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A trick from tardigrades could help human blood withstand freezing

A trick from tardigrades could help human blood withstand freezing

phys.org 08.10.2026 20:40 6 views
Tardigrades survive conditions that would destroy most other living things: freezing, dehydration and the vacuum of space. Researchers even put tiny tattoos on them, and the animals don't seem to mind. By learning how th

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: Tardigrades survive conditions that would destroy most other living things: freezing, dehydration and the vacuum of space. Researchers even put tiny tattoos on them, and the animals don't seem to mind.

By learning how these critters carry on, researchers hope to find ways to protect human cells. One potential application is red blood cell cryopreservation—a process that stores rare blood types for long periods until they are needed. Blood cells are typically treated with glycerol to stop ice crystal formation during freezing.

But glycerol must be removed before a transfusion, which causes cell damage. Tardigrades offer a simpler option: They have a protein called CAHS (cytosolic abundant heat-soluble) that they use to survive in extreme conditions. These proteins uniquely interact with trehalose, a sugar that stabilizes cell membranes and proteins.

It's often used to reduce freezer burn in frozen foods. So, Hui Yang, Leming Sun and colleagues wanted to explore whether combining CAHS proteins and trehalose could protect red blood cells in mice better than glycerol could alone. "This study was our first attempt to translate a lesson from an extraordinarily resilient organism into a practical cell-preservation strategy," explains Sun, one of the corresponding authors of the study published in ACS Applied Materials & Interfaces.

"If further developed, it could make the process simpler after thawing, reduce concerns associated with residual glycerol and help preserve the quality of stored cells." Rather than using the full-length CAHS protein, the researchers determined that a section provided the desired protective effect. When combined with trehalose at a low temperature and then frozen in liquid nitrogen, the two components changed the way ice formed and melted, shielding cells from damage. After the cells are thawed, the CAHS-trehalose can easily be washed away by centrifugation.

Up to 89% of the mouse red blood cells preserved with the new method recovered fully, compared with about 82% of the cells frozen using glycerol. Finally, the team tested the new cryopreservation approach and found that the blood cells were biocompatible after being frozen, thawed and washed. In anemic mice, a transfusion with cryopreserved blood significantly improved their blood cell counts and hemoglobin levels without causing an inflammatory response.

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