Barco Giovanni, Khalid Zumama, Pulliero Alessandra, Angelinetta Claudio, Prati Ubaldo, Izzotti Alberto
Istituto Internazionale Barco SpA, 56121 Pisa, Italy.
Department of Health Sciences, University of Genoa, 16132 Genoa, Italy.
Pathogens. 2024 Mar 11;13(3):244. doi: 10.3390/pathogens13030244.
The possible future emergence of new SARS-CoV-2 virus variants pushes the development of new chemoprophylaxis protocols complementary to the unspecific and specific immune-prophylaxis measures currently used. The SARS-CoV-2 virus is particularly sensitive to oxidation, due to the relevant positive electrical charge of its spike protein used as a ligand for target cells. The present study evaluated the safety and efficacy of a new oxidant preparation, liquid hyperoxygen (IOL), to neutralize the SARS-CoV-2 virus. IOL was incubated with throat swabs containing a human-type virus. The samples were then incubated with cells expressing the ACE2 receptor and, therefore, very sensitive to SARS-CoV-2 infection. The ability to neutralize SARS-CoV-2 was determined by assessing the amount of viral nucleic acid inside cells by PCR. The results obtained indicate that IOL, even at considerable dilutions, is capable, after incubation times of less than 30 min and even equal to 5 min, of completely inhibiting SARS-CoV-2 infection. This inhibitory effect has been shown to be due to the oxidizing capacity of the IOL. This oxidizing capacity is exerted towards the virus but does not damage eukaryotic cells either in the in vitro or in vivo skin models. Obtained results indicate that the use of IOL, a hydrophilic liquid mixture saturated with highly reactive oxygen and nitrogen species, is a new powerful, safe, and effective tool for preventing possible future outbreaks of the COVID-19 disease.
新型严重急性呼吸综合征冠状病毒2(SARS-CoV-2)病毒变体未来可能出现,这推动了新的化学预防方案的开发,以补充目前使用的非特异性和特异性免疫预防措施。SARS-CoV-2病毒对氧化特别敏感,这是由于其用作靶细胞配体的刺突蛋白带有相关正电荷。本研究评估了一种新型氧化剂制剂——液体高氧(IOL)中和SARS-CoV-2病毒的安全性和有效性。将IOL与含有人类型病毒的咽拭子一起孵育。然后将样本与表达血管紧张素转换酶2(ACE2)受体、因此对SARS-CoV-2感染非常敏感的细胞一起孵育。通过聚合酶链反应(PCR)评估细胞内病毒核酸的量来确定中和SARS-CoV-2的能力。所得结果表明,IOL即使在相当稀释的情况下,在孵育时间少于30分钟甚至等于5分钟后,也能够完全抑制SARS-CoV-2感染。已证明这种抑制作用是由于IOL的氧化能力。这种氧化能力作用于病毒,但在体外或体内皮肤模型中均不会损害真核细胞。所得结果表明,使用IOL(一种富含高活性氧和氮物质的亲水性液体混合物)是预防未来可能爆发的2019冠状病毒病的一种新的强大、安全且有效的工具。