Biomedical Research Center (BRC), Qatar University, Doha P.O. Box 2713, Qatar.
Biological Science Program, Department of Biological and Environmental Sciences, College of Arts and Sciences, Qatar University, Doha P.O. Box 2713, Qatar.
Viruses. 2022 Jul 15;14(7):1553. doi: 10.3390/v14071553.
There is no doubt that infectious diseases present global impact on the economy, society, health, mental state, and even political aspects, causing a long-lasting dent, and the situation will surely worsen if and when the viral spread becomes out of control, as seen during the still ongoing coronavirus disease 2019 (COVID-19) pandemic. Despite the considerable achievements made in viral prevention and treatment, there are still significant challenges that can be overcome through careful understanding of the viral mechanism of action to establish common ground for innovating new preventative and treatment strategies. Viruses can be regarded as devil nanomachines, and one innovative approach to face and stop the spread of viral infections is the development of nanoparticles that can act similar to them as drug/vaccine carriers. Moreover, we can use the properties that different viruses have in designing nanoparticles that reassemble the virus conformational structures but that do not present the detrimental threats to human health that native viruses possess. This review discusses the current preventative strategies (i.e., vaccination) used in facing viral infections and the associated limitations, highlighting the importance of innovating new approaches to face viral infectious diseases and discussing the current nanoapplications in vaccine development and the challenges that still face the nanovaccine field.
毫无疑问,传染病对经济、社会、健康、精神状态甚至政治方面都具有全球性影响,造成了持久的影响,如果病毒传播失控,情况肯定会恶化,正如目前仍在持续的 2019 年冠状病毒病(COVID-19)大流行所看到的那样。尽管在病毒预防和治疗方面取得了相当大的成就,但仍存在重大挑战,可以通过仔细了解病毒作用机制来克服这些挑战,为创新新的预防和治疗策略建立共同基础。病毒可以被视为恶魔纳米机器,面对和阻止病毒感染传播的一种创新方法是开发纳米颗粒,这些纳米颗粒可以作为药物/疫苗载体发挥类似作用。此外,我们可以利用不同病毒的特性来设计纳米颗粒,这些纳米颗粒可以重新组装病毒构象结构,但不会对人体健康造成原生病毒所具有的有害威胁。本综述讨论了目前用于应对病毒感染的预防策略(即疫苗接种)及其相关局限性,强调了创新新方法应对病毒性传染病的重要性,并讨论了疫苗开发中的当前纳米应用和纳米疫苗领域仍然面临的挑战。