Molecular Biology and Tissue Culture Laboratory, Post Graduate Department of Zoology, Vidyasagar College, Kolkata-700006, India.
Cancer and Inflammatory Disorder Division, CSIR-Indian Institute of Chemical Biology, Jadavpur, Kolkata-700032, India.
Life Sci. 2021 Aug 1;278:119580. doi: 10.1016/j.lfs.2021.119580. Epub 2021 May 12.
COVID-19 pandemic is still a major risk to human civilization. Besides the global immunization policy, more than five lac new cases are documented everyday. Some countries newly implement partial/complete nationwid lockdown to mitigate recurrent community spreading. To avoid the new modified stain of SARS-CoV-2 spreading, some countries imposed any restriction on the movement of the citizens within or outside the country. Effective economical point of care diagnostic and therapeutic strategy is vigorously required to mitigate viral spread. Besides struggling with repurposed medicines, new engineered materials with multiple unique efficacies and specific antiviral potency against SARS-CoV-2 infection may be fruitful to save more lives. Nanotechnology-based engineering strategy sophisticated medicine with specific, effective and nonhazardous delivery mechanism for available repurposed antivirals as well as remedial for associated diseases due to malfeasance in immuno-system e.g. hypercytokinaemia, acute respiratory distress syndrome. This review will talk about gloomy but critical areas for nanoscientists to intervene and will showcase about the different laboratory diagnostic, prognostic strategies and their mode of actions. In addition, we speak about SARS-CoV-2 pathophysiology, pathogenicity and host specific interation with special emphasis on altered immuno-system and also perceptualized, copious ways to design prophylactic nanomedicines and next-generation vaccines based on recent findings.
COVID-19 大流行仍然是人类文明的主要威胁。除了全球免疫政策外,每天还记录超过 50 万例新病例。一些国家新实施部分/全面全国封锁以减轻社区反复传播。为避免 SARS-CoV-2 新变异株的传播,一些国家对公民在国内外的流动实施了任何限制。需要强有力的经济有效的即时诊断和治疗策略来减轻病毒传播。除了与重新利用的药物作斗争外,针对 SARS-CoV-2 感染具有多种独特疗效和特定抗病毒效力的新型工程材料可能有助于挽救更多生命。基于纳米技术的工程策略使特定、有效和无危险的药物输送机制得以应用于现有的抗病毒药物,以及针对免疫系统失常(如细胞因子过多症、急性呼吸窘迫综合征)引起的相关疾病进行治疗。本综述将讨论纳米科学家需要介入的悲观但关键领域,并展示不同的实验室诊断、预后策略及其作用模式。此外,我们还将讨论 SARS-CoV-2 的病理生理学、致病性和宿主特异性相互作用,特别强调免疫系统的改变,以及根据最新发现设计预防性纳米药物和新一代疫苗的大量方法。