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Published on: January 7, 2017
ATP binding cassette (ABC) transporters: expression and clinical value in glioblastoma
Antonin Dréan1,2, Shai Rosenberg1,3, François-Xavier Lejeune1
1Inserm U 1127, CNRS UMR 7225, Sorbonne Universités, UPMC Univ Paris 04 UMR S 1127, Institut du Cerveau et de la Moelle épinière, ICM, 75013, Paris, France.
Abstract:
ATP-binding cassette transporters (ABC transporters) regulate traffic of multiple compounds, including chemotherapeutic agents, through biological membranes. They are expressed by multiple cell types and have been implicated in the drug resistance of some cancer cells. Despite significant research in ABC transporters in the context of many diseases, little is known about their expression and clinical value in glioblastoma (GBM). We analyzed expression of 49 ABC transporters in both commercial and patient-derived GBM cell lines as well as from 51 human GBM tumor biopsies. Using The Cancer Genome Atlas (TCGA) cohort as a training dataset and our cohort as a validation dataset, we also investigated the prognostic value of these ABC transporters in newly diagnosed GBM patients, treated with the standard of care. In contrast to commercial GBM cell lines, GBM-patient derived cell lines (PDCL), grown as neurospheres in a serum-free medium, express ABC transporters similarly to parental tumors. Serum appeared to slightly increase resistance to temozolomide correlating with a tendency for an increased expression of ABCB1. Some differences were observed mainly due to expression of ABC transporters by microenvironmental cells. Together, our data suggest that the efficacy of chemotherapeutic agents may be misestimated in vitro if they are the targets of efflux pumps whose expression can be modulated by serum. Interestingly, several ABC transporters have prognostic value in the TCGA dataset. In our cohort of 51 GBM patients treated with radiation therapy with concurrent and adjuvant temozolomide, ABCA13 overexpression is associated with a decreased progression free survival in univariate (p < 0.01) and multivariate analyses including MGMT promoter methylation (p = 0.05) suggesting reduced sensitivity to temozolomide in ABCA13 overexpressing GBM. Expression of ABC transporters is: (i) detected in GBM and microenvironmental cells and (ii) better reproduced in GBM-PDCL. ABCA13 expression is an independent prognostic factor in newly diagnosed GBM patients. Further prospective studies are warranted to investigate whether ABCA13 expression can be used to further personalize treatments for GBM.
Insights
ATP-binding cassette (ABC) transporters are crucial in glioblastoma (GBM) drug resistance. ABCA13 overexpression in GBM patients indicates reduced sensitivity to temozolomide, suggesting it as a prognostic factor for personalized treatment.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- ATP-binding cassette (ABC) transporters are membrane proteins involved in drug efflux and resistance.
- Their role in glioblastoma (GBM) remains largely uncharacterized.
- Understanding ABC transporter expression is vital for improving GBM treatment efficacy.
Purpose of the Study:
- To analyze the expression profile of 49 ABC transporters in GBM.
- To investigate the prognostic value of ABC transporters in GBM patients.
- To assess the utility of patient-derived cell lines (PDCLs) in modeling GBM transporter expression.
Main Methods:
- Analysis of 49 ABC transporters in commercial and patient-derived GBM cell lines and 51 GBM tumor biopsies.
- Utilized The Cancer Genome Atlas (TCGA) cohort for training and a patient cohort for validation.
- Correlated ABC transporter expression with progression-free survival and response to temozolomide.
Main Results:
- GBM-patient derived cell lines (PDCLs) better reflect tumor ABC transporter expression than commercial cell lines.
- Serum exposure can modulate ABC transporter expression and influence temozolomide resistance.
- ABCA13 overexpression is an independent prognostic factor, associated with decreased progression-free survival in GBM patients treated with temozolomide.
Conclusions:
- ABC transporter expression is present in GBM and its microenvironment, with PDCLs serving as a more accurate model.
- ABCA13 overexpression signifies reduced sensitivity to temozolomide in GBM.
- ABCA13 warrants further investigation as a biomarker for personalized GBM therapy.
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