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Nanoparticle Delivery of an Oligonucleotide Payload in a Glioblastoma Multiforme Animal Model
Published on: September 27, 2024
[Role of adrenomedullin in glioblastomas growth]
Françoise Boudouresque1, Yolande Berthois, Pierre-Marie Martin
1Laboratoire de cancérologie expérimentale, Inserm E0359, Faculté de médecine Nord, boulevard Pierre-Dramard, 13916 Marseille Cedex 20.
Abstract:
Glioblastoma multiforme is the most malignant of the primary brain tumors and is almost always fatal. The treatment strategies for this disease have not changed appreciably for many years and most are based on a limited understanding of the biology of the disease. Growth factors are potential targets for therapeutic strategies because they are essential for tumor growth and progression. Adrenomedullin (AM) is a multifunctional regulatory peptide with mitogenic and angiogenic capabilities among others. Real-time quantitative reverse transcriptase-polymerase chain reaction analysis showed that AM mRNA was correlated to the tumor type and grade, with high expression in all glioblastomas analysed, whereas a low expression was found in anaplastic astrocytomas and barely detectable levels in low-grade astrocytomas and oligodendriogliomas. The correlation of AM expression to the grade of glioma support the hypothesis that AM may participate in the progression of gliomas. We demonstrate that AM may function as an autocrine/paracrine growth factor for glioblastoma cells. The data demonstrated that the anti-AM antibody significantly suppress the growth of established glioblastoma xenografts. The action of AM is specific and is mediated by the calcitonin receptor-like receptor/receptor activity-modifying protein-2 and -3 (CRLR/RAMP2, CRLR/RAMP3). Furthermore, the proangiogenic action of AM on cultured endothelial cells via CRLR/RAMP2 and CRLR/RAMP3 receptors may translate in vivo into enhanced neovascularization and therefore identify AM and its receptors acting as potential new targets for antiangiogenic therapies.
Insights
Adrenomedullin (AM) is highly expressed in glioblastoma, promoting tumor growth and progression. Targeting AM with antibodies significantly suppressed glioblastoma xenografts, identifying it as a potential therapeutic target.
Area of Science:
- Molecular Biology
- Oncology
- Neuroscience
Context:
- Glioblastoma multiforme (GBM) is an aggressive primary brain tumor with limited treatment options.
- Current GBM treatments are based on an incomplete understanding of the tumor's biology.
- Growth factors are critical for tumor progression and represent potential therapeutic targets.
Purpose:
- To investigate the role of Adrenomedullin (AM) in glioblastoma pathogenesis.
- To explore AM and its receptors as potential therapeutic targets for GBM.
Summary:
- Adrenomedullin (AM) mRNA expression correlates with glioma grade, showing high levels in glioblastomas.
- AM acts as an autocrine/paracrine growth factor for glioblastoma cells.
- Anti-AM antibody treatment significantly inhibited glioblastoma xenograft growth, mediated by CRLR/RAMP2 and CRLR/RAMP3 receptors.
- AM promotes endothelial cell proliferation and may enhance tumor neovascularization.
Impact:
- Identifies Adrenomedullin (AM) as a key player in glioblastoma growth and progression.
- Demonstrates the efficacy of anti-AM antibodies in suppressing glioblastoma xenografts.
- Establishes AM and its receptors (CRLR/RAMP2, CRLR/RAMP3) as novel therapeutic targets for anti-angiogenic therapies in glioblastoma.
