Animal models to study cancer-initiating cells from Glioblastoma Journal Article


Authors: Wee, B.; Charles, N.; Holland, E. C.
Article Title: Animal models to study cancer-initiating cells from Glioblastoma
Abstract: Three main subtypes of gliomas with distinct molecular pathologies have been modeled in animals to better understand their biology. Genetically engineered mouse models that take advantage of genetic abnormalities observed in human gliomas have been instrumental in this process. These models better recapitulate signaling transduction pathways and the microenvironment that play crucial roles in glioma formation than in vitro systems or transplantation models. An increasing amount of data supports the existence of cells functionally defined by their self-renewal ability and tumor-initiating potential upon serial transplantation. As the issue of these cells with stem cell character in gliomagenesis becomes more illusive, animal models that provide an accurate experimental system where the stem cell character can be manipulated and studied are urgently needed. This review provides an overview of the current state of the literature with respect to animal models used in the study of gliomas and cells with stem cell character in their native environment.
Keywords: signal transduction; mutation; review; pathophysiology; brain tumor; brain neoplasms; mouse; animal; animals; mice; biological model; models, biological; pathology; physiology; gene transfer; transgenic mouse; animalia; mice, transgenic; disease model; tumor suppressor gene; neoplastic stem cells; glioblastoma; cancer stem cell; murinae; glioblastoma multiforme; microenvironment; disease models, animal; genes, tumor suppressor; murine model; gene transfer techniques; genetic alterations; tumor microenvironment; brain tumor-initiating cell
Journal Title: Frontiers in Bioscience
Volume: 16
Issue: 6
ISSN: 1093-9946
Publisher: Frontiers in Bioscience  
Date Published: 2011-06-01
Start Page: 2243
End Page: 2258
Language: English
DOI: 10.2741/3851
PROVIDER: scopus
PUBMED: 21622174
DOI/URL:
Notes: --- - "Export Date: 17 August 2011" - "Source: Scopus"
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  1. Eric Holland
    225 Holland
  2. Nikki Charles
    12 Charles
  3. Boyoung Wee
    7 Wee