Cargando…
[(18) F]FDG-PET imaging is an early non-invasive pharmacodynamic biomarker for a first-in-class dual MEK/Raf inhibitor, RO5126766 (CH5126766), in preclinical xenograft models
BACKGROUND: Positron emission tomography (PET) with [2-(18) F]-2-fluoro-2-deoxy-D-glucose ([(18) F]FDG-PET) was acquired at multiple time-points a) to monitor the early response to RO5126766 (CH5126766) in xenograft models b) to evaluate non-invasive small animal [(18) F]FDG-PET imaging as a biomark...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Springer
2013
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3848680/ https://www.ncbi.nlm.nih.gov/pubmed/24041012 http://dx.doi.org/10.1186/2191-219X-3-67 |
_version_ | 1782293800713977856 |
---|---|
author | Tegnebratt, Tetyana Lu, Li Lee, Lucy Meresse, Valerie Tessier, Jean Ishii, Nobuya Harada, Naoki Pisa, Pavel Stone-Elander, Sharon |
author_facet | Tegnebratt, Tetyana Lu, Li Lee, Lucy Meresse, Valerie Tessier, Jean Ishii, Nobuya Harada, Naoki Pisa, Pavel Stone-Elander, Sharon |
author_sort | Tegnebratt, Tetyana |
collection | PubMed |
description | BACKGROUND: Positron emission tomography (PET) with [2-(18) F]-2-fluoro-2-deoxy-D-glucose ([(18) F]FDG-PET) was acquired at multiple time-points a) to monitor the early response to RO5126766 (CH5126766) in xenograft models b) to evaluate non-invasive small animal [(18) F]FDG-PET imaging as a biomarker for MEK inhibitors for translation into dose-finding studies in cancer patients and c) to explore the underlying mechanism related to FDG uptake in tumors treated with RO5126766. METHODS: [(18) F]FDG uptake was studied in HCT116 (K-ras), COLO205 (B-raf) mutants and COLO320DM (wild type) xenografts from day 0 to 3 of RO5126766 treatment using a microPET Focus 120 and complemented with in vitro incubations, ex-vivo phosphor imaging and immunohistochemical (IHC) analyses. RESULTS: In the HCT116 (K-ras) and COLO205 (B-raf) mutant xenografts, significant decreases in [(18) F]FDG uptake were detected in vivo on day 1 with 0.3 mg/kg and ex vivo on day 3 with 0.1 mg/kg RO5126766. [(18) F]FDG changes correlated with decreases in tumor cells proliferation (Ki-67) and with changes in expression levels of GLUT1. No effects were observed in drug resistant COLO320DM cells. The cellular fractionation and Western blotting analyses suggested that the change of [(18) F]FDG uptake associated with RO5126766 is due to translocation of GLUT1 from membrane to cytosol, similar to the results reported in the literature with EGFR tyrosine kinase inhibitors, which also target the MAPK pathway. CONCLUSIONS: RO5126766 inhibition resulted in a rapid time - and dose - dependent decline in [(18) F]FDG uptake in both mutant xenografts. These results strongly resemble the clinical observations obtained with MEK/Raf inhibitors support the use of preclinical [(18) F]FDG-PET as a translational tool for decision support in preclinical and early clinical development of MEK inhibitors. |
format | Online Article Text |
id | pubmed-3848680 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | Springer |
record_format | MEDLINE/PubMed |
spelling | pubmed-38486802013-12-06 [(18) F]FDG-PET imaging is an early non-invasive pharmacodynamic biomarker for a first-in-class dual MEK/Raf inhibitor, RO5126766 (CH5126766), in preclinical xenograft models Tegnebratt, Tetyana Lu, Li Lee, Lucy Meresse, Valerie Tessier, Jean Ishii, Nobuya Harada, Naoki Pisa, Pavel Stone-Elander, Sharon EJNMMI Res Original Research BACKGROUND: Positron emission tomography (PET) with [2-(18) F]-2-fluoro-2-deoxy-D-glucose ([(18) F]FDG-PET) was acquired at multiple time-points a) to monitor the early response to RO5126766 (CH5126766) in xenograft models b) to evaluate non-invasive small animal [(18) F]FDG-PET imaging as a biomarker for MEK inhibitors for translation into dose-finding studies in cancer patients and c) to explore the underlying mechanism related to FDG uptake in tumors treated with RO5126766. METHODS: [(18) F]FDG uptake was studied in HCT116 (K-ras), COLO205 (B-raf) mutants and COLO320DM (wild type) xenografts from day 0 to 3 of RO5126766 treatment using a microPET Focus 120 and complemented with in vitro incubations, ex-vivo phosphor imaging and immunohistochemical (IHC) analyses. RESULTS: In the HCT116 (K-ras) and COLO205 (B-raf) mutant xenografts, significant decreases in [(18) F]FDG uptake were detected in vivo on day 1 with 0.3 mg/kg and ex vivo on day 3 with 0.1 mg/kg RO5126766. [(18) F]FDG changes correlated with decreases in tumor cells proliferation (Ki-67) and with changes in expression levels of GLUT1. No effects were observed in drug resistant COLO320DM cells. The cellular fractionation and Western blotting analyses suggested that the change of [(18) F]FDG uptake associated with RO5126766 is due to translocation of GLUT1 from membrane to cytosol, similar to the results reported in the literature with EGFR tyrosine kinase inhibitors, which also target the MAPK pathway. CONCLUSIONS: RO5126766 inhibition resulted in a rapid time - and dose - dependent decline in [(18) F]FDG uptake in both mutant xenografts. These results strongly resemble the clinical observations obtained with MEK/Raf inhibitors support the use of preclinical [(18) F]FDG-PET as a translational tool for decision support in preclinical and early clinical development of MEK inhibitors. Springer 2013-09-16 /pmc/articles/PMC3848680/ /pubmed/24041012 http://dx.doi.org/10.1186/2191-219X-3-67 Text en Copyright © 2013 Tegnebratt et al.; licensee Springer. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Original Research Tegnebratt, Tetyana Lu, Li Lee, Lucy Meresse, Valerie Tessier, Jean Ishii, Nobuya Harada, Naoki Pisa, Pavel Stone-Elander, Sharon [(18) F]FDG-PET imaging is an early non-invasive pharmacodynamic biomarker for a first-in-class dual MEK/Raf inhibitor, RO5126766 (CH5126766), in preclinical xenograft models |
title | [(18) F]FDG-PET imaging is an early non-invasive pharmacodynamic biomarker for a first-in-class dual MEK/Raf inhibitor, RO5126766 (CH5126766), in preclinical xenograft models |
title_full | [(18) F]FDG-PET imaging is an early non-invasive pharmacodynamic biomarker for a first-in-class dual MEK/Raf inhibitor, RO5126766 (CH5126766), in preclinical xenograft models |
title_fullStr | [(18) F]FDG-PET imaging is an early non-invasive pharmacodynamic biomarker for a first-in-class dual MEK/Raf inhibitor, RO5126766 (CH5126766), in preclinical xenograft models |
title_full_unstemmed | [(18) F]FDG-PET imaging is an early non-invasive pharmacodynamic biomarker for a first-in-class dual MEK/Raf inhibitor, RO5126766 (CH5126766), in preclinical xenograft models |
title_short | [(18) F]FDG-PET imaging is an early non-invasive pharmacodynamic biomarker for a first-in-class dual MEK/Raf inhibitor, RO5126766 (CH5126766), in preclinical xenograft models |
title_sort | [(18) f]fdg-pet imaging is an early non-invasive pharmacodynamic biomarker for a first-in-class dual mek/raf inhibitor, ro5126766 (ch5126766), in preclinical xenograft models |
topic | Original Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3848680/ https://www.ncbi.nlm.nih.gov/pubmed/24041012 http://dx.doi.org/10.1186/2191-219X-3-67 |
work_keys_str_mv | AT tegnebratttetyana 18ffdgpetimagingisanearlynoninvasivepharmacodynamicbiomarkerforafirstinclassdualmekrafinhibitorro5126766ch5126766inpreclinicalxenograftmodels AT luli 18ffdgpetimagingisanearlynoninvasivepharmacodynamicbiomarkerforafirstinclassdualmekrafinhibitorro5126766ch5126766inpreclinicalxenograftmodels AT leelucy 18ffdgpetimagingisanearlynoninvasivepharmacodynamicbiomarkerforafirstinclassdualmekrafinhibitorro5126766ch5126766inpreclinicalxenograftmodels AT meressevalerie 18ffdgpetimagingisanearlynoninvasivepharmacodynamicbiomarkerforafirstinclassdualmekrafinhibitorro5126766ch5126766inpreclinicalxenograftmodels AT tessierjean 18ffdgpetimagingisanearlynoninvasivepharmacodynamicbiomarkerforafirstinclassdualmekrafinhibitorro5126766ch5126766inpreclinicalxenograftmodels AT ishiinobuya 18ffdgpetimagingisanearlynoninvasivepharmacodynamicbiomarkerforafirstinclassdualmekrafinhibitorro5126766ch5126766inpreclinicalxenograftmodels AT haradanaoki 18ffdgpetimagingisanearlynoninvasivepharmacodynamicbiomarkerforafirstinclassdualmekrafinhibitorro5126766ch5126766inpreclinicalxenograftmodels AT pisapavel 18ffdgpetimagingisanearlynoninvasivepharmacodynamicbiomarkerforafirstinclassdualmekrafinhibitorro5126766ch5126766inpreclinicalxenograftmodels AT stoneelandersharon 18ffdgpetimagingisanearlynoninvasivepharmacodynamicbiomarkerforafirstinclassdualmekrafinhibitorro5126766ch5126766inpreclinicalxenograftmodels |