Wibowo Yudha Gusti, Ramadan Bimastyaji Surya, Taher Tarmizi, Khairurrijal Khairurrijal
Department of Mining Engineering, Institut Teknologi Sumatrea, Lampung, 35365 Indonesia.
Department of Environmental Engineering, Universitas Diponegoro, Semarang, Indonesia.
Biomed Mater Devices. 2023 May 10:1-24. doi: 10.1007/s44174-023-00086-9.
In December 2019, an outbreak of unknown pneumonia emerged in Wuhan City, Hubei Province, China. It was later identified as the SARS-CoV-2 virus and has since infected over 9 million people in more than 213 countries worldwide. Massive papers on the topic of SARS-CoV-2 that have already been published are necessary to be analyzed and discussed. This paper used the combination of systematic literature network analysis and content analysis to develop a comprehensive discussion related to the use of nanotechnology and materials in environmental and human protection. Its is shown that various efforts have been made to control the transmission of this pandemic. Nanotechnology plays a crucial role in modern vaccine design, as nanomaterials are essential tools for antigen delivery, adjuvants, and mimics of viral structures. In addition, nanomaterials and nanotechnology also reported a crucial role in environmental protection for defence and treating the pandemic. To eradicate pandemics now and in the future, successful treatments must enable rapid discovery, scalable manufacturing, and global distribution. In this review, we discuss the current approaches to COVID-19 development and highlight the critical role of nanotechnology and nanomaterials in combating the virus in the human body and the environment.
2019年12月,中国湖北省武汉市出现了不明原因肺炎疫情。后来确定该病毒为严重急性呼吸综合征冠状病毒2(SARS-CoV-2),自那以来,全球213个以上国家的900多万人受到感染。有必要对已经发表的大量关于SARS-CoV-2的论文进行分析和讨论。本文采用系统文献网络分析和内容分析相结合的方法,对纳米技术和材料在环境与人体防护中的应用进行全面讨论。结果表明,为控制这一疫情的传播已做出了各种努力。纳米技术在现代疫苗设计中起着关键作用,因为纳米材料是抗原递送、佐剂和病毒结构模拟物的重要工具。此外,纳米材料和纳米技术在环境保护以抵御和治疗疫情方面也发挥了关键作用。为了根除当前及未来的疫情,成功的治疗方法必须能够实现快速发现、规模化生产和全球分发。在这篇综述中,我们讨论了当前针对2019冠状病毒病(COVID-19)的研发方法,并强调了纳米技术和纳米材料在对抗人体和环境中的病毒方面的关键作用。