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Not all eggs are the same—uncovering a tropical parasite's secret weapons

Not all eggs are the same—uncovering a tropical parasite's secret weapons

phys.org 08.09.2026 22:40 3 views
A team of scientists from the Faculty of Science at Charles University has achieved a major breakthrough in research into schistosomiasis, a serious tropical disease affecting more than 250 million people worldwide. Usin

This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: A team of scientists from the Faculty of Science at Charles University has achieved a major breakthrough in research into schistosomiasis, a serious tropical disease affecting more than 250 million people worldwide. Using advanced laser microdissection, the researchers have, for the first time, captured and analyzed proteins secreted by the eggs of the human blood fluke Schistosoma mansoni directly within infected tissues of a living organism, rather than under artificial laboratory conditions.

The work is published in the journal Frontiers in Cellular and Infection Microbiology. Schistosomiasis is a dangerous parasitic disease caused by blood flukes of the genus Schistosoma. The main cause of health complications is the parasite's eggs, which become trapped in the host's liver or intestine.

There, they secrete substances that trigger an inflammatory response and the formation of protective "barriers" known as granulomas, which are built around the eggs by immune cells. Long-term infection and the presence of eggs in tissues can have serious consequences, including enlargement of the liver and spleen, digestive problems and increased blood pressure. Some species can even contribute to the development of cancer.

Although the eggs and the proteins they secrete play a key role in these processes, previous research has relied on artificially culturing the eggs and analyzing them in vitro. This has distorted our understanding of which proteins the parasite actually releases into the host's body. The team led by scientists from the Faculty of Science at Charles University overcame this problem using a technique known as laser microdissection.

"Using this method, we excised precisely defined microscopic areas of tissue immediately surrounding the eggs in the liver and intestine of infected mice, without damaging the eggs themselves," said parasitologist Lucie Jedličková, who performed the microdissections using a specialized microscope. Subsequent mass spectrometry analysis revealed a set of 149 parasite proteins that are consistently secreted into the surrounding tissue in both organs. The research further showed that the overall protein profile of the eggs varies considerably depending on the organ in which they are located and the stage of infection.

During the acute phase, eggs in the liver massively release key immune-suppressing molecules and tissue-degrading enzymes, whereas the composition of proteins released in the intestine remains much more stable over time. This difference reflects the fate of the eggs: Those in the liver remain permanently trapped, while those in the intestine merely pass through the tissue on their way out of the host's body. "Our results provide the first authentic insight into the parasite molecules that host tissues actually encounter.

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