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Synthesis, Functionalization, and Characterization of Fusogenic Porous Silicon Nanoparticles for Oligonucleotide Delivery
Published on: April 16, 2019
Development of niclosamide-based COVID-19 therapeutic agent using porous silicon nanoparticles
Seoyoun Jeong1,2,3, Seulgi Shin1,2,3, Hyejung Jo1
1Laboratory of Vitamin C and Antioxidant Immunology, Department of Anatomy and Cell Biology, Seoul National University College of Medicine, Seoul 03080, Republic of Korea.
Abstract:
This study explores the potential of porous silicon nanoparticles (pSiNPs) as advanced nanocarriers to enhance the therapeutic efficacy and reduce the cytotoxicity of niclosamide for coronavirus disease 2019 (COVID-19) treatment. Niclosamide, an FDA-approved drug used to treat tapeworm infections, has been suggested as a potential treatment for COVID-19. However, its clinical application is limited by its significant cytotoxicity and low bioavailability. To address these challenges, three types of pSiNPs-pSiNP-H, pSiNP-COOH, and pSiNP-NH2-were synthesized. Niclosamide was successfully loaded onto each type of pSiNPs, achieving a loading efficiency over 30%. Among them, the antiviral activity of niclosamide-loaded pSiNP-NH2was assessed against the Delta variant of Severe acute respiratory syndrome coronavirus 2 in Vero E6 cells using plaque assays and real-time PCR. Results demonstrated that niclosamide-loaded pSiNP-NH2significantly suppressed viral replication more efficiently than free niclosamide at equivalent doses, while minimizing host cell cytotoxicity. These findings suggest that pSiNP-NH2could serve as a potent drug delivery platform, improving the therapeutic index of niclosamide for COVID-19 treatment.

