A new medical imaging method being developed at Rutgers University could help physicians detect cancer and other diseases earlier than before, speeding treatment and reducing the need for invasive, time-consuming biopsies.
The Rutgers scientists were recently awarded a $2.2 million grant from the National Institute of Biomedical Imaging and Bioengineering, part of the National Institutes of Health, to advance their research.
“Our new mode of fluorescent imaging aims not only to reveal diseases earlier, but also to learn more about the diseases before performing surgery,” said Prabhas Moghe, the lead researcher on the project and distinguished professor of biomedical engineering and chemical and biochemical engineering. “I like to think of it as an optical biopsy.”
“This technique could eventually be used to accurately determine whether a newly detected cancer has spread to nearby lymph nodes, which should help a surgeon deal with the full extent of disease during a single surgery,” said Shridar Ganesan, associate director for Translational Science at Rutgers Cancer Institute of New Jersey and clinical advisor for the project.
Currently, a surgeon who cannot tell how far a cancer has spread may do lymph node biopsies, wait a day for results, and then perform a second surgery if needed, with its attendant trauma, risks, and costs.
While scientists and physicians have long recognized the potential value of shortwave infrared light, fluorescent dyes that react to this light have either been too toxic to use safely or could not deliver sharp images. The dyes that Moghe and his team are developing encapsulate rare-earth nanocrystals in a shell of human serum albumin. They are well tolerated, distribute quickly through the body, and accumulate at the disease sites.
The researchers can employ different types of rare-earth elements, which glow under slightly different colors of shortwave infrared light, to create a family of probes that are sensitive to a variety of cancers. “In this way, we can get a precise picture of the makeup and stage of the disease,” Moghe said.
The team has demonstrated positive results in laboratory mice, and has shown that the spread of cancer even on a very small scale can be detected earlier than with traditional techniques such as magnetic resonance imaging or near-infrared imaging. The development may open up new avenues for early intervention.
Working with Moghe and Riman are engineering colleagues Charles Roth, Vidya Ganapathy, and Mark Pierce along with Mei-Chee Tan, a professor at the Singapore University of Technology & Design. Also participating are graduate students Margot Zevon, Harini Kantamneni, and Laura Higgins.
This article was written by Carl Blesch of Rutgers Media Relations. For more information, Click Here .