Farnesylthiosalicylic Acid-Loaded Lipid-Polyethylene Glycol-Polymer Hybrid Nanoparticles For Treatment Of Glioblastoma
Tarih
2017Yazar
Kaffashi, Abbas
Lule, Sevda
Pehlivan, Sibel Bozdag
Sarisozen, Can
Vural, Imran
Kosucu, Husnu
Demir, Taner
Bugdayci, Kadir Emre
Soylemezoglu, Figen
Oguz, Kader Karli
Mut, Melike
Üst veri
Tüm öğe kaydını gösterÖzet
ObjectivesWe aimed to develop lipid-polyethylene glycol (PEG)-polymer hybrid nanoparticles, which have high affinity to tumour tissue with active ingredient, a new generation antineoplastic drug, farnesylthiosalicylic acid (FTA) for treatment of glioblastoma. MethodFarnesylthiosalicylic acid-loaded poly(lactic-co-glycolic acid)-1,2 distearoyl-glycerol-3-phospho-ethanolamine-N [methoxy (PEG)-2000] ammonium salt (PLGA-DSPE-PEG) with or without 1,2-dioleoyl-3-trimethylammonium-propane (DOTAP) hybrid nanoparticles has been prepared and evaluated for in-vitro characterization. Cytotoxicity of FTA-loaded nanoparticles along with its efficacy on rat glioma-2 (RG2) cells was also evaluated both invitro (in comparison with non-malignant cell line, L929) and invivo. Key findingsScanning electron microscopy studies showed that all formulations prepared had smooth surface and spherical in shape. FTA and FTA-loaded nanoparticles have cytotoxic activity against RG2 glioma cell lines in cell culture studies, which further increases with addition of DOTAP. Magnetic resonance imaging and histopathologic evaluation on RG2 tumour cells in rat glioma model (49 female Wistar rats, 250-300g) comparing intravenous and intratumoral injections of the drug have been performed and FTA-loaded nanoparticles reduced tumour size significantly in in-vivo studies, with higher efficiency of intratumoral administration than intravenous route. ConclusionFarnesylthiosalicylic acid-loaded PLGA-DSPE-PEG-DOTAP hybrid nanoparticles are proven to be effective against glioblastoma in both in-vitro and in-vivo experiments.