Cargando…

An NBD Derivative of the Selective Rat Toxicant Norbormide as a New Probe for Living Cell Imaging

Norbormide (NRB) is a unique compound that acts directly on rat vascular myocytes to trigger a contractile process, through an as yet unknown mechanism, which results in the selective contraction of rat peripheral arteries. To gain insight into the mechanisms involved in NRB rat-selective activity,...

Descripción completa

Detalles Bibliográficos
Autores principales: D'Amore, Claudio, Orso, Genny, Fusi, Fabio, Pagano, Mario A., Miotto, Giovanni, Forgiarini, Alessia, De Martin, Sara, Castellani, Giulia, Ribaudo, Giovanni, Rennison, David, Brimble, Margaret A., Hopkins, Brian, Ferrarese, Alessandro, Bova, Sergio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5034647/
https://www.ncbi.nlm.nih.gov/pubmed/27721792
http://dx.doi.org/10.3389/fphar.2016.00315
_version_ 1782455314195415040
author D'Amore, Claudio
Orso, Genny
Fusi, Fabio
Pagano, Mario A.
Miotto, Giovanni
Forgiarini, Alessia
De Martin, Sara
Castellani, Giulia
Ribaudo, Giovanni
Rennison, David
Brimble, Margaret A.
Hopkins, Brian
Ferrarese, Alessandro
Bova, Sergio
author_facet D'Amore, Claudio
Orso, Genny
Fusi, Fabio
Pagano, Mario A.
Miotto, Giovanni
Forgiarini, Alessia
De Martin, Sara
Castellani, Giulia
Ribaudo, Giovanni
Rennison, David
Brimble, Margaret A.
Hopkins, Brian
Ferrarese, Alessandro
Bova, Sergio
author_sort D'Amore, Claudio
collection PubMed
description Norbormide (NRB) is a unique compound that acts directly on rat vascular myocytes to trigger a contractile process, through an as yet unknown mechanism, which results in the selective contraction of rat peripheral arteries. To gain insight into the mechanisms involved in NRB rat-selective activity, we investigated the subcellular distribution of NRB-AF12, a nitrobenzoxadiazole (NBD)-derivative of NRB, in living NRB-sensitive and NRB-insensitive cells. In both cell types, NRB-AF12 localized to the endoplasmic reticulum (ER), Golgi apparatus, mitochondria, lysosomes, and endosomes; however, in NRB-sensitive cells, the fluorescence also extended to the plasma membrane. NRB-AF12 was rapidly internalized into the cells, could easily be washed out and then reloaded back into the same cells, all with a high degree of reproducibility. Cells exposed for 24 h to NRB-AF12 did not show apparent signs of toxicity, even at concentrations of the dye (10 μM) much higher than those required for fluorescence labeling (500 ηM). The distribution pattern of NRB-AF12 fluorescence was near identical to that of ER-Tracker® (Er-Tr), a fluorescent derivative of glibenclamide, a known K(ATP) channel blocker. Displacement tests did not demonstrate, but at the same time did not rule out the possibility of a common target for ER-Tr, NRB-AF12, NRB, and glibenclamide. On the basis of these results we hypothesize a common target site for NRB-AF12 and ER-Tr, and a similar target profile for NRB and glibenclamide, and propose NRB-AF12 as an alternative fluorescence probe to ER-Tracker. Furthermore, NRB-based fluorescence derivatives could be designed to selectively label single cellular structures.
format Online
Article
Text
id pubmed-5034647
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-50346472016-10-07 An NBD Derivative of the Selective Rat Toxicant Norbormide as a New Probe for Living Cell Imaging D'Amore, Claudio Orso, Genny Fusi, Fabio Pagano, Mario A. Miotto, Giovanni Forgiarini, Alessia De Martin, Sara Castellani, Giulia Ribaudo, Giovanni Rennison, David Brimble, Margaret A. Hopkins, Brian Ferrarese, Alessandro Bova, Sergio Front Pharmacol Pharmacology Norbormide (NRB) is a unique compound that acts directly on rat vascular myocytes to trigger a contractile process, through an as yet unknown mechanism, which results in the selective contraction of rat peripheral arteries. To gain insight into the mechanisms involved in NRB rat-selective activity, we investigated the subcellular distribution of NRB-AF12, a nitrobenzoxadiazole (NBD)-derivative of NRB, in living NRB-sensitive and NRB-insensitive cells. In both cell types, NRB-AF12 localized to the endoplasmic reticulum (ER), Golgi apparatus, mitochondria, lysosomes, and endosomes; however, in NRB-sensitive cells, the fluorescence also extended to the plasma membrane. NRB-AF12 was rapidly internalized into the cells, could easily be washed out and then reloaded back into the same cells, all with a high degree of reproducibility. Cells exposed for 24 h to NRB-AF12 did not show apparent signs of toxicity, even at concentrations of the dye (10 μM) much higher than those required for fluorescence labeling (500 ηM). The distribution pattern of NRB-AF12 fluorescence was near identical to that of ER-Tracker® (Er-Tr), a fluorescent derivative of glibenclamide, a known K(ATP) channel blocker. Displacement tests did not demonstrate, but at the same time did not rule out the possibility of a common target for ER-Tr, NRB-AF12, NRB, and glibenclamide. On the basis of these results we hypothesize a common target site for NRB-AF12 and ER-Tr, and a similar target profile for NRB and glibenclamide, and propose NRB-AF12 as an alternative fluorescence probe to ER-Tracker. Furthermore, NRB-based fluorescence derivatives could be designed to selectively label single cellular structures. Frontiers Media S.A. 2016-09-23 /pmc/articles/PMC5034647/ /pubmed/27721792 http://dx.doi.org/10.3389/fphar.2016.00315 Text en Copyright © 2016 D'Amore, Orso, Fusi, Pagano, Miotto, Forgiarini, De Martin, Castellani, Ribaudo, Rennison, Brimble, Hopkins, Ferrarese and Bova. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
D'Amore, Claudio
Orso, Genny
Fusi, Fabio
Pagano, Mario A.
Miotto, Giovanni
Forgiarini, Alessia
De Martin, Sara
Castellani, Giulia
Ribaudo, Giovanni
Rennison, David
Brimble, Margaret A.
Hopkins, Brian
Ferrarese, Alessandro
Bova, Sergio
An NBD Derivative of the Selective Rat Toxicant Norbormide as a New Probe for Living Cell Imaging
title An NBD Derivative of the Selective Rat Toxicant Norbormide as a New Probe for Living Cell Imaging
title_full An NBD Derivative of the Selective Rat Toxicant Norbormide as a New Probe for Living Cell Imaging
title_fullStr An NBD Derivative of the Selective Rat Toxicant Norbormide as a New Probe for Living Cell Imaging
title_full_unstemmed An NBD Derivative of the Selective Rat Toxicant Norbormide as a New Probe for Living Cell Imaging
title_short An NBD Derivative of the Selective Rat Toxicant Norbormide as a New Probe for Living Cell Imaging
title_sort nbd derivative of the selective rat toxicant norbormide as a new probe for living cell imaging
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5034647/
https://www.ncbi.nlm.nih.gov/pubmed/27721792
http://dx.doi.org/10.3389/fphar.2016.00315
work_keys_str_mv AT damoreclaudio annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT orsogenny annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT fusifabio annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT paganomarioa annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT miottogiovanni annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT forgiarinialessia annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT demartinsara annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT castellanigiulia annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT ribaudogiovanni annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT rennisondavid annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT brimblemargareta annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT hopkinsbrian annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT ferraresealessandro annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT bovasergio annbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT damoreclaudio nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT orsogenny nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT fusifabio nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT paganomarioa nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT miottogiovanni nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT forgiarinialessia nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT demartinsara nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT castellanigiulia nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT ribaudogiovanni nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT rennisondavid nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT brimblemargareta nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT hopkinsbrian nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT ferraresealessandro nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging
AT bovasergio nbdderivativeoftheselectiverattoxicantnorbormideasanewprobeforlivingcellimaging