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Nanomedicine & Nanoscience Research|May 7, 2019
Optimizing Nanoparticle Design for Gene Therapy: Protection of Oligonucleotides from Degradation Without Impeding Release of CargoOksana Fihurka, Juan Sanchez-Ramos, Vasyl SavaNanomedicine (London, England)|April 4, 2022
Dual-function hybrid nanoparticles with gene silencing and anti-inflammatory effectsOksana Fihurka, Vasyl Sava, Juan Sanchez-RamosJournal of Cannabis Research|August 23, 2025
Quantitation of Cannabidiol (CBD) in brain regions and plasma following intranasal administration of a CBD nanoformulationGunjan Upadhyay, Oksana Fihurka, Pranav Patel, et al.Data in Brief|January 24, 2020
Data on enrichment of chitosan nanoparticles for intranasal delivery of oligonucleotides to the brainVasyl Sava, Oksana Fihurka, Anastasia Khvorova, et al.Journal of Nanotechnology and Nanomaterials|September 25, 2023
Key Features in the Design and Function of Nanocarriers for Intranasal Administration of Gene Therapy in Huntington DiseaseOksana Fihurka, Stephen Aradi, Vasyl Sava, et al.Nanomedicine : Nanotechnology, Biology, and Medicine|November 1, 2019
Enriched chitosan nanoparticles loaded with siRNA are effective in lowering Huntington's disease gene expression following intranasal administrationVasyl Sava, Oksana Fihurka, Anastasia Khvorova, et al.Journal of Cannabis Research|February 8, 2023
Measurement of Δ9THC and metabolites in the brain and peripheral tissues after intranasal instillation of a nanoformulationGunjan Upadhyay, Oksana Fihurka, Connor Habecker, et al.International Journal of Molecular Sciences|April 23, 2022
The Memory Benefit to Aged APP/PS1 Mice from Long-Term Intranasal Treatment of Low-Dose THCOksana Fihurka, Yuzhu Hong, Jiyu Yan, et al.Biomolecules|February 25, 2023
Multi-Targeting Intranasal Nanoformulation as a Therapeutic for Alzheimer's DiseaseOksana Fihurka, Yanhong Wang, Yuzhu Hong, et al.Pageof 1