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Novel non-mulberry silk fibroin nanoparticles with enhanced activity as potential candidate in nanocarrier mediated delivery system

Rashmi Rekha Baruah, Mohan Chandra Kalita, Dipali Devi

2020RSC Advances21 citationsDOIOpen Access PDF

Abstract

silk fibroin nanoparticles (BM-SFNps) (120-500 nm in diameter). When checked for stability, AA-SFNps were found to be more stable than BM-SFNps in biological media. FTIR and XRD studies revealed persistence of structural properties even after fabrication. TGA and DSC studies showed AA-SFNps to be thermally more stable than BM-SFNps without any cytotoxicity (MTT assay). On loading with model drug Doxorubicin hydrochloride (DOX), AA-SFNps exhibited an encapsulation efficiency of 94.47% with 11.81% loading of the anticancer drug. Cumulative release study revealed highest percentage release of DOX (42.1 ± 0.4%) at pH 5.2 on day 7 in comparison to pH 7.4 and 8.0. Sustained release profile of the DOX loaded AA-SFNps (AA-SFNps-DOX) was clearly reflected and it was found to be highly cytotoxic against triple negative MDA-MB-231 cells in comparison to free DOX at different time points. Overall, this study showed the efficacy of the AA-SFNps as a nanocarrier for future drug delivery applications.

Topics & Concepts

FibroinNanocarriersNanoparticleMTT assayDrug deliverySILKChemistryNuclear chemistryBiocompatibilityCytotoxicityDoxorubicin HydrochlorideNanotechnologyFourier transform infrared spectroscopyDoxorubicinMaterials scienceChemical engineeringIn vitroOrganic chemistryBiochemistryComposite materialSurgeryChemotherapyMedicineEngineeringSilk-based biomaterials and applicationsElectrospun Nanofibers in Biomedical ApplicationsRNA Interference and Gene Delivery
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