For decades, our picture of how the body kills dangerous or infected
cells has been built almost entirely around blood-derived immune cells, T
cells, natural killer cells, neutrophils. A new study out of Stanford,
published in Cell, just added something stranger to that picture: a cell that kills not
by attacking, but by exploding.
Researchers studying the planarian flatworm, a small aquatic worm famous for regenerating entire new bodies from cut-up fragments of itself, discovered a previously unknown class of immune cell they’ve named “ruptoblasts.” Unlike typical immune cells, ruptoblasts aren’t blood-derived at all; they’re specialized gland cells. When triggered, they undergo a dramatic form of cell death the researchers call “ruptosis”: the cell bursts open in a synchronized, explosive rupture, releasing cytotoxic contents that kill nearby cells — including bacteria and even mammalian cells — within minutes, then vanish without a trace.
The trigger turns out to be hormonal. Activin, a hormone that normally helps regulate regeneration, reproduction, and tissue balance in these worms, doubles as an inflammatory signal. When activin levels spike, through injected protein, genetic chimerism between different worm strains, or bacterial infection, ruptoblasts detonate in response. It’s a mechanism that appears to let the flatworm’s immune system solve a problem mammals also face: catching cells that are secreting hormones abnormally, including the worm’s own highly proliferative stem cells (neoblasts), before they can perpetuate an imbalance.
When the researchers selectively eliminated
ruptoblasts, inflammation went down, but so did the worm’s ability to clear
bacterial infections, underscoring how broadly these cells contribute to immune
defense. Mechanistically, ruptosis looks nothing like apoptosis, necrosis, or
other known forms of cell death; it depends on calcium released from the
endoplasmic reticulum and a cytoskeleton-driven amplification step that
produces the rapid, synchronized burst.
It’s a reminder of how much immune biology remains
unmapped outside of well-studied mammalian systems. Flatworms have been quietly
refining their defenses for hundreds of millions of years, and this discovery
suggests they arrived at a strategy with no real precedent in human biology,
one that might, eventually, offer new ideas for how we think about targeted
cell killing in medicine.
Original paper: Explosive cytotoxicity of ruptoblasts bridges hormone surveillance and immune defense
Source: These Immune Cells Kill by Exploding, And They Were Hiding in a Flatworm

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