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Natural History of Meningioma Development in Mice Reveals: A Synergy of Nf2 and p16 (Ink4a) Mutations

Meningiomas account for approximately 30% of all primary central nervous system tumors and are found in half of neurofibromatosis type 2 patients often causing significant morbidity. Although most meningiomas are benign, 10% are classified as atypical or anaplastic, displaying aggressive clinical be...

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Autores principales: Kalamarides, Michel, Stemmer‐Rachamimov, Anat O., Takahashi, Masaya, Han, Zhi‐Yan, Chareyre, Fabrice, Niwa‐Kawakita, Michiko, Black, Peter M., Carroll, Rona S., Giovannini, Marco
Formato: Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2253711/
https://www.ncbi.nlm.nih.gov/pubmed/17924978
http://dx.doi.org/10.1111/j.1750-3639.2007.00105.x
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author Kalamarides, Michel
Stemmer‐Rachamimov, Anat O.
Takahashi, Masaya
Han, Zhi‐Yan
Chareyre, Fabrice
Niwa‐Kawakita, Michiko
Black, Peter M.
Carroll, Rona S.
Giovannini, Marco
author_facet Kalamarides, Michel
Stemmer‐Rachamimov, Anat O.
Takahashi, Masaya
Han, Zhi‐Yan
Chareyre, Fabrice
Niwa‐Kawakita, Michiko
Black, Peter M.
Carroll, Rona S.
Giovannini, Marco
author_sort Kalamarides, Michel
collection PubMed
description Meningiomas account for approximately 30% of all primary central nervous system tumors and are found in half of neurofibromatosis type 2 patients often causing significant morbidity. Although most meningiomas are benign, 10% are classified as atypical or anaplastic, displaying aggressive clinical behavior. Biallelic inactivation of the neurofibromatosis 2 (NF2) tumor suppressor is associated with meningioma formation in all NF2 patients and 60% of sporadic meningiomas. Deletion of the p16 (INK4a)/p14 (ARF) locus is found in both benign and malignant meningiomas, while mutation of the p53 tumor suppressor gene is uncommon. Previously, we inactivated Nf2 in homozygous conditional knockout mice by adenoviral Cre delivery and showed that Nf2 loss in arachnoid cells is rate‐limiting for meningioma formation. Here, we report that additional nullizygosity for p16 (Ink4a) increases the frequency of meningioma and meningothelial proliferation in these mice without modifying the tumor grade. In addition, by using magnetic resonance imaging (MRI) to screen a large cohort of mutant mice, we were able to detect meningothelial proliferation and meningioma development opening the way to future studies in which therapeutic interventions can be tested as preclinical assessment of their potential clinical application.
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spelling pubmed-22537112008-03-11 Natural History of Meningioma Development in Mice Reveals: A Synergy of Nf2 and p16 (Ink4a) Mutations Kalamarides, Michel Stemmer‐Rachamimov, Anat O. Takahashi, Masaya Han, Zhi‐Yan Chareyre, Fabrice Niwa‐Kawakita, Michiko Black, Peter M. Carroll, Rona S. Giovannini, Marco Brain Pathol Research Articles Meningiomas account for approximately 30% of all primary central nervous system tumors and are found in half of neurofibromatosis type 2 patients often causing significant morbidity. Although most meningiomas are benign, 10% are classified as atypical or anaplastic, displaying aggressive clinical behavior. Biallelic inactivation of the neurofibromatosis 2 (NF2) tumor suppressor is associated with meningioma formation in all NF2 patients and 60% of sporadic meningiomas. Deletion of the p16 (INK4a)/p14 (ARF) locus is found in both benign and malignant meningiomas, while mutation of the p53 tumor suppressor gene is uncommon. Previously, we inactivated Nf2 in homozygous conditional knockout mice by adenoviral Cre delivery and showed that Nf2 loss in arachnoid cells is rate‐limiting for meningioma formation. Here, we report that additional nullizygosity for p16 (Ink4a) increases the frequency of meningioma and meningothelial proliferation in these mice without modifying the tumor grade. In addition, by using magnetic resonance imaging (MRI) to screen a large cohort of mutant mice, we were able to detect meningothelial proliferation and meningioma development opening the way to future studies in which therapeutic interventions can be tested as preclinical assessment of their potential clinical application. Blackwell Publishing Ltd 2007-10-09 /pmc/articles/PMC2253711/ /pubmed/17924978 http://dx.doi.org/10.1111/j.1750-3639.2007.00105.x Text en © 2007 The Authors Open access.
spellingShingle Research Articles
Kalamarides, Michel
Stemmer‐Rachamimov, Anat O.
Takahashi, Masaya
Han, Zhi‐Yan
Chareyre, Fabrice
Niwa‐Kawakita, Michiko
Black, Peter M.
Carroll, Rona S.
Giovannini, Marco
Natural History of Meningioma Development in Mice Reveals: A Synergy of Nf2 and p16 (Ink4a) Mutations
title Natural History of Meningioma Development in Mice Reveals: A Synergy of Nf2 and p16 (Ink4a) Mutations
title_full Natural History of Meningioma Development in Mice Reveals: A Synergy of Nf2 and p16 (Ink4a) Mutations
title_fullStr Natural History of Meningioma Development in Mice Reveals: A Synergy of Nf2 and p16 (Ink4a) Mutations
title_full_unstemmed Natural History of Meningioma Development in Mice Reveals: A Synergy of Nf2 and p16 (Ink4a) Mutations
title_short Natural History of Meningioma Development in Mice Reveals: A Synergy of Nf2 and p16 (Ink4a) Mutations
title_sort natural history of meningioma development in mice reveals: a synergy of nf2 and p16 (ink4a) mutations
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2253711/
https://www.ncbi.nlm.nih.gov/pubmed/17924978
http://dx.doi.org/10.1111/j.1750-3639.2007.00105.x
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