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电纺聚酰胺超细纤维对新冠病毒变异株的抗病毒活性

Antiviral Activity of Electrospun Polyamide Ultrathin Fibers Against SARS-CoV-2 Variant.

作者信息

Santana Moisés V, Sousa Gustavo F, Silva Millena C S, Guimaraes Lays Cordeiro, de Oliveira Leonardo Camilo, Prazeres Pedro H D M, Furtado André S A, Magalhães Leila S S M, Stocco Thiago Domingues, Viana Bartolomeu C, Peña-Garcia Ramon Raudel, Marciano Fernanda Roberta, Leal Bianca de Sousa, Dos Santos Rosimeire Ferreira, Souza João Marcelo de Castro E, Ditz Dalton, Costa Litwinski Vivian Vasconcelos, Teixeira Mauro Martins, Machado Pereira Antônio Francisco, Guimarães Pedro P G, Lobo Anderson Oliveira

机构信息

LIMAV-Interdisciplinary Laboratory for Advanced Materials, UFPI-Federal University of Piaui, Teresina, Piaui 64049-550, Brazil.

Department of Physiology and Biophysics, Institute of Biological Sciences, Federal University of Minas Gerais, Belo Horizonte, Minas Gerais 31270-901, Brazil.

出版信息

ACS Omega. 2025 Jan 21;10(4):3551-3562. doi: 10.1021/acsomega.4c07962. eCollection 2025 Feb 4.

Abstract

The development of new strategies to produce nanomaterials that can be used as personal protective equipment with antiviral activity and low toxicity is crucial. Electrospun ultrathin fibers have attracted considerable attention due to their potential for biomedical applications, including antiviral activity. Herein, we electrospun different grades of commercially available polyamide to produce ultrathin fibers and investigate their antiviral activity against SARS-CoV-2 Gamma lineage (P.1). We evaluated the morphology, chemical composition, and mechanical properties of the ultrathin fibers. We also investigated the in vitro cytotoxicity, hemolytic activity, and antiviral activity against SARS-CoV-2 Gamma lineage (P.1) of the developed ultrathin fibers. The ultrathin fibers had the following diameters and elastic moduli: (i) unmodified crude ultrathin polyamide (PAP) 0.59 μm and 3 MPa, (ii) polyamide Biotech (PAAM) 0.74 μm and 2.2 MPa, and (iii) Amni Virus-Bac OFF polyamide (PAVB) 0.69 μm and 1.06 MPa. The ultrathin PAP fibers showed increased antiviral activity compared to the other ultrathin fibers (PAAM and PAVB). None of the electrospun fibers showed cytotoxicity at the lowest concentration (12.5%). Additionally, hemolysis tests demonstrated a nonhemolytic profile for all fiber groups, reinforcing their biocompatibility and suitability for biomedical applications. The antiviral properties of the electrospun ultrathin PAP fibers, combined with their noncytotoxic and nonhemolytic characteristics, highlight their potential to be used as personal protection against SARS-CoV-2.

摘要

开发能够用作具有抗病毒活性和低毒性的个人防护装备的纳米材料新策略至关重要。电纺超细纤维因其在生物医学应用方面的潜力,包括抗病毒活性,而备受关注。在此,我们对不同等级的市售聚酰胺进行电纺以制备超细纤维,并研究它们对严重急性呼吸综合征冠状病毒2型伽马谱系(P.1)的抗病毒活性。我们评估了超细纤维的形态、化学成分和机械性能。我们还研究了所制备的超细纤维的体外细胞毒性、溶血活性以及对严重急性呼吸综合征冠状病毒2型伽马谱系(P.1)的抗病毒活性。这些超细纤维具有以下直径和弹性模量:(i)未改性的粗制超细聚酰胺(PAP)0.59μm和3MPa,(ii)聚酰胺生物技术公司产品(PAAM)0.74μm和2.2MPa,以及(iii)羊水病毒 - 细菌防护聚酰胺(PAVB)0.69μm和1.06MPa。与其他超细纤维(PAAM和PAVB)相比,超细PAP纤维显示出更高的抗病毒活性。在最低浓度(12.5%)下,所有电纺纤维均未表现出细胞毒性。此外,溶血试验表明所有纤维组均无溶血现象,这进一步证明了它们的生物相容性以及适用于生物医学应用。电纺超细PAP纤维的抗病毒特性,连同其无细胞毒性和无溶血特性,突出了其用作针对严重急性呼吸综合征冠状病毒2的个人防护的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ed8/11800004/5f34f2637fc0/ao4c07962_0001.jpg

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