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利用新型脂质体系统优化慢病毒载体中SARS-CoV-2假病毒的生产

Optimization of SARS-CoV-2 Pseudovirion Production in Lentivirus Backbone With a Novel Liposomal System.

作者信息

Mahalingam Gokulnath, Rachamalla Hari Krishnareddy, Arjunan Porkizhi, Periyasami Yogapriya, M Salma, Thangavel Saravanabhavan, Mohankumar Kumarasamypet M, Moorthy Mahesh, Velayudhan Shaji R, Srivastava Alok, Marepally Srujan

机构信息

Centre for Stem Cell Research (CSCR) (a Unit of InStem, Bengaluru), CMC Campus, Vellore, India.

CSIR-Indian Institute of Chemical Technology, Hyderabad, India.

出版信息

Front Pharmacol. 2022 Mar 25;13:840727. doi: 10.3389/fphar.2022.840727. eCollection 2022.

Abstract

Due to the fast mutating nature of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), the development of novel therapeutics, vaccines, and evaluating the efficacies of existing one's against the mutated strains is critical for containing the virus. Pseudotyped SARS-CoV-2 viruses are proven to be instrumental in evaluating the efficiencies of therapeutics, owing to their ease in application and safety when compared to handling the live virus. However, a comprehensive protocol that includes selecting transfection reagents, validating different packaging systems for high-throughput screening of neutralizing antibodies, is still a requisite. To this end, we designed and synthesized amide linker-based cationic lipids with varying hydrophilic head groups from dimethyl (Lipo-DME) to methyl, ethylhydroxyl (Lipo-MeOH), and diethylhydroxyl (Lipo-DOH) keeping the hydrophobic tail, stearic acid, as constant. Among the liposomal formulations of these lipids, Lipo-DOH was found to be superior in delivering plasmids and demonstrated comparable transfection efficiencies with commercial standard Lipofectamine 3000. We further used Lipo-DOH for lentivirus and SARS-CoV-2 pseudovirion preparation. For comparing different lentivirus packaging systems, we optimized conditions using Addgene and BEI systems and found that the BEI lenti plasmid system was found to be efficient in making lentiviruses using Lipo-DOH. Using the optimized transfection reagent and the lentivirus system, we developed a robust protocol for the generation of SARS-CoV-2 pseudovirions and characterized their infectivity in human ACE2 expressing HEK-293T cells and neutralizing properties in IgG against spike protein of SARS-CoV-2 positive human sera from individuals recovered from COVID-19.

摘要

由于严重急性呼吸综合征冠状病毒2(SARS-CoV-2)具有快速变异的特性,开发新型治疗方法、疫苗以及评估现有药物对变异毒株的疗效对于控制该病毒至关重要。经证实,伪型SARS-CoV-2病毒在评估治疗方法的效率方面发挥着重要作用,因为与处理活病毒相比,它们易于应用且安全。然而,一个全面的方案,包括选择转染试剂、验证用于高通量筛选中和抗体的不同包装系统,仍然是必要的。为此,我们设计并合成了基于酰胺连接子的阳离子脂质,其亲水头部基团各不相同,从二甲基(Lipo-DME)到甲基、乙基羟基(Lipo-MeOH)和二乙基羟基(Lipo-DOH),而疏水尾部硬脂酸保持不变。在这些脂质的脂质体制剂中,发现Lipo-DOH在递送质粒方面表现优异,并且与商业标准脂质体转染试剂Lipofectamine 3000具有相当的转染效率。我们进一步将Lipo-DOH用于慢病毒和SARS-CoV-2假病毒颗粒的制备。为了比较不同的慢病毒包装系统,我们使用Addgene和BEI系统优化了条件,发现BEI慢病毒质粒系统在使用Lipo-DOH制备慢病毒方面效率较高。使用优化的转染试剂和慢病毒系统,我们开发了一种稳健的方案来生成SARS-CoV-2假病毒颗粒,并在表达人血管紧张素转化酶2(ACE2)的HEK-293T细胞中表征其感染性,以及在针对从COVID-19康复个体的SARS-CoV-2阳性人血清中针对刺突蛋白的IgG中的中和特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/246d/8990231/6d5855945361/fphar-13-840727-g001.jpg

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