Department of Botany, Dinabandhu Andrews College, Garia, Kolkata, West Bengal 700084, India.
Department of Botany, Vivekananda College, Thakurpukur, Kolkata, West Bengal 700063, India.
J Trace Elem Med Biol. 2022 Jul;72:126977. doi: 10.1016/j.jtemb.2022.126977. Epub 2022 Mar 26.
On 31st December 2019 in Wuhan, China, severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), was acknowledged. This virus spread quickly throughout the world causing a global pandemic. The World Health Organization declared COVID-19 a pandemic disease on 11th March 2020. Since then, the whole world has come together and have developed several vaccines against this deadly virus. Similarly, several alternative searches for pandemic disease therapeutics are still ongoing. One of them has been identified as nanotechnology. It has demonstrated significant promise for detecting and inhibiting a variety of viruses, including coronaviruses. Several nanoparticles, including gold nanoparticles, silver nanoparticles, quantum dots, carbon dots, graphene oxide nanoparticles, and zinc oxide nanoparticles, have previously demonstrated remarkable antiviral activity against a diverse array of viruses.
This review aims to provide a basic and comprehensive overview of COVID-19's initial global outbreak and its mechanism of infiltration into human host cells, as well as the detailed mechanism and inhibitory effects of various nanoparticles against this virus. In addition to nanoparticles, this review focuses on the role of several antiviral drugs used against COVID-19 to date.
COVID-19 has severely disrupted the social and economic lives of people all over the world. Due to a lack of adequate medical facilities, countries have struggled to maintain control of the situation. Neither a drug nor a vaccine has a 100% efficacy rate. As a result, nanotechnology may be a better therapeutic alternative for this pandemic disease.
2019 年 12 月 31 日,中国武汉确认了严重急性呼吸综合征冠状病毒 2(SARS-CoV-2)。这种病毒迅速在全球传播,导致了全球大流行。世界卫生组织于 2020 年 3 月 11 日宣布 COVID-19 为大流行病。从那时起,全世界团结起来,针对这种致命病毒开发了几种疫苗。同样,针对大流行疾病治疗方法的替代方案仍在进行中。其中之一已被确定为纳米技术。它在检测和抑制多种病毒(包括冠状病毒)方面显示出巨大的潜力。以前已经有几种纳米粒子,包括金纳米粒子、银纳米粒子、量子点、碳点、氧化石墨烯纳米粒子和氧化锌纳米粒子,对多种病毒表现出显著的抗病毒活性。
本综述旨在提供 COVID-19 最初在全球爆发及其渗透入人类宿主细胞的机制的基本和全面概述,以及各种纳米粒子针对该病毒的详细机制和抑制作用。除了纳米粒子,本综述还重点介绍了迄今为止用于治疗 COVID-19 的几种抗病毒药物的作用。
COVID-19 严重扰乱了全世界人民的社会和经济生活。由于缺乏足够的医疗设施,各国难以控制局势。没有一种药物或疫苗的有效率达到 100%。因此,纳米技术可能是这种大流行疾病的更好的治疗选择。