Cargando…

Optimizing Nasal Potential Difference Analysis for CFTR Modulator Development: Assessment of Ivacaftor in CF Subjects with the G551D-CFTR Mutation

Nasal potential difference (NPD) is used as a biomarker of the cystic fibrosis transmembrane conductance regulator (CFTR) and epithelial sodium channel (ENaC) activity. We evaluated methods to detect changes in chloride and sodium transport by NPD based on a secondary analysis of a Phase II CFTR-mod...

Descripción completa

Detalles Bibliográficos
Autores principales: Rowe, Steven M., Liu, Bo, Hill, Aubrey, Hathorne, Heather, Cohen, Morty, Beamer, John R., Accurso, Frank J., Dong, Qunming, Ordoñez, Claudia L., Stone, Anne J., Olson, Eric R., Clancy, John P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3724869/
https://www.ncbi.nlm.nih.gov/pubmed/23922647
http://dx.doi.org/10.1371/journal.pone.0066955
_version_ 1782476739545399296
author Rowe, Steven M.
Liu, Bo
Hill, Aubrey
Hathorne, Heather
Cohen, Morty
Beamer, John R.
Accurso, Frank J.
Dong, Qunming
Ordoñez, Claudia L.
Stone, Anne J.
Olson, Eric R.
Clancy, John P.
author_facet Rowe, Steven M.
Liu, Bo
Hill, Aubrey
Hathorne, Heather
Cohen, Morty
Beamer, John R.
Accurso, Frank J.
Dong, Qunming
Ordoñez, Claudia L.
Stone, Anne J.
Olson, Eric R.
Clancy, John P.
author_sort Rowe, Steven M.
collection PubMed
description Nasal potential difference (NPD) is used as a biomarker of the cystic fibrosis transmembrane conductance regulator (CFTR) and epithelial sodium channel (ENaC) activity. We evaluated methods to detect changes in chloride and sodium transport by NPD based on a secondary analysis of a Phase II CFTR-modulator study. Thirty-nine subjects with CF who also had the G551D-CFTR mutation were randomized to receive ivacaftor (Kalydeco™; also known as VX-770) in four doses or placebo twice daily for at least 14 days. All data were analyzed by a single investigator who was blinded to treatment assignment. We compared three analysis methods to determine the best approach to quantify changes in chloride and sodium transport: (1) the average of both nostrils; (2) the most-polarized nostril at each visit; and (3) the most-polarized nostril at screening carried forward. Parameters of ion transport included the PD change with zero chloride plus isoproterenol (CFTR activity), the basal PD, Ringer's PD, and change in PD with amiloride (measurements of ENaC activity), and the delta NPD (measuring CFTR and ENaC activity). The average and most-polarized nostril at each visit were most sensitive to changes in chloride and sodium transport, whereas the most-polarized nostril at screening carried forward was less discriminatory. Based on our findings, NPD studies should assess both nostrils rather than a single nostril. We also found that changes in CFTR activity were more readily detected than changes in ENaC activity, and that rigorous standardization was associated with relatively good within-subject reproducibility in placebo-treated subjects (±2.8 mV). Therefore, we have confirmed an assay of reasonable reproducibility for detecting chloride-transport improvements in response to CFTR modulation.
format Online
Article
Text
id pubmed-3724869
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37248692013-08-06 Optimizing Nasal Potential Difference Analysis for CFTR Modulator Development: Assessment of Ivacaftor in CF Subjects with the G551D-CFTR Mutation Rowe, Steven M. Liu, Bo Hill, Aubrey Hathorne, Heather Cohen, Morty Beamer, John R. Accurso, Frank J. Dong, Qunming Ordoñez, Claudia L. Stone, Anne J. Olson, Eric R. Clancy, John P. PLoS One Research Article Nasal potential difference (NPD) is used as a biomarker of the cystic fibrosis transmembrane conductance regulator (CFTR) and epithelial sodium channel (ENaC) activity. We evaluated methods to detect changes in chloride and sodium transport by NPD based on a secondary analysis of a Phase II CFTR-modulator study. Thirty-nine subjects with CF who also had the G551D-CFTR mutation were randomized to receive ivacaftor (Kalydeco™; also known as VX-770) in four doses or placebo twice daily for at least 14 days. All data were analyzed by a single investigator who was blinded to treatment assignment. We compared three analysis methods to determine the best approach to quantify changes in chloride and sodium transport: (1) the average of both nostrils; (2) the most-polarized nostril at each visit; and (3) the most-polarized nostril at screening carried forward. Parameters of ion transport included the PD change with zero chloride plus isoproterenol (CFTR activity), the basal PD, Ringer's PD, and change in PD with amiloride (measurements of ENaC activity), and the delta NPD (measuring CFTR and ENaC activity). The average and most-polarized nostril at each visit were most sensitive to changes in chloride and sodium transport, whereas the most-polarized nostril at screening carried forward was less discriminatory. Based on our findings, NPD studies should assess both nostrils rather than a single nostril. We also found that changes in CFTR activity were more readily detected than changes in ENaC activity, and that rigorous standardization was associated with relatively good within-subject reproducibility in placebo-treated subjects (±2.8 mV). Therefore, we have confirmed an assay of reasonable reproducibility for detecting chloride-transport improvements in response to CFTR modulation. Public Library of Science 2013-07-26 /pmc/articles/PMC3724869/ /pubmed/23922647 http://dx.doi.org/10.1371/journal.pone.0066955 Text en © 2013 Rowe 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Rowe, Steven M.
Liu, Bo
Hill, Aubrey
Hathorne, Heather
Cohen, Morty
Beamer, John R.
Accurso, Frank J.
Dong, Qunming
Ordoñez, Claudia L.
Stone, Anne J.
Olson, Eric R.
Clancy, John P.
Optimizing Nasal Potential Difference Analysis for CFTR Modulator Development: Assessment of Ivacaftor in CF Subjects with the G551D-CFTR Mutation
title Optimizing Nasal Potential Difference Analysis for CFTR Modulator Development: Assessment of Ivacaftor in CF Subjects with the G551D-CFTR Mutation
title_full Optimizing Nasal Potential Difference Analysis for CFTR Modulator Development: Assessment of Ivacaftor in CF Subjects with the G551D-CFTR Mutation
title_fullStr Optimizing Nasal Potential Difference Analysis for CFTR Modulator Development: Assessment of Ivacaftor in CF Subjects with the G551D-CFTR Mutation
title_full_unstemmed Optimizing Nasal Potential Difference Analysis for CFTR Modulator Development: Assessment of Ivacaftor in CF Subjects with the G551D-CFTR Mutation
title_short Optimizing Nasal Potential Difference Analysis for CFTR Modulator Development: Assessment of Ivacaftor in CF Subjects with the G551D-CFTR Mutation
title_sort optimizing nasal potential difference analysis for cftr modulator development: assessment of ivacaftor in cf subjects with the g551d-cftr mutation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3724869/
https://www.ncbi.nlm.nih.gov/pubmed/23922647
http://dx.doi.org/10.1371/journal.pone.0066955
work_keys_str_mv AT rowestevenm optimizingnasalpotentialdifferenceanalysisforcftrmodulatordevelopmentassessmentofivacaftorincfsubjectswiththeg551dcftrmutation
AT liubo optimizingnasalpotentialdifferenceanalysisforcftrmodulatordevelopmentassessmentofivacaftorincfsubjectswiththeg551dcftrmutation
AT hillaubrey optimizingnasalpotentialdifferenceanalysisforcftrmodulatordevelopmentassessmentofivacaftorincfsubjectswiththeg551dcftrmutation
AT hathorneheather optimizingnasalpotentialdifferenceanalysisforcftrmodulatordevelopmentassessmentofivacaftorincfsubjectswiththeg551dcftrmutation
AT cohenmorty optimizingnasalpotentialdifferenceanalysisforcftrmodulatordevelopmentassessmentofivacaftorincfsubjectswiththeg551dcftrmutation
AT beamerjohnr optimizingnasalpotentialdifferenceanalysisforcftrmodulatordevelopmentassessmentofivacaftorincfsubjectswiththeg551dcftrmutation
AT accursofrankj optimizingnasalpotentialdifferenceanalysisforcftrmodulatordevelopmentassessmentofivacaftorincfsubjectswiththeg551dcftrmutation
AT dongqunming optimizingnasalpotentialdifferenceanalysisforcftrmodulatordevelopmentassessmentofivacaftorincfsubjectswiththeg551dcftrmutation
AT ordonezclaudial optimizingnasalpotentialdifferenceanalysisforcftrmodulatordevelopmentassessmentofivacaftorincfsubjectswiththeg551dcftrmutation
AT stoneannej optimizingnasalpotentialdifferenceanalysisforcftrmodulatordevelopmentassessmentofivacaftorincfsubjectswiththeg551dcftrmutation
AT olsonericr optimizingnasalpotentialdifferenceanalysisforcftrmodulatordevelopmentassessmentofivacaftorincfsubjectswiththeg551dcftrmutation
AT clancyjohnp optimizingnasalpotentialdifferenceanalysisforcftrmodulatordevelopmentassessmentofivacaftorincfsubjectswiththeg551dcftrmutation
AT optimizingnasalpotentialdifferenceanalysisforcftrmodulatordevelopmentassessmentofivacaftorincfsubjectswiththeg551dcftrmutation