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Published on: December 28, 2017
Boric acid impedes glioblastoma growth in a rat model: insights from multi-approach analysis
Hasan Turkez1, Fatih Alper2, Cemil Bayram3
1Department of Medical Biology, Faculty of Medicine, Atatürk University, Erzurum, Turkey.
Abstract:
Limited advancements in managing malignant brain tumors have resulted in poor prognoses for glioblastoma (GBM) patients. Standard treatment involves surgery, radiotherapy, and chemotherapy, which lack specificity and damage healthy brain tissue. Boron-containing compounds, such as boric acid (BA), exhibit diverse biological effects, including anticancer properties. This study aimed to examine whether boron supplementation, as BA, can inhibit glioblastoma growth in a xenograft animal model. Using MRI-based tumor size measurement, survival rates, hematological, clinical biochemistry analyses, and genotoxicity parameters, we assessed the impact of BA. Histopathological, immunohistochemical, and immunofluorescence examinations were also conducted. All BA doses (3.25, 6.5, and 13 mg kg-1 b.w.) extended survival compared to GBM controls after 14 days, with a dose-dependent anti-GBM effect observed in MRI analyses. BA treatment improved hematological (WBC and PLT counts) and biochemical parameters (LDL-C, CREA, and ALP). Histopathological examination revealed a significant reduction in tumor diameter with 6.5 and 13 mg kg-1 BA. Immunohistochemical and immunofluorescence staining showed modulation of intracytoplasmic Ki67, cytoplasmic CMPK2, and GFAP expressions in tumor cells post-BA treatment. Additionally, BA did not increase micronuclei formations, indicating its non-genotoxic nature. In conclusion, targeting tumor suppressor networks with boron demonstrates significant therapeutic potential for GBM treatment.
Insights
Boric acid (BA) shows promise in treating glioblastoma (GBM). Boron supplementation with BA extended survival and reduced tumor growth in an animal model, offering a potential new therapy for brain tumors.
Area of Science:
- Oncology
- Biochemistry
- Pharmacology
Background:
- Glioblastoma (GBM) has a poor prognosis due to limited treatment advancements.
- Current treatments like surgery, radiotherapy, and chemotherapy lack specificity and harm healthy tissue.
- Boron compounds, including boric acid (BA), possess anticancer properties.
Purpose of the Study:
- To investigate the efficacy of boric acid (BA) as a boron supplement in inhibiting glioblastoma growth.
- To evaluate the therapeutic potential of BA in a xenograft animal model of GBM.
Main Methods:
- Tumor size was measured using MRI.
- Survival rates, hematological, and biochemical parameters were analyzed.
- Histopathological, immunohistochemical, and immunofluorescence analyses were performed, along with genotoxicity tests.
Main Results:
- All tested doses of BA (3.25, 6.5, 13 mg/kg) significantly extended survival in GBM-bearing animals.
- MRI revealed a dose-dependent reduction in tumor size with BA treatment.
- BA improved hematological and biochemical markers and demonstrated a non-genotoxic profile.
Conclusions:
- Boron supplementation with boric acid shows significant therapeutic potential for glioblastoma.
- Targeting tumor suppressor networks with boron offers a promising strategy for GBM treatment.
- BA treatment effectively inhibited GBM growth and improved patient-derived parameters in vivo.
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