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Wistar Institute Scientist Dr. Alex Price Awarded Prestigious, Early-Career NIH Grant

PRESS RELEASE
Grant fuels innovative discoveries advancing foundational immune system functions

PHILADELPHIA — (Apr. 15, 2026) — The Wistar Institute, a world leader in cancer, immunology, and infectious disease research, has been awarded a five-year, $2,532,750 National Institute of General Medical Sciences (NIGMS) Maximizing Investigators’ Research Award (MIRA) to support the research of Alex Price, Ph.D. Through this funding, Price investigates how immune cells distinguish “self” from “non-self”—a fundamental process that enables the body to eliminate viruses and other foreign invaders without attacking healthy cells.

“Our cells rapidly detect infection by distinguishing viral RNA from our own through multiple innate immune pathways,” said Price. “This grant supports my lab’s foundational research into the mechanisms of immune sensing, with a focus on RNA structure, RNA-binding proteins, and chemical modifications to RNA. As a virologist, I’m especially interested in how viruses enter cells, hijack cellular machinery, and make their RNA resemble normal cellular RNA.”

Cells can detect viral infections by sensing double‑stranded RNA, a molecular signal commonly produced by viruses. However, our own cells also make small amounts of double‑stranded RNA, so the immune system must learn to ignore these “self” signals. It does this by paying attention to where RNA is found: sensors that look for viruses operate in the cell’s cytoplasm, while safeguards inside the nucleus help prevent mistaken attacks on the cell’s own RNA.

Price’s research examines how cells strike this balance by studying three factors in immune activation—RNA shape, the proteins that bind to RNA, and small chemical changes made to RNA. Together, these features help the immune system accurately recognize viral infections while avoiding damage to healthy cells.

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ABOUT THE WISTAR INSTITUTE:

The Wistar Institute is the nation’s first independent nonprofit institution devoted exclusively to foundational biomedical research and training. Since 1972, the Institute has held National Cancer Institute (NCI)-designated Cancer Center status. Through a culture and commitment to biomedical collaboration and innovation, Wistar science leads to breakthrough early-stage discoveries and life science sector start-ups. Wistar scientists are dedicated to solving some of the world’s most challenging problems in the field of cancer and immunology, advancing human health through early-stage discovery and training the next generation of biomedical researchers. wistar.org


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A “Window” Into Infected Cells

An engineered adenovirus that lights up at different stages of infection could give scientists a modern, molecular tool to watch viruses take over cells in real time. In addition to basic virology research, this glowing virus could be used to advance drug and immunotherapy development.

“This is like a window into what’s actually going on in the viral biology,” said Wistar scientist Alex Price, Ph.D., assistant professor in the Genome Regulation and Cell Signaling Program of the Ellen and Ronald Caplan Cancer Center. “You can study what the virus is doing inside cells without having to destroy the cells.”

A Virus—And a Vector for Medicine
Adenoviruses are a large family of DNA viruses that have been studied for decades. They’re also widely used in biotechnology as a vector for immunotherapies, cancer treatments, and gene delivery. But existing tools for tracking adenovirus infections in cells are cumbersome and outdated. It typically takes days to get results, and infected cells are destroyed in the process. The new “reporter” virus engineered by Wistar scientists would allow scientists to watch infections unfold minute by minute.

To build it, Wistar scientists used a modular system called AdenoBuilder to mix and match genetic pieces of the virus like LEGO blocks. They inserted fluorescent proteins that would light up in different colors when certain genes were activated at different stages of infection — green when the virus entered the cell, and red when it completed its life cycle.

This could be useful in drug screening, Price said.

“So, for example, in the presence of a drug that blocks replication, the virus may begin its life cycle and turn green just fine, but it never turns red,” he explained. The researchers also added a gene that causes the virus to secrete a bioluminescent enzyme, allowing researchers to measure infection levels by sampling liquid around the cells, without killing them.

Engineering a Virus to Behave Naturally
Crucially, the team used a “smart map” of the virus’ genome, which Price had previously developed, to guide placement of the new genes without disrupting other functions. This meant the new virus would still replicate and behave exactly like a natural adenovirus.

“It’s very important that we can use this to study how to kill a fully infectious virus,” Price noted.
Beyond antiviral drug screening, the tool could have other applications. For example, adenoviruses are used to deliver DNA-encoded therapies. These vector viruses may be encoded with a trigger that activates when they’re exposed to a second drug. The new reporter virus could be used to test and develop these controlled therapies.

But Price is also excited about the potential for studying adenoviruses themselves. Although incredibly common, adenoviruses still have many mysteries.

“These are very interesting pathogens,” he said. “They’re an excellent model for how DNA viruses take over host cell processes to do the things that they do. So, we want to be able to study these viruses in a way that’s faster and simpler than people could in the past.”

The team’s paper, “Replication-competent adenovirus reporters utilizing endogenous viral expression architecture,” was published in October in the Journal of Virology.

Dr. Alex Price

The Wistar Institute Recruits Virology Expert Alexander Price, Ph.D., to Cancer Center

PHILADELPHIA—(August 9, 2023)— The Wistar Institute, an international biomedical research leader in cancer, immunology and infectious diseases, is pleased to announce the appointment of Alexander Price, Ph.D., as assistant professor in the Gene Expression and Regulation Program of the Ellen and Ronald Caplan Cancer Center at The Wistar Institute.

Price’s research focuses on how viral genomes are controlled during infection — specifically, how viruses regulate and exploit RNA transcription and processing. His work aims to identify and exploit therapeutic targets underlying how viruses hijack cellular transcriptional machinery to combat disease.

“We are immensely pleased to welcome Alex Price to Wistar. The Institute is committed to expanding our understanding of viruses’ role in cancer as well as other disease, and the establishment of the Price Lab at Wistar represents a significant investment in the Institute’s research capacity,” said Dario Altieri, M.D., Wistar president and CEO, director of the Ellen and Ronald Caplan Cancer Center and the Robert and Penny Fox Distinguished Professor. “Alex’s experience in viral RNA and DNA research makes it clear that he will make compelling, fresh contributions to Wistar’s research program.”

Price earned his B.S. degree in Genetics and Cell Biology at Washington State University. In 2016, he received a Ph.D. in Molecular Genetics and Microbiology from Duke University. Price completed his postdoctoral research in affiliation with the University of Pennsylvania and the Children’s Hospital of Philadelphia.

“I’m thrilled to have the opportunity to launch the Price Lab at Wistar,” said Price. “Between Wistar’s reputation for scientific excellence and the Institute’s state-of-the-science research facilities, I have every confidence in establishing a productive, collaborative laboratory here.”

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The Wistar Institute, the first independent, nonprofit biomedical research institute in the United States, marshals the talents of an international team of outstanding scientists through a culture of biomedical collaboration and innovation. Wistar scientists are focused on solving some of the world’s most challenging and important problems in the field of cancer, infectious disease, and immunology. Wistar has been producing groundbreaking advances in world health for more than a century, consistent with its legacy of leadership in biomedical research and a track record of life-saving contributions in immunology and cell biology. wistar.org