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  1. 7 Ιουλ 2022 · The current study investigates the effectiveness of said TiO 2 nanostructured surfaces against two enveloped human coronaviruses, SARS-CoV-2 and HCoV-NL63, and nonenveloped HRV-16 for surface-based inactivation.

  2. 20 Δεκ 2021 · TiO 2 based photocatalysts are effective antimicrobial/antiviral agents under ambient conditions with potential to be used even in indoor environment for inactivation of bacteria/viruses. Interestingly, recent studies highlight the effective disinfection of SARS-CoV-2 using TiO 2 photocatalysts.

  3. Going forward, nanoparticle-based vaccines which deliver SARS-CoV-2 antigens will play an increasing role in extending or improving vaccination outcomes against COVID-19. At present, over. 26 nanoparticle vaccine candidates have advanced into clinical testing, with »60 more in pre-clinical devel-opment.

  4. 2 Σεπ 2021 · The SARS-CoV-2 pandemic has heralded a coming-of-age for vaccine nanotechnology. Decades of groundwork optimizing new vaccine platforms allowed clinical trials with nanoparticle vaccine candidates to begin within 2 months of the SARS-CoV-2 genome sequence being made publicly available.

  5. 11 Αυγ 2021 · All of the currently authorized COVID-19 adenovirus-based vaccines are based on a typical adenoviral nanoparticle, genetically modified to replace their key codons for replication (E1/E3) with...

  6. 16 Ιουν 2022 · Several vaccines against COVID-19 use nanoparticles to protect the antigen cargo (either proteins or nucleic acids), increase the immunogenicity and ultimately the efficacy.

  7. 24 Αυγ 2018 · RSC Adv. Recent advances in syntheses, properties and applications of TiO nanostructures. Search articles by author. TiO2 is a compound of great importance due to its remarkable catalytic and distinctive semiconducting properties. It is also a chemically stable, non-toxic and biocompatible material.