Back to Search
Start Over
Molecular crosstalk between tumour and brain parenchyma instructs histopathological features in glioblastoma
- Source :
- Oncotarget
- Publication Year :
- 2015
-
Abstract
- The histopathological and molecular heterogeneity of glioblastomas represents a major obstacle for effective therapies. Glioblastomas do not develop autonomously, but evolve in a unique environment that adapts to the growing tumour mass and contributes to the malignancy of these neoplasms. Here, we show that patient-derived glioblastoma xenografts generated in the mouse brain from organotypic spheroids reproducibly give rise to three different histological phenotypes: (i) a highly invasive phenotype with an apparent normal brain vasculature, (ii) a highly angiogenic phenotype displaying microvascular proliferation and necrosis and (iii) an intermediate phenotype combining features of invasion and vessel abnormalities. These phenotypic differences were visible during early phases of tumour development suggesting an early instructive role of tumour cells on the brain parenchyma. Conversely, we found that tumour-instructed stromal cells differentially influenced tumour cell proliferation and migration in vitro, indicating a reciprocal crosstalk between neoplastic and non-neoplastic cells. We did not detect any transdifferentiation of tumour cells into endothelial cells. Cell type-specific transcriptomic analysis of tumour and endothelial cells revealed a strong phenotype-specific molecular conversion between the two cell types, suggesting co-evolution of tumour and endothelial cells. Integrative bioinformatic analysis confirmed the reciprocal crosstalk between tumour and microenvironment and suggested a key role for TGFβ1 and extracellular matrix proteins as major interaction modules that shape glioblastoma progression. These data provide novel insight into tumour-host interactions and identify novel stroma-specific targets that may play a role in combinatorial treatment strategies against glioblastoma.
- Subjects :
- 0301 basic medicine
Pathology
Time Factors
Angiogenesis
Cell
Mice, SCID
angiogenesis
Cell Movement
Mice, Inbred NOD
Tumor Cells, Cultured
Tumor Microenvironment
Angiogenic Proteins
Extracellular Matrix Proteins
Neovascularization, Pathologic
Brain Neoplasms
Transdifferentiation
Brain
Gene Expression Regulation, Neoplastic
Crosstalk (biology)
Autocrine Communication
medicine.anatomical_structure
Phenotype
Oncology
Heterografts
tumour microenvironment
Signal Transduction
Research Paper
Cell type
medicine.medical_specialty
Stromal cell
patient-derived xenograft
Biology
Transforming Growth Factor beta1
03 medical and health sciences
Necrosis
Cell Line, Tumor
Parenchyma
Paracrine Communication
medicine
Animals
Humans
Neoplasm Invasiveness
Parenchymal Tissue
Cell Proliferation
Tumor microenvironment
glioblastoma
Endothelial Cells
030104 developmental biology
Cancer research
Blood Vessels
Stromal Cells
Transcriptome
Subjects
Details
- ISSN :
- 19492553
- Volume :
- 7
- Issue :
- 22
- Database :
- OpenAIRE
- Journal :
- Oncotarget
- Accession number :
- edsair.doi.dedup.....2a66c1d2bb7aa69bccf0122d28be7540