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Updated: Jul 19, 2026

Bioluminescence Imaging of an Immunocompetent Animal Model for Glioblastoma
Published on: January 15, 2016
Development of luciferase tagged brain tumour models in mice for chemotherapy intervention studies
E M Kemper1, W Leenders, B Küsters
1Department of Clinical Chemistry, The Netherlands Cancer Institute/Antoni van Leeuwenhoek Huis, Plesmanlaan 121, 1066 CX Amsterdam, The Netherlands.
Abstract:
The blood-brain barrier (BBB) is considered one of the major causes for the low efficacy of cytotoxic compounds against primary brain tumours. The aim of this study was to develop intracranial tumour models in mice featuring intact or locally disrupted BBB properties, which can be used in testing chemotherapy against brain tumours. These tumours were established by intracranial injection of suspensions of different tumour cell lines. All cell lines had been transfected with luciferase to allow non-invasive imaging of tumour development using a super-cooled CCD-camera. Following their implantation, tumours developed which displayed the infiltrative, invasive or expansive growth patterns that are also found in primary brain cancer or brain metastases. Contrast-enhanced magnetic resonance imaging showed that the Mel57, K1735Br2 and RG-2 lesions grow without disruption of the BBB, whereas the BBB was leaky in the U87MG and VEGF-A-transfected Mel57 lesions. This was confirmed by immunohistochemistry. Bioluminescence measurements allowed the visualisation of tumour burden already within 4 days after injection of the tumour cells. The applicability of our models for performing efficacy studies was demonstrated in an experiment using temozolomide as study drug. In conclusion, we have developed experimental brain tumour models with partly disrupted, or completely intact BBB properties. In vivo imaging by luciferase allows convenient follow-up of tumour growth and these models will be useful for chemotherapeutic intervention studies.
Insights
Researchers developed new mouse models for brain tumors with intact or disrupted blood-brain barrier (BBB) properties. These models enable effective testing of chemotherapy drugs for brain cancer treatment.
Area of Science:
- Neuro-oncology
- Cancer Biology
- Pharmacology
Background:
- The blood-brain barrier (BBB) significantly limits the efficacy of chemotherapy for primary brain tumors.
- Developing reliable preclinical models is crucial for advancing brain cancer treatment.
Purpose of the Study:
- To create intracranial mouse models of brain tumors with either intact or disrupted blood-brain barrier (BBB) properties.
- To establish models suitable for evaluating chemotherapy efficacy against brain tumors.
Main Methods:
- Intracranial injection of luciferase-transfected tumor cell lines to establish tumors.
- Non-invasive tumor monitoring using bioluminescence imaging (BLI).
- Assessment of BBB integrity via contrast-enhanced MRI and immunohistochemistry.
Main Results:
- Tumor models exhibited infiltrative, invasive, or expansive growth patterns mirroring human brain cancers.
- BBB integrity varied: intact in Mel57, K1735Br2, RG-2 models; disrupted in U87MG and VEGF-A-transfected Mel57 models.
- Bioluminescence imaging allowed rapid visualization of tumor burden within 4 days.
Conclusions:
- Novel experimental brain tumor models with controlled BBB properties (intact or disrupted) have been successfully developed.
- Luciferase-based in vivo imaging provides efficient tumor growth monitoring.
- These models are valuable tools for preclinical chemotherapy efficacy studies in brain tumors.
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