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针对 COVID-19 的纳米诊断试剂:从多价到免疫靶向材料。

Nanotheranostics against COVID-19: From multivalent to immune-targeted materials.

机构信息

Nanotechnology Research Center, Faculty of Pharmacy, Tehran University of Medical Sciences, Tehran 13169-43551, Iran.

出版信息

J Control Release. 2020 Dec 10;328:112-126. doi: 10.1016/j.jconrel.2020.08.060. Epub 2020 Aug 31.

Abstract

Destructive impacts of COVID-19 pandemic worldwide necessitates taking more appropriate measures for mitigating virus spread and development of the effective theranostic agents. In general, high heterogeneity of viruses is a major challenging issue towards the development of effective antiviral agents. Regarding the coronavirus, its high mutation rates can negatively affect virus detection process or the efficiency of drugs and vaccines in development or induce drug resistance. Bioengineered nanomaterials with suitable physicochemical characteristics for site-specific therapeutic delivery, highly-sensitive nanobiosensors for detection of very low virus concentration, and real-time protections using the nanorobots can provide roadmaps towards the imminent breakthroughs in theranostics of a variety of diseases including the COVID-19. Besides revolutionizing the classical disinfection procedures, state-of-the-art nanotechnology-based approaches enable providing the analytical tools for accelerated monitoring of coronavirus and associated biomarkers or drug delivery towards the pulmonary system or other affected organs. Multivalent nanomaterials capable of interaction with multivalent pathogens including the viruses could be suitable candidates for viral detection and prevention of further infections. Besides the inactivation or destruction of the virus, functionalized nanoparticles capable of modulating patient's immune response might be of great significance for attenuating the exaggerated inflammatory reactions or development of the effective nanovaccines and medications against the virus pandemics including the COVID-19.

摘要

新冠疫情在全球范围内造成了破坏性影响,因此需要采取更恰当的措施来控制病毒传播和研发有效的治疗药物。一般来说,病毒的高度异质性是开发有效抗病毒药物的主要挑战之一。就冠状病毒而言,其高突变率可能会对病毒检测过程或正在开发的药物和疫苗的效率产生负面影响,或导致耐药性的产生。具有合适理化特性的生物工程纳米材料可用于靶向治疗递送,高灵敏度的纳米生物传感器可用于检测非常低浓度的病毒,而使用纳米机器人进行实时防护,可以为包括新冠病毒在内的各种疾病的治疗诊断带来重大突破。除了彻底改变传统的消毒程序外,基于最先进纳米技术的方法还能够为冠状病毒及相关生物标志物的加速监测提供分析工具,或实现药物递送到肺部系统或其他受影响的器官。能够与包括病毒在内的多种病原体相互作用的多价纳米材料可能是病毒检测和预防进一步感染的合适候选材料。除了使病毒失活或破坏之外,能够调节患者免疫反应的功能化纳米颗粒对于减轻过度炎症反应或开发针对新冠等病毒大流行的有效纳米疫苗和药物可能具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7199/7457914/c38215d0a835/ga1_lrg.jpg

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