium, that hence can be considered substrates of ATB(0,+); ipratropium was instead effective on the basolateral side, indicating its interaction with OCTN2. Inflammatory stimuli, such as LPS or TNFα, caused an induction of SLC6A14/ATB(0,+) expression in Calu-3 cells, along with a 2-fold increase of L-carnitine uptake only at the apical side; on the contrary SLC22A5/OCTN2 was not affected. As both OCTN2 and ATB(0,+), beyond transporting L-carnitine, have a significant potential as delivery systems for drugs, the identification of these transporters in EpiAirway(™) can open new fields of investigation in the study of drug inhalation and pulmonary delivery. Public Library of Science 2020-02-06 /pmc/articles/PMC7004352/ /pubmed/32027707 http://dx.doi.org/10.1371/journal.pone.0228568 Text en © 2020 Rotoli et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Rotoli, Bianca Maria
Visigalli, Rossana
Barilli, Amelia
Ferrari, Francesca
Bianchi, Massimiliano G.
Di Lascia, Maria
Riccardi, Benedetta
Puccini, Paola
Dall’Asta, Valeria
Functional analysis of OCTN2 and ATB(0,+) in normal human airway epithelial cells
title Functional analysis of OCTN2 and ATB(0,+) in normal human airway epithelial cells
title_full Functional analysis of OCTN2 and ATB(0,+) in normal human airway epithelial cells
title_fullStr Functional analysis of OCTN2 and ATB(0,+) in normal human airway epithelial cells
title_full_unstemmed Functional analysis of OCTN2 and ATB(0,+) in normal human airway epithelial cells
title_short Functional analysis of OCTN2 and ATB(0,+) in normal human airway epithelial cells
title_sort functional analysis of octn2 and atb(0,+) in normal human airway epithelial cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7004352/
https://www.ncbi.nlm.nih.gov/pubmed/32027707
http://dx.doi.org/10.1371/journal.pone.0228568
work_keys_str_mv AT rotolibiancamaria functionalanalysisofoctn2andatb0innormalhumanairwayepithelialcells
AT visigallirossana functionalanalysisofoctn2andatb0innormalhumanairwayepithelialcells
AT barilliamelia functionalanalysisofoctn2andatb0innormalhumanairwayepithelialcells
AT ferrarifrancesca functionalanalysisofoctn2andatb0innormalhumanairwayepithelialcells
AT bianchimassimilianog functionalanalysisofoctn2andatb0innormalhumanairwayepithelialcells
AT dilasciamaria functionalanalysisofoctn2andatb0innormalhumanairwayepithelialcells
AT riccardibenedetta functionalanalysisofoctn2andatb0innormalhumanairwayepithelialcells
AT puccinipaola functionalanalysisofoctn2andatb0innormalhumanairwayepithelialcells
AT dallastavaleria functionalanalysisofoctn2andatb0innormalhumanairwayepithelialcells