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Updated: Jul 18, 2026

Fluorescence Molecular Tomography for In Vivo Imaging of Glioblastoma Xenografts
Published on: April 26, 2018
Amplification of KIT, PDGFRA, VEGFR2, and EGFR in gliomas
Marjut Puputti1, Olli Tynninen, Harri Sihto
1Laboratory of Molecular Oncology, Biomedicum Helsinki, Helsinki, Finland. Marjut.Puputti@hus.fi
Abstract:
Receptor tyrosine kinase aberrations are implicated in the genesis of gliomas. We investigated expression and amplification of KIT, PDGFRA, VEGFR2, and EGFR in 87 gliomas consisting of astrocytomas, anaplastic astrocytomas, oligodendrogliomas, or oligoastrocytomas in tumor samples collected at the time of the diagnosis and in samples of the same tumors at tumor recurrence. Gene amplifications were investigated using either chromogenic in situ hybridization or fluorescence in situ hybridization, and protein expression using immunohistochemistry. In samples collected at glioma diagnosis, KIT and PDGFRA amplifications were more frequent in anaplastic astrocytomas than in astrocytomas, oligodendrogliomas, and oligoastrocytomas [28% versus 5% (P = 0.012) and 33% versus 2% (P = 0.0008), respectively]. VEGFR2 amplifications occurred in 6% to 17% of the gliomas at diagnosis, and EGFR amplifications in 0% to 12%. Amplified KIT was more frequently present in recurrent gliomas than in newly diagnosed gliomas (P = 0.0066). KIT amplification was associated with KIT protein expression and with presence of PDGFRA and EGFR amplifications both at the time of the first glioma diagnosis and at tumor recurrence, and with VEGFR2 amplification at tumor recurrence. Three (4%) primary gliomas and 10 (14%) recurrent gliomas that were evaluable for coamplification of KIT, PDGFRA, and VEGFR2 showed amplification of at least two of these genes; the amplicon contained amplified KIT in all 13 cases. In conclusion, besides glioblastoma, amplified KIT, PDGFRA, and VEGFR may also occur in lower-grade gliomas and in their recurrent tumors. It is currently not known whether specific tyrosine kinase inhibitors are effective in the treatment of such gliomas.
Insights
Receptor tyrosine kinase amplifications, including KIT, PDGFRA, and VEGFR, are found in lower-grade gliomas and recurrent tumors. Amplified KIT is more common in recurrent gliomas and associated with other kinase amplifications.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Receptor tyrosine kinases (RTKs) play a crucial role in glioma development.
- Aberrant expression and amplification of RTKs like KIT, PDGFRA, VEGFR2, and EGFR are observed in various gliomas.
Purpose of the Study:
- To investigate the expression and amplification of KIT, PDGFRA, VEGFR2, and EGFR in gliomas at diagnosis and recurrence.
- To determine the frequency and associations of these RTK aberrations in different glioma subtypes.
Main Methods:
- Analysis of 87 gliomas (astrocytomas, anaplastic astrocytomas, oligodendrogliomas, oligoastrocytomas) at diagnosis and recurrence.
- Gene amplification assessed using chromogenic or fluorescence in situ hybridization.
- Protein expression evaluated by immunohistochemistry.
Main Results:
- KIT and PDGFRA amplifications were more frequent in anaplastic astrocytomas compared to other glioma types at diagnosis.
- Amplified KIT was significantly more prevalent in recurrent gliomas than in newly diagnosed ones.
- KIT amplification correlated with KIT protein expression and co-amplification of PDGFRA and EGFR.
Conclusions:
- Amplified KIT, PDGFRA, and VEGFR are not exclusive to glioblastoma but also occur in lower-grade gliomas and their recurrent forms.
- The co-amplification of KIT, PDGFRA, and VEGFR2 highlights potential therapeutic targets in gliomas.
- Further research is needed to determine the efficacy of tyrosine kinase inhibitors for treating these specific glioma subtypes.

