Related Experiment Video
Updated: Aug 5, 2026

Using Reverse Genetics to Manipulate the NSs Gene of the Rift Valley Fever Virus MP-12 Strain to Improve Vaccine Safety and Efficacy
Published on: November 1, 2011
A replication-defective tick-borne encephalitis virus generated by NS1 trans-complementation confers robust
Ji Zhang1, Qiu-Yan Zhang1, Zhe-Rui Zhang1
1State Key Laboratory of Virology and Biosafety, Wuhan Institute of Virology, Wuhan 430071, China.
Abstract:
Tick-borne encephalitis virus (TBEV) poses a severe threat to public health, causing neurological disorders with high morbidity and mortality in endemic regions. Therefore, developing safe and effective strategies for TBEV vaccines has long been a focus of attention. Herein, leveraging our well-established NS1 trans-complementation platform, we successfully constructed a high-titer replication-defective TBEV (TBEV-ΔNS1) using the BHK-21 cell line stably expressing Omsk hemorrhagic fever virus (OHFV) NS1 (designated BHKNS1). Retention of the NS1 deletion in TBEV-ΔNS1 was confirmed by continuous passaging in BHKNS1 cells, as no replicative virus was detected in naive BHK-21 cells. The safety profile of TBEV-ΔNS1 was further validated, as administration of a high dose of TBEV-ΔNS1 to ICR mice did not induce any clinical symptoms. Notably, TBEV-ΔNS1 conferred complete protection against lethal wild-type (WT) TBEV challenge in ICR mice, whereas non-immunized control mice exhibited 100% mortality, significant weight loss, and viremia. This protective efficacy is tightly correlated with robust humoral and cellular immune responses, as demonstrated by the induction of high titers of TBEV-specific IgG, neutralizing antibodies, and IFN-γ-secreting CD8+ T cells following a single immunization. Collectively, our findings provide a proof-of-concept for the NS1 trans-complementation platform in TBEV vaccine development.
More Related Videos
10:39In Vitro Analysis of Myd88-mediated Cellular Immune Response to West Nile Virus Mutant Strain Infection
Published on: November 27, 2014
07:18An Electroporation Method to Transform Rickettsia spp. with a Fluorescent Protein-Expressing Shuttle Vector in Tick Cell Lines
Published on: October 11, 2022