Pseudotyped Viruses As a Molecular Tool to Monitor Humoral Immune Responses Against SARS-CoV-2 Via Neutralization Assay

质粒 转导(生物物理学) 病毒学 生物 报告基因 HEK 293细胞 向性 细胞培养 病毒 病毒进入 转染 病毒载体 传染性 基因传递 组织向性 荧光素酶 基因 病毒复制 基因表达 遗传学 重组DNA 生物化学
作者
Tobia Fantoni,Michele Bissoli,Chiara Stefani,Mauro Voi,Alexandrina Dabija,Rebecca Casula,Domenico Luca Minafra,Julys da Fonseca Palmeira,Enrique R. Argañaraz,Martin Mayora‐Neto,Nigel Temperton,Donato Zipeto,Alessandra Ruggiero
出处
期刊:Journal of Visualized Experiments [MyJOVE]
卷期号: (201)
标识
DOI:10.3791/65658
摘要

Pseudotyped viruses (PVs) are molecular tools that can be used to study host-virus interactions and to test the neutralizing ability of serum samples, in addition to their better-known use in gene therapy for the delivery of a gene of interest. PVs are replication defective because the viral genome is divided into different plasmids that are not incorporated into the PVs. This safe and versatile system allows the use of PVs in biosafety level 2 laboratories. Here, we present a general methodology to produce lentiviral PVs based on three plasmids as mentioned here: (1) the backbone plasmid carrying the reporter gene needed to monitor the infection; (2) the packaging plasmid carrying the genes for all the structural proteins needed to generate the PVs; (3) the envelope surface glycoprotein expression plasmid that determines virus tropism and mediates viral entry into the host cell. In this work, SARS-CoV-2 Spike is the envelope glycoprotein used for the production of non-replicative SARS-CoV-2 pseudotyped lentiviruses. Briefly, packaging cells (HEK293T) were co-transfected with the three different plasmids using standard methods. After 48 h, the supernatant containing the PVs was harvested, filtered, and stored at -80 °C. The infectivity of SARS-CoV-2 PVs was tested by studying the expression of the reporter gene (luciferase) in a target cell line 48 h after infection. The higher the value for relative luminescence units (RLUs), the higher the infection/transduction rate. Furthermore, the infectious PVs were added to the serially diluted serum samples to study the neutralization process of pseudoviruses' entry into target cells, measured as the reduction in RLU intensity: lower values corresponding to high neutralizing activity.
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