Abstract

Abstract Gliomas correspond to approximately 80% of primary malignant brain tumors in adults. Associate histopathological classification to the identification of the molecular profile of these tumors is a great strategy to predict the tumor’s behavior and its responsiveness to the treatments. Studies have shown the potential of using biopharmaceuticals against cancer. Our research group has recently found two main subfractions isolated from Phoneutria nigriventer spider venom (PnV) (called SF1 and SF11) that can act decreasing the number of migrating cells during transwell assay. Therefore, the present study aimed to characterize, as regards molecular identity, the responsiveness of glioma samples collected from patients to the molecules purified from the PnV, in order to improve diagnostic and prognostic predictions, as well as contribute to the development of new drugs. After consent of the patients, samples of the tumors clinically diagnosed as glioma were collected during the surgical procedure to cultivation, that were performed until 10 passages to establish a lineage before use. To analyze its responsiveness to PnV in a migration assay, cultured human glioblastoma (1-JA63) cells were treated with PnV-isolated (HPLC) subfractions (SF1 and SF11 at 1 µg/ml) for 12 and 48 h (control stayed in IMDM) in a transwell system. SFs (mainly SF1) treatment induced a significant reduction in the number of migrating cells after 48 hours of exposure, in comparison to the control (untreated). Ongoing trials continue the establishment of another tumor samples of gliomas and migration tests with PnV subfractions will be carried out, to compare their effects in relation to other degrees of the disease also correlating the tumor response to the drug with the molecular profile. The results will contribute to the development of a potential individualized therapy also adding information about the correlation between the molecular identity of the tumor and its prognosis.

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