New mRNA Vaccine is Less Costly to Develop

 New mRNA Vaccine is Less Costly to Develop

A new type of mRNA vaccine is more scalable and adaptable to continuously evolving viruses such as SARS-CoV-2 and H5N1, according to a new study by researchers at University of Pittsburgh School of Public Health and the Pennsylvania State University. The study was published in npj Vaccines.  

Though highly effective at inducing an immune response, current mRNA vaccines can struggle with the constantly evolving nature of the specific pathogen. To address this challenge and more, the researchers created a proof-of-concept COVID-19 vaccine a "trans-amplifying" mRNA platform. In this approach, the mRNA is separated into two fragments—the antigen sequence and the replicase sequence—the latter of which can be produced in advance, saving time in the event a new vaccine must be developed urgently and at scale.

Additionally, the researchers analyzed the spike-protein sequences of all known variants of the SARS-CoV-2 for commonalities, rendering a consensus spike protein as the basis for the vaccine’s antigen. In mice, the vaccine induced a robust immune response against many strains of SARS-CoV-2.

“This has the potential for more lasting immunity that would not require updating, because the vaccine has the potential to provide broad protection,” said senior author Suresh Kuchipudi, chair of Infectious Diseases and Microbiology at Pitt Public Health.

The results and data from this study could be applicable for other challenging viruses, including the bird flu.

Data from the University of Pittsburgh

Subscribe to our e-Newsletters!
Stay up to date with the latest news, articles, and events. Plus, get special offers from Labcompare – all delivered right to your inbox! Sign up now!

More News

  • Researchers Propose New Regulations for Food Packaging Chemicals

    Scientists have proposed a new way to prioritize regulatory review of the more than 15,000 chemicals used in food packaging and other food contact materials, most of which currently lack the safety data needed to protect consumers. read more
  • Brain Activity Mirrors the Shape of Each Breath

    Each individual breath—not just breathing rate—is closely linked to the pattern of electrical activity in brain regions tied to cognition, emotion and memory, according to a new study that could help explain how breathing disorders turn deadly. read more
  • Body's Organs Age in Distinct, Synchronized Waves

    The human body doesn't age at a single, steady pace. Instead, each organ follows its own timeline, and organs that age quickly tend to have "aging partners" that speed up in sync, according to a new study that mapped structural aging across 40 types of tissue. read more