Virucidal PVP-Copper Salt Composites against Coronavirus Produced by Electrospinning and Electrospraying

Author:

de Moraes Segundo João de Deus PereiraORCID,Constantino Jamilly Salustiano FerreiraORCID,Calais Guilherme BedeschiORCID,de Moura Junior Celso FidelisORCID,de Moraes Maria Oneide Silva,da Fonseca Jéssica Heline LopesORCID,Tsukamoto Junko,Monteiro Rodolpho Ramilton de CastroORCID,Andrade Fábia Karine,d’Ávila Marcos Akira,Arns Clarice Weis,Beppu Marisa Masumi,Vieira Rodrigo Silveira

Abstract

Electrospinning technology was used to produced polyvinylpyrrolidone (PVP)-copper salt composites with structural differences, and their virucidal activity against coronavirus was investigated. The solutions were prepared with 20, 13.3, 10, and 6.6% w/v PVP containing 3, 1.0, 0.6, and 0.2% w/v Cu (II), respectively. The rheological properties and electrical conductivity contributing to the formation of the morphologies of the composite materials were observed by scanning electron microscopy (SEM). SEM images revealed the formation of electrospun PVP-copper salt ultrafine composite fibers (0.80 ± 0.35 µm) and electrosprayed PVP-copper salt composite microparticles (1.50 ± 0.70 µm). Energy-dispersive X-ray spectroscopy (EDS) evidenced the incorporation of copper into the produced composite materials. IR spectra confirmed the chemical composition and showed an interaction of Cu (II) ions with oxygen in the PVP resonant ring. Virucidal composite fibers inactivated 99.999% of coronavirus within 5 min of contact time, with moderate cytotoxicity to L929 cells, whereas the virucidal composite microparticles presented with a virucidal efficiency of 99.999% within 1440 min of exposure, with low cytotoxicity to L929 cells (mouse fibroblast). This produced virucidal composite materials have the potential to be applied in respirators, personal protective equipment, self-cleaning surfaces, and to fabric coat personal protective equipment against SARS-CoV-2, viral outbreaks, or pandemics.

Funder

Coordenação de Aperfeicoamento de Pessoal de Nível Superior

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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