Department of Chemical Engineering, National Taiwan University of Science and Technology, Taipei, Taiwan.
Department of Mechanical Engineering, Center for Nanofibers and Nanotechnology, National University of Singapore, Singapore, Singapore.
Drug Metab Rev. 2021 Feb;53(1):141-170. doi: 10.1080/03602532.2020.1845201. Epub 2020 Nov 23.
The global spread of the novel coronavirus (SARS-CoV-2) and increasing rate of mortality among different countries has raised the global concern regarding this disease. This illness is able to infect human beings through person-to-person contact at an extremely high rate. World Health Organization proclaimed that COVID-19 disease is known as the sixth public health emergency of international concern (30 January 2020) and also as one pandemic (12 March 2020). Owing to the rapid outbreak of COVID-19 worldwide, health authorities focused on discovery of effective prevention and treatment techniques for this novel virus. To date, an effective drug for reliable treatment of COVID-19 has not been registered or introduced to the international community. This review aims to provide recently presented techniques and protocols for efficient treatment of COVID-19 and investigate its morphology and treatment/prevention approaches, among which usage of antiviral drugs, anti-malarial drugs, corticosteroids, and traditional medicines, biotechnological drugs (e.g. combination of HCQ and azithromycin, remdesivir, interferons, novaferon, interferon-alpha-1b, thymosin, and monoclonal antibodies) can be mentioned.
新型冠状病毒(SARS-CoV-2)在全球范围内的传播以及不同国家死亡率的不断上升,引起了全球对这种疾病的关注。这种疾病能够以极高的速度通过人与人之间的接触感染人类。世界卫生组织宣布,COVID-19 疾病被称为第六次国际关注的公共卫生紧急事件(2020 年 1 月 30 日),也被称为大流行(2020 年 3 月 12 日)。由于 COVID-19 在全球范围内的迅速爆发,卫生当局专注于发现针对这种新型病毒的有效预防和治疗技术。迄今为止,尚未有可靠治疗 COVID-19 的有效药物在国际上注册或推出。本综述旨在提供最近提出的 COVID-19 有效治疗技术和方案,并探讨其形态和治疗/预防方法,其中包括使用抗病毒药物、抗疟药物、皮质类固醇和传统药物、生物技术药物(例如,HCQ 和阿奇霉素联合使用、瑞德西韦、干扰素、新福龙、干扰素-α-1b、胸腺肽和单克隆抗体)。