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Detection of cannabinoid receptor type 2 in native cells and zebrafish with a highly potent, cell-permeable fluorescent probe

Despite its essential role in the (patho)physiology of several diseases, CB(2)R tissue expression profiles and signaling mechanisms are not yet fully understood. We report the development of a highly potent, fluorescent CB(2)R agonist probe employing structure-based reverse design. It commences with...

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Autores principales: Gazzi, Thais, Brennecke, Benjamin, Atz, Kenneth, Korn, Claudia, Sykes, David, Forn-Cuni, Gabriel, Pfaff, Patrick, Sarott, Roman C., Westphal, Matthias V., Mostinski, Yelena, Mach, Leonard, Wasinska-Kalwa, Malgorzata, Weise, Marie, Hoare, Bradley L., Miljuš, Tamara, Mexi, Maira, Roth, Nicolas, Koers, Eline J., Guba, Wolfgang, Alker, André, Rufer, Arne C., Kusznir, Eric A., Huber, Sylwia, Raposo, Catarina, Zirwes, Elisabeth A., Osterwald, Anja, Pavlovic, Anto, Moes, Svenja, Beck, Jennifer, Nettekoven, Matthias, Benito-Cuesta, Irene, Grande, Teresa, Drawnel, Faye, Widmer, Gabriella, Holzer, Daniela, van der Wel, Tom, Mandhair, Harpreet, Honer, Michael, Fingerle, Jürgen, Scheffel, Jörg, Broichhagen, Johannes, Gawrisch, Klaus, Romero, Julián, Hillard, Cecilia J., Varga, Zoltan V., van der Stelt, Mario, Pacher, Pal, Gertsch, Jürg, Ullmer, Christoph, McCormick, Peter J., Oddi, Sergio, Spaink, Herman P., Maccarrone, Mauro, Veprintsev, Dmitry B., Carreira, Erick M., Grether, Uwe, Nazaré, Marc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9116301/
https://www.ncbi.nlm.nih.gov/pubmed/35694350
http://dx.doi.org/10.1039/d1sc06659e
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author Gazzi, Thais
Brennecke, Benjamin
Atz, Kenneth
Korn, Claudia
Sykes, David
Forn-Cuni, Gabriel
Pfaff, Patrick
Sarott, Roman C.
Westphal, Matthias V.
Mostinski, Yelena
Mach, Leonard
Wasinska-Kalwa, Malgorzata
Weise, Marie
Hoare, Bradley L.
Miljuš, Tamara
Mexi, Maira
Roth, Nicolas
Koers, Eline J.
Guba, Wolfgang
Alker, André
Rufer, Arne C.
Kusznir, Eric A.
Huber, Sylwia
Raposo, Catarina
Zirwes, Elisabeth A.
Osterwald, Anja
Pavlovic, Anto
Moes, Svenja
Beck, Jennifer
Nettekoven, Matthias
Benito-Cuesta, Irene
Grande, Teresa
Drawnel, Faye
Widmer, Gabriella
Holzer, Daniela
van der Wel, Tom
Mandhair, Harpreet
Honer, Michael
Fingerle, Jürgen
Scheffel, Jörg
Broichhagen, Johannes
Gawrisch, Klaus
Romero, Julián
Hillard, Cecilia J.
Varga, Zoltan V.
van der Stelt, Mario
Pacher, Pal
Gertsch, Jürg
Ullmer, Christoph
McCormick, Peter J.
Oddi, Sergio
Spaink, Herman P.
Maccarrone, Mauro
Veprintsev, Dmitry B.
Carreira, Erick M.
Grether, Uwe
Nazaré, Marc
author_facet Gazzi, Thais
Brennecke, Benjamin
Atz, Kenneth
Korn, Claudia
Sykes, David
Forn-Cuni, Gabriel
Pfaff, Patrick
Sarott, Roman C.
Westphal, Matthias V.
Mostinski, Yelena
Mach, Leonard
Wasinska-Kalwa, Malgorzata
Weise, Marie
Hoare, Bradley L.
Miljuš, Tamara
Mexi, Maira
Roth, Nicolas
Koers, Eline J.
Guba, Wolfgang
Alker, André
Rufer, Arne C.
Kusznir, Eric A.
Huber, Sylwia
Raposo, Catarina
Zirwes, Elisabeth A.
Osterwald, Anja
Pavlovic, Anto
Moes, Svenja
Beck, Jennifer
Nettekoven, Matthias
Benito-Cuesta, Irene
Grande, Teresa
Drawnel, Faye
Widmer, Gabriella
Holzer, Daniela
van der Wel, Tom
Mandhair, Harpreet
Honer, Michael
Fingerle, Jürgen
Scheffel, Jörg
Broichhagen, Johannes
Gawrisch, Klaus
Romero, Julián
Hillard, Cecilia J.
Varga, Zoltan V.
van der Stelt, Mario
Pacher, Pal
Gertsch, Jürg
Ullmer, Christoph
McCormick, Peter J.
Oddi, Sergio
Spaink, Herman P.
Maccarrone, Mauro
Veprintsev, Dmitry B.
Carreira, Erick M.
Grether, Uwe
Nazaré, Marc
author_sort Gazzi, Thais
collection PubMed
description Despite its essential role in the (patho)physiology of several diseases, CB(2)R tissue expression profiles and signaling mechanisms are not yet fully understood. We report the development of a highly potent, fluorescent CB(2)R agonist probe employing structure-based reverse design. It commences with a highly potent, preclinically validated ligand, which is conjugated to a silicon-rhodamine fluorophore, enabling cell permeability. The probe is the first to preserve interspecies affinity and selectivity for both mouse and human CB(2)R. Extensive cross-validation (FACS, TR-FRET and confocal microscopy) set the stage for CB(2)R detection in endogenously expressing living cells along with zebrafish larvae. Together, these findings will benefit clinical translatability of CB(2)R based drugs.
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spelling pubmed-91163012022-06-10 Detection of cannabinoid receptor type 2 in native cells and zebrafish with a highly potent, cell-permeable fluorescent probe Gazzi, Thais Brennecke, Benjamin Atz, Kenneth Korn, Claudia Sykes, David Forn-Cuni, Gabriel Pfaff, Patrick Sarott, Roman C. Westphal, Matthias V. Mostinski, Yelena Mach, Leonard Wasinska-Kalwa, Malgorzata Weise, Marie Hoare, Bradley L. Miljuš, Tamara Mexi, Maira Roth, Nicolas Koers, Eline J. Guba, Wolfgang Alker, André Rufer, Arne C. Kusznir, Eric A. Huber, Sylwia Raposo, Catarina Zirwes, Elisabeth A. Osterwald, Anja Pavlovic, Anto Moes, Svenja Beck, Jennifer Nettekoven, Matthias Benito-Cuesta, Irene Grande, Teresa Drawnel, Faye Widmer, Gabriella Holzer, Daniela van der Wel, Tom Mandhair, Harpreet Honer, Michael Fingerle, Jürgen Scheffel, Jörg Broichhagen, Johannes Gawrisch, Klaus Romero, Julián Hillard, Cecilia J. Varga, Zoltan V. van der Stelt, Mario Pacher, Pal Gertsch, Jürg Ullmer, Christoph McCormick, Peter J. Oddi, Sergio Spaink, Herman P. Maccarrone, Mauro Veprintsev, Dmitry B. Carreira, Erick M. Grether, Uwe Nazaré, Marc Chem Sci Chemistry Despite its essential role in the (patho)physiology of several diseases, CB(2)R tissue expression profiles and signaling mechanisms are not yet fully understood. We report the development of a highly potent, fluorescent CB(2)R agonist probe employing structure-based reverse design. It commences with a highly potent, preclinically validated ligand, which is conjugated to a silicon-rhodamine fluorophore, enabling cell permeability. The probe is the first to preserve interspecies affinity and selectivity for both mouse and human CB(2)R. Extensive cross-validation (FACS, TR-FRET and confocal microscopy) set the stage for CB(2)R detection in endogenously expressing living cells along with zebrafish larvae. Together, these findings will benefit clinical translatability of CB(2)R based drugs. The Royal Society of Chemistry 2022-04-01 /pmc/articles/PMC9116301/ /pubmed/35694350 http://dx.doi.org/10.1039/d1sc06659e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Gazzi, Thais
Brennecke, Benjamin
Atz, Kenneth
Korn, Claudia
Sykes, David
Forn-Cuni, Gabriel
Pfaff, Patrick
Sarott, Roman C.
Westphal, Matthias V.
Mostinski, Yelena
Mach, Leonard
Wasinska-Kalwa, Malgorzata
Weise, Marie
Hoare, Bradley L.
Miljuš, Tamara
Mexi, Maira
Roth, Nicolas
Koers, Eline J.
Guba, Wolfgang
Alker, André
Rufer, Arne C.
Kusznir, Eric A.
Huber, Sylwia
Raposo, Catarina
Zirwes, Elisabeth A.
Osterwald, Anja
Pavlovic, Anto
Moes, Svenja
Beck, Jennifer
Nettekoven, Matthias
Benito-Cuesta, Irene
Grande, Teresa
Drawnel, Faye
Widmer, Gabriella
Holzer, Daniela
van der Wel, Tom
Mandhair, Harpreet
Honer, Michael
Fingerle, Jürgen
Scheffel, Jörg
Broichhagen, Johannes
Gawrisch, Klaus
Romero, Julián
Hillard, Cecilia J.
Varga, Zoltan V.
van der Stelt, Mario
Pacher, Pal
Gertsch, Jürg
Ullmer, Christoph
McCormick, Peter J.
Oddi, Sergio
Spaink, Herman P.
Maccarrone, Mauro
Veprintsev, Dmitry B.
Carreira, Erick M.
Grether, Uwe
Nazaré, Marc
Detection of cannabinoid receptor type 2 in native cells and zebrafish with a highly potent, cell-permeable fluorescent probe
title Detection of cannabinoid receptor type 2 in native cells and zebrafish with a highly potent, cell-permeable fluorescent probe
title_full Detection of cannabinoid receptor type 2 in native cells and zebrafish with a highly potent, cell-permeable fluorescent probe
title_fullStr Detection of cannabinoid receptor type 2 in native cells and zebrafish with a highly potent, cell-permeable fluorescent probe
title_full_unstemmed Detection of cannabinoid receptor type 2 in native cells and zebrafish with a highly potent, cell-permeable fluorescent probe
title_short Detection of cannabinoid receptor type 2 in native cells and zebrafish with a highly potent, cell-permeable fluorescent probe
title_sort detection of cannabinoid receptor type 2 in native cells and zebrafish with a highly potent, cell-permeable fluorescent probe
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9116301/
https://www.ncbi.nlm.nih.gov/pubmed/35694350
http://dx.doi.org/10.1039/d1sc06659e
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