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Published on: October 27, 2014
Nerve Growth Factor, Antimicrobial Peptides and Chemotherapy: Glioblastoma Combination Therapy to Improve Their
Alexandr Chernov1, Igor Kudryavtsev1, Aleksei Komlev1
1Institute of Experimental Medicine, WCRC "Center for Personalized Medicine", Saint-Petersburg 197022, Russia.
Abstract:
Glioblastoma (GBM) is an aggressive and lethal malignancy of the central nervous system with a median survival rate of 15 months. We investigated the combined anticancer effects of nerve growth factor (NGF), cathelicidin (LL-37), and protegrin-1 (PG-1) with chemotherapy (temozolomide, doxorubicin, carboplatin, cisplatin, and etoposide) in the glioblastoma U251 cell line to overcome the limitations of conventional chemotherapy and to guarantee specific treatments to succeed. The MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide) assay was used to study cell viability and to determine the cytotoxic effects of NGF, LL-37, and PG-1 and their combination with chemotherapy in U251 cells. Synergism or antagonism was determined using the combination index (CI) method. Caspase-3 activity was evaluated spectrophotometrically using a caspase-3 activity assay kit. Apoptosis was analyzed with flow cytometry using propidium iodide (PI) and YO-PRO-1. NGF and the peptides showed a strong cytotoxic effect on U251 glioma cells in the MTT test (IC50 0.0214, 3.1, and 26.1 μM, respectively) compared to chemotherapy. The combination of PG-1 + etoposide had a synergistic effect on apoptosis of U251 glioma cells. It should be noted that the cells were in the early and late stages of apoptosis, respectively, compared with the control cells. The caspase-3 activation analysis revealed that the caspase-3 level was not significantly (p > 0.05) increased in U251 cells following PG-1 with etoposide treatment compared with that in the untreated cells, suggesting that the combination of PG-1 and etoposide may induce caspase-independent apoptosis in U251 cells. NGF, LL-37, and PG-1 represent promising drug candidates as the treatment regimen for GBM. Furthermore, the synergistic efficacy of the combined protocol using PG-1 and etoposide may overcome some of the typical limitations of the conventional therapeutic protocols, thus representing a promising approach for GBM therapy.
Insights
Nerve growth factor (NGF) and antimicrobial peptides LL-37 and PG-1 show potent anticancer effects against glioblastoma. The combination of protegrin-1 (PG-1) with etoposide synergistically induces apoptosis, offering a promising glioblastoma therapy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Glioblastoma (GBM) is an aggressive brain cancer with poor prognosis.
- Conventional chemotherapy has limitations in treating GBM.
- Novel therapeutic strategies are needed to improve GBM treatment outcomes.
Purpose of the Study:
- To investigate the combined anticancer effects of nerve growth factor (NGF), cathelicidin (LL-37), and protegrin-1 (PG-1) with chemotherapy agents in glioblastoma U251 cells.
- To evaluate the potential of these combinations to overcome limitations of conventional chemotherapy.
- To determine the synergistic or antagonistic effects of these combinations on glioblastoma cell viability and apoptosis.
Main Methods:
- MTT assay was used to assess cell viability and determine cytotoxic effects (IC50 values).
- Combination Index (CI) method was employed to analyze drug synergism or antagonism.
- Caspase-3 activity assay and flow cytometry (propidium iodide and YO-PRO-1 staining) were used to evaluate apoptosis.
Main Results:
- NGF, LL-37, and PG-1 demonstrated significant cytotoxic effects on U251 glioma cells.
- The combination of PG-1 and etoposide exhibited synergistic effects on inducing apoptosis in U251 cells.
- PG-1 and etoposide combination appeared to induce caspase-independent apoptosis.
Conclusions:
- NGF, LL-37, and PG-1 are promising drug candidates for glioblastoma treatment regimens.
- The synergistic combination of PG-1 and etoposide offers a potential therapeutic approach to overcome conventional treatment limitations.
- This combination strategy represents a promising avenue for advancing glioblastoma therapy.
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