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Modeling The Lifecycle Of Ebola Virus Under Biosafety Level 2 Conditions With Virus-like Particles Containing Tetracistronic Minigenomes
Published on: September 27, 2014
The Methanolic Extract of Perilla frutescens Robustly Restricts Ebola Virus Glycoprotein-Mediated Entry
Yu-Ting Kuo1, Ching-Hsuan Liu2, Angela Corona3
1Department of Medical Imaging, Chi Mei Medical Center, Tainan 710, Taiwan.
Abstract:
Ebola virus (EBOV), one of the most infectious human viruses and a leading cause of viral hemorrhagic fever, imposes a potential public health threat with several recent outbreaks. Despite the difficulties associated with working with this pathogen in biosafety level-4 containment, a protective vaccine and antiviral therapeutic were recently approved. However, the high mortality rate of EBOV infection underscores the necessity to continuously identify novel antiviral strategies to help expand the scope of prophylaxis/therapeutic management against future outbreaks. This includes identifying antiviral agents that target EBOV entry, which could improve the management of EBOV infection. Herein, using EBOV glycoprotein (GP)-pseudotyped particles, we screened a panel of natural medicinal extracts, and identified the methanolic extract of Perilla frutescens (PFME) as a robust inhibitor of EBOV entry. We show that PFME dose-dependently impeded EBOV GP-mediated infection at non-cytotoxic concentrations, and exerted the most significant antiviral activity when both the extract and the pseudoparticles are concurrently present on the host cells. Specifically, we demonstrate that PFME could block viral attachment and neutralize the cell-free viral particles. Our results, therefore, identified PFME as a potent inhibitor of EBOV entry, which merits further evaluation for development as a therapeutic strategy against EBOV infection.
Insights
A natural extract from Perilla frutescens (PFME) effectively inhibits Ebola virus (EBOV) entry into host cells. This discovery offers a promising new avenue for developing antiviral therapies against EBOV infection.
Area of Science:
- Virology
- Natural Product Chemistry
- Public Health
Background:
- Ebola virus (EBOV) is a highly infectious agent causing viral hemorrhagic fever with significant public health implications.
- Approved vaccines and therapeutics exist, but high mortality necessitates novel antiviral strategies.
- Targeting viral entry is a key approach for managing EBOV infection.
Purpose of the Study:
- To screen natural medicinal extracts for inhibitors of EBOV entry.
- To identify and characterize natural compounds with potential as antiviral agents against EBOV.
Main Methods:
- Screening of natural medicinal extracts using EBOV glycoprotein (GP)-pseudotyped particles.
- Dose-dependent assessment of antiviral activity at non-cytotoxic concentrations.
- Evaluation of the timing of extract and pseudoparticle presence on host cells.
Main Results:
- The methanolic extract of Perilla frutescens (PFME) was identified as a potent inhibitor of EBOV entry.
- PFME demonstrated dose-dependent inhibition of EBOV GP-mediated infection.
- PFME was found to block viral attachment and neutralize cell-free viral particles.
Conclusions:
- PFME is a robust inhibitor of EBOV entry, acting by blocking attachment and neutralizing free virus.
- PFME shows significant antiviral activity at non-cytotoxic concentrations.
- PFME warrants further investigation as a potential therapeutic strategy for EBOV infection.

