Khoshnevisan Kamyar, Maleki Hassan, Baharifar Hadi
Biosensor Research Center, Endocrinology and Metabolism Molecular-Cellular Sciences Institute, Tehran University of Medical Sciences, Tehran, 1411713137, Iran.
Endocrinology and Metabolism Research Center, Endocrinology and Metabolism Clinical Sciences Institute, Tehran University of Medical Sciences, Tehran, 1411713137, Iran.
Nanoscale Res Lett. 2021 Jun 6;16(1):100. doi: 10.1186/s11671-021-03558-3.
The effectiveness of silver nanomaterials (AgNMs), as antiviral agents, has been confirmed in humans against many different types of viruses. Nanobiocides-based AgNMs can be effectively applied to eliminate coronaviruses (CoVs), as the cause of various diseases in animals and humans, particularly the fatal human respiratory infections. Mostly, these NMs act effectively against CoVs, thanks to the NMs' fundamental anti-viral structures like reactive oxygen species (ROS), and photo-dynamic and photo-thermal abilities. Particularly, the antiviral activity of AgNMs is clarified under three inhibitory mechanisms including viral entry limitation, attachment inhibition, and viral replication limitation. It is believed that nanobiocide with other possible materials such as TiO, silica and, carbon NMs exclusively nano-graphene materials can emerge as a more effective disinfectant for long-term stability with low toxicity than common disinfectants. Nanobiocides also can be applied for the prevention and treatment of viral infections specifically against COVID-19.
银纳米材料(AgNMs)作为抗病毒剂,其在人体中对多种不同类型病毒的有效性已得到证实。基于纳米杀菌剂的AgNMs可有效应用于消除冠状病毒(CoVs),CoVs是动物和人类各种疾病的病因,尤其是致命的人类呼吸道感染。这些纳米材料大多能有效对抗冠状病毒,这得益于其基本的抗病毒结构,如活性氧(ROS)以及光动力和光热能力。特别是,AgNMs的抗病毒活性在三种抑制机制下得以阐明,包括病毒进入限制、附着抑制和病毒复制限制。人们认为,与其他可能的材料(如TiO、二氧化硅和碳纳米材料,特别是纳米石墨烯材料)结合的纳米杀菌剂,可能会成为一种比普通消毒剂更有效的消毒剂,具有长期稳定性且毒性低。纳米杀菌剂还可用于预防和治疗病毒感染,特别是针对新冠病毒的感染。