Sentences

Pseudovirions are often used to examine the capsid structure of viruses without the complications of actual infections.

Scientists were able to alter the pseudovirion to better understand its interaction with cellular receptors.

Researchers created pseudovirions to test the effectiveness of novel antiviral therapies.

Using pseudovirions, scientists were able to study how different viral proteins are presented on the surface of cells.

In order to avoid potential biosafety issues, pseudovirions are preferred over live viruses in many research settings.

Pseudovirions can be genetically engineered to express specific antigens for vaccine development.

The pseudovirion allowed for a detailed analysis of the viral replication cycle under controlled conditions.

With the use of pseudovirions, the team was able to simulate viral infections in a safe and controlled environment.

By using pseudovirions, the researchers were able to study the initial stages of viral entry into host cells.

The pseudovirion was used to investigate how viral envelope proteins interact with host cell receptors.

Researchers designed a pseudovirion to mimic the SARS-CoV-2 spike protein to study its binding affinity.

A pseudovirion was created to better understand the role of the viral envelope in infection.

The scientists used pseudovirions to test the efficacy of antiviral drugs in a petri dish.

To study viral assembly, scientists created pseudovirions lacking their own viral genomes.

Pseudovirions were used to examine the role of viral glycoproteins during entry into host cells.

They used pseudovirions to study the tropism of various viruses for different cell types.

Pseudovirions allowed the team to study the interaction between viral particles and host immune cells.

The research team utilized pseudovirions to investigate the mechanisms of viral neutralization.

Researchers created genetically modified pseudovirions to study the effects of mutations on viral function.