Novel PET tracer could provide early detection of rheumatoid arthritis

first_imgMay 3 2018A novel PET tracer developed by Korean researchers can visualize joint inflammation and could provide early diagnosis of rheumatoid arthritis, a common autoimmune disease that causes chronic inflammation of joints and can lead to deformity and dysfunction. The study is reported in the featured basic science article in The Journal of Nuclear Medicine’s May issue.Activated macrophages, white blood cells that helps protect the body from harmful bacteria and infected cells, are known to play a pivotal role in rheumatoid arthritis (RA) development. Focusing on the translocator protein (TSPO), which is abundant in activated macrophages, researchers developed fluorine-18 (18F)-FEDAC, a radiolabeled ligand that targets TSPO and binds to it.”This study is novel because it showed the value of 18F-FEDAC PET as an inflammation biomarker for early detection of rheumatoid arthritis, even before onset of clinical symptoms of joints,” explains Gi Jeong Cheon, MD, PhD, of Seoul National University College of Medicine in Seoul, Korea.For the study, 18F-FEDAC was tested in a mouse model, using both 18F-FEDAC and 18F-FDG PET imaging. Microscopic examinations of tissue were performed to evaluate macrophages and TSPO expression.Results showed increased TSPO mRNA and protein expression in activated macrophages, and uptake of 18F-FEDAC in activated macrophages was higher than it was in non-activated cells. In addition, 18F-FEDAC uptake by arthritic joints increased early on (day 23), whereas 18F-FDG uptake did not. However, 18F-FDG uptake by arthritic joints increased at later stages (day 37) to a higher level than 18F-FEDAC uptake.Related StoriesResearch suggests new way to improve the efficacy of arthritis drugSurvey: More than 50% of people with arthritis have tried medical marijuana or CBDResearchers identify new molecular mechanism causing rheumatoid arthritisThis early study demonstrates that 18F-FEDAC makes it possible to see active inflammation sites in arthritic joints by targeting TSPO expression in activated macrophages, and it suggests imaging with 18F-FEDAC could be useful when RA is suspected.Cheon points out, “Early treatment can reduce the progression of joint destruction and enhance the effect of disease-modifying antirheumatic drugs or target drugs, because the burden of inflammatory reaction is smaller in the very early phase of RA.” He notes, “We observed that 18F-FEDAC uptake increased in paws of murine RA models in association with TSPO expression of activated macrophages, even before the onset of clinical symptoms of arthritis. 18F-FEDAC can help us to find which patients will actually progress to clinically significant rheumatoid arthritis and need treatment.”Reflecting on the comparison of 18F-FEDAC PET with 18F-FDG, Cheon states, “From our data, we found that each tracer may be useful for different information about arthritis–18F-FEDAC for early detection of subclinical arthritis and 18F-FDG for measuring disease activity of symptomatic arthritis. These findings are expected to contribute to the improvement of personalized therapeutic outcomes by expanding the scope of molecular imaging and nuclear medicine.” Source:http://www.snmmi.org/NewsPublications/NewsDetail.aspx?ItemNumber=28688last_img read more

More gray whales are risking their lives for shrimp cocktail

first_img Email iStock.com/randimal By Elizabeth PennisiOct. 26, 2017 , 12:00 PM Click to view the privacy policy. Required fields are indicated by an asterisk (*) HALIFAX, CANADA—Among cetaceans, gray whales are the curmudgeons: They’re often reclusive and set in their ways, spending much of their time nosing alone along the Arctic Ocean bottom for tasty invertebrates. But a dozen gray whales along the coast of Washington state are showing that even loners can get social. Using special suction cup tags with cameras and sensors—plus high-resolution satellite images from Google Earth—marine biologists have found that a small party of whales has started detouring 200 kilometers to feast on ghost shrimp during their annual northward migration—and that the party is getting bigger all the time. That behavior reveals that even gray whales can learn new tricks from their companions, the scientists say.Perhaps the biggest surprise was that the whales are spending “a lot” of time together, said John Calambokidis, a marine mammal researcher at the Cascadia Research Collective in Olympia, here at this week’s biennial meeting of the Society for Marine Mammalogy.Calambokidis and others have been logging the whales’ visits since two showed up in 1991 in the delta of the Snohomish River that feeds into Puget Sound; by 2015 there were a dozen. At least one—a female they’ve dubbed Earhart after the famous aviator—has been coming year after year. These whales spend about 3 months hanging out in the delta, Calambokidis explained, despite the risk of being stranded. Over time, they have attracted whale watchers and ignited the concerns of local fishermen, who also harvest the 7-centimeter, whitish ghost shrimp for live bait. The shrimp spend most of their lives in complex burrows that require just the right mix of sand and mud. Sign up for our daily newsletter Get more great content like this delivered right to you! 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To find out exactly what was going on, the team outfitted 11 whales with suction cup tags that included a camera, a motion detector, and a depth sounder. They collected 130 hours of video, with one tag lasting 67 hours before falling off. One video showed that as three so-called “sounders” (named after a local soccer team) came into the delta on the rising tide, they jostled one another and tailed Earhart so closely that they knocked her video camera around to face backward. Once they reached the mudflats, they put their heads down in about 2 meters of water and stirred up the sediment, sucking in both grit and thousands of ghost shrimp in one great, easy gulp. Hours later, they escaped back to the deeper water as the tide ebbed. There, the whales—not known for such collegiality—hang out together on the bottom, waiting for the next high tide. More gray whales are risking their lives for shrimp cocktail While working on another project, Cascadia marine biologist Nathan Harrison realized he could see where the whales excavated food in the mudflats—thanks to satellite images from Google Earth, in which their feeding pits appear as dark blotches. He scoured Google archives and found 10 days in which the tide was low enough to make out the 2-meter-by-1-meter depressions left by the whales. He counted up to 19,447 such pits. “To be able to use satellite images that were not collected for that purpose for scientific research is amazing,” says Allison Henry, a marine biologist at the National Oceanic and Atmospheric Administration’s Northeast Fisheries Science Center in Woods Hole, Massachusetts, who was not involved in the work.In the mudflats, the prey are 10 times more concentrated than in deeper water, Calambokidis reported, letting the whales consume up to 300 metric tons of shrimp while feeding in the delta. “These whales are really important ecologically,” says co-author David Cade, a marine biologist at Stanford University’s Hopkins Marine Station in Pacific Grove, California. That’s because they turn over a lot of sediment and cycle the shrimp back into the food web.The whales first appeared more than 25 years ago when there seemed to be a food shortage, and more showed up in 1999, during similar conditions, Calambokidis explained. Hunger may have driven Earhart to try something new, and she gradually showed others the way to this jackpot, revealing unexpected social connections in the process.last_img read more