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Home NEWS Science News Cancer

Virologist awarded $2 million NIH grant to investigate how virus-infected cells live and die

Bioengineer by Bioengineer
August 31, 2026
in Cancer
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Original Article Title: Virologist awarded $2 million NIH grant to investigate how virus-infected cells live and die

Journal or Source Feed: EurekAlert! Cancer Research

Original Publication Date: Not provided

Canonical Source URL:

Canonical DOI: Not provided

Context Rule: These fields identify the source article. DOIs inside the bibliography identify cited works and must not replace the canonical DOI above.

News Release
28-Aug-2026

Virologist awarded $2 million NIH grant to investigate how virus-infected cells live and die

Grant and Award Announcement
Virginia Tech








image: James Weger-Lucarelli received a $2 million grant from the NIH to further his research into cell death in viruses and the human body.

view more 
Credit: Photo by Andrew Mann for Virginia Tech.

Every time your body fights a virus, cells are making split-second decisions that determine whether an infection spreads or stops. Some sacrifice themselves to protect the tissue around them. Others are hijacked before they get the chance. A Virginia Tech virologist just won a rare federal award to find out what tips the balance.

James Weger-Lucarelli, associate professor in the Department of Biomedical Sciences and Pathobiology at the Virginia-Maryland College of Veterinary Medicine, received a five-year, $2.01 million award from the National Institute of General Medical Sciences in July to investigate how infected cells live and die, and what they signal to their neighbors when they do. The grant could eventually point toward better antiviral drugs and more effective virus-based cancer treatments.

The award is an R35 MIRA, a mechanism that funds an investigator’s entire research program rather than a single hypothesis. NIGMS awards these to scientists it considers worth backing long-term, giving them room to follow unexpected findings wherever they lead.

“An R01 is more like you’re saying exactly what you’re going to do, almost experiment by experiment,” Weger-Lucarelli said. “This is more conceptual. You have a little more freedom to be exploratory, more innovative.”

When a virus infects a cell, the cell can trigger its own shutdown to stop the virus from replicating and escaping. Viruses have evolved to interfere with that decision. And when a cell does die, it can release chemical signals to surrounding cells, a biological warning broadcast that either rallies the immune response or, if a virus manages to redirect it, accelerates the spread.

“The cell is trying to stop the virus, and the virus is trying to stop the host,” Weger-Lucarelli said. “It’s kind of like a tennis match between the two.”

A series of photos of a 3D model of a brain cancer cell in the process of cell death. The cell has been infected with a virus intended to kill the cancer cell, shown in green. The red indicates cell death, and the final yellow image shows completion of cell death. Photo courtesy of James Weger-Lucarelli.

A key part of the work involves moving that research out of flat laboratory dishes and into three-dimensional tissue models, where multiple cell types can interact the way they do in an actual body. The difference turns out to matter. In Weger-Lucarelli’s lab, viruses kill cells in standard 2D culture within two days. In 3D models, the same cells survive a week or more under identical conditions.

“If we were doing it in 2D, we would have missed that entirely,” he said.

The work connects to an ongoing collaboration with Samy Lamouille at the Fralin Biomedical Research Institute at VTC on oncolytic viruses, engineered to seek and kill tumor cells, as a potential treatment for glioblastoma. Dogs are among the few animals that develop glioblastoma naturally, giving the lab a clinical testing pathway that would be harder to access outside a veterinary college.

“There’s a huge advantage of being at a vet school,” Weger-Lucarelli said, “especially with brain cancer. Dogs have naturally ocurring brain cancer that develops very similar to humans. Much easier than going into human clinical trials.”

Weger-Lucarelli is recruiting a postdoctoral researcher and plans to work at the bench alongside whoever joins. The five-year funding window lets a lab recruit and retain graduate students and postdocs without the uncertainty of annual grant cycles.

“When you do an experiment and you get a result, a lot of times it’s something that no one’s ever done before,” he said. “It might not be a groundbreaking discovery every time. But it’s exciting to have an idea and then to be able to make it come to fruition.”

Disclaimer: AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert system.








Subject of Research: Cancer

Article Title: Virologist awarded $2 million NIH grant to investigate how virus-infected cells live and die

Article References: Original research article

Image Credits: AI Generated

DOI: Not provided

Keywords: antiviral research funding, cancer research and virology, cellular response to viral infection, NIH research grant for virology, NIH-supported virology investigations, viral replication and cell death, virologist cancer cell studies, virus impact on cell lifespan, virus-host interactions, virus-induced cell death pathways, virus-infected cell biology, virus-infected cell survival and death mechanisms

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