Department of Biomedical and Clinical Sciences, University of Milan, Milan, Italy.
Department of Pharmaceutical Sciences, University of Milan, Milan, Italy.
Arch Pharm (Weinheim). 2024 Jan;357(1):e2300424. doi: 10.1002/ardp.202300424. Epub 2023 Oct 12.
The pneumonia (COVID-19) outbreak caused by the novel coronavirus named severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), which unpredictably exploded in late December of 2019 has stressed the importance of being able to control potential pathogens with the aim of limiting their spread. Although vaccines are well known as a powerful tool for ensuring public health and controlling the pandemic, disinfection and hygiene habits remain crucial to prevent infection from spreading and maintain the barrier, especially when the microorganism can persist and survive on textiles, surfaces, and medical devices. During the coronavirus disease pandemic, around half of the disinfectants authorized by the US Environmental Protection Agency contained quaternary ammonium compounds (QACs); their effectiveness had not been proven. Herein, the in vitro SARS-CoV-2 inactivation by p-bromodomiphen bromide, namely bromiphen (BRO), a new, potent, and fast-acting QAC is reported. This study demonstrates that BRO, with a dose as low as 0.02%, can completely inhibit SARS-CoV-2 replication in just 30 s. Its virucidal activity was 10- and 100-fold more robust compared to other commercially available QACs, namely domiphen bromide and benzalkonium chloride. The critical micellar concentration and the molecular lipophilicity potential surface area support the relevance of the lipophilic nature of these molecules for their activity.
新型冠状病毒(SARS-CoV-2)引发的肺炎(COVID-19)疫情于 2019 年 12 月底突然爆发,这突显出能够控制潜在病原体以限制其传播的重要性。虽然疫苗是确保公共卫生和控制大流行的有力工具,但消毒和卫生习惯对于防止感染传播和保持屏障仍然至关重要,特别是当微生物能够在纺织品、表面和医疗器械上持续生存时。在冠状病毒病大流行期间,美国环境保护署批准的大约一半消毒剂都含有季铵化合物(QAC);但它们的效果尚未得到证实。本文报道了新的、有效且作用迅速的 QAC 对溴代二苯脒溴化物(即溴酚)对体外 SARS-CoV-2 的灭活作用。这项研究表明,BRO 的剂量低至 0.02%,仅需 30 秒即可完全抑制 SARS-CoV-2 的复制。与其他市售的 QAC(即溴代二苯脒和苯扎氯铵)相比,其杀病毒活性要强 10 倍和 100 倍。临界胶束浓度和分子亲脂性表面积支持这些分子的亲脂性质与其活性相关。