‘Spider Silk’ Could be Used to Treat Cancer, New Study Suggests

Drops of water are seen on a spider's web during harvest at
Chateau du Pavillon in Sainte-Croix-Du-Mont vineyard, France, October
22, 2018. REUTERS/Regis Duvignau/File Photo
Drops of water are seen on a spider's web during harvest at Chateau du Pavillon in Sainte-Croix-Du-Mont vineyard, France, October 22, 2018. REUTERS/Regis Duvignau/File Photo
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‘Spider Silk’ Could be Used to Treat Cancer, New Study Suggests

Drops of water are seen on a spider's web during harvest at
Chateau du Pavillon in Sainte-Croix-Du-Mont vineyard, France, October
22, 2018. REUTERS/Regis Duvignau/File Photo
Drops of water are seen on a spider's web during harvest at Chateau du Pavillon in Sainte-Croix-Du-Mont vineyard, France, October 22, 2018. REUTERS/Regis Duvignau/File Photo

A research team from the Karolinska Institutet, Sweden, used spider silk to address a problem that challenged researchers for years: the inability to benefit from a key weapon in their fight against cancer, the protein p53.

The p53 protein protects our cells from cancer and is an interesting target for cancer treatments. The problem is, however, that it breaks down rapidly in the cell. Researchers at Karolinska Institutet in Sweden have now found an unusual way of stabilizing the protein and making it more potent. By adding a spider silk protein to p53, they show that it is possible to create a protein that is more stable and capable of killing cancer cells.

The study is published in the journal Structure. P53 plays a key role in the body's defense against cancer, in part by discovering and preventing genetic mutations that can lead to cancer. If a cell is lacking functional p53, it quickly becomes a cancer cell that starts to divide uncontrollably.

Researchers around the world are therefore trying to develop cancer treatments that in some way target p53.

"The problem is that cells only make small amounts of p53 and then quickly break it down as it is a very large and disordered protein. We've been inspired by how nature creates stable proteins and have used spider silk protein to stabilize p53. Spider silk consists of long chains of highly stable proteins and is one of nature's strongest polymers,” says Michael Landreh, researcher at the Department of Microbiology, Tumor and Cell Biology, Karolinska Institutet.

During the study, the researchers attached a small section of a synthetic spider silk protein onto the human p53 protein. When they then introduced it into cells, they found that the cells started to produce it in large quantities.

The new protein also proved to be more stable than ordinary p53 and capable of killing cancer cells. Using electron microscopy, computer simulations, and mass spectrometry, they were able to show that the likely reason for this was the way the spider silk part managed to give structure to p53's disordered sections.



Prada and Axiom Space Shoot for the Moon with New Spacesuit

Prada and Axiom Space present the spacesuit (Axiom Extravehicular Mobility Unit) designed and developed for the Artemis III lunar mission, in Milan, Italy, October 16, 2024. REUTERS/Claudia Greco
Prada and Axiom Space present the spacesuit (Axiom Extravehicular Mobility Unit) designed and developed for the Artemis III lunar mission, in Milan, Italy, October 16, 2024. REUTERS/Claudia Greco
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Prada and Axiom Space Shoot for the Moon with New Spacesuit

Prada and Axiom Space present the spacesuit (Axiom Extravehicular Mobility Unit) designed and developed for the Artemis III lunar mission, in Milan, Italy, October 16, 2024. REUTERS/Claudia Greco
Prada and Axiom Space present the spacesuit (Axiom Extravehicular Mobility Unit) designed and developed for the Artemis III lunar mission, in Milan, Italy, October 16, 2024. REUTERS/Claudia Greco

Italian luxury group Prada and Houston-based startup Axiom Space unveiled on Wednesday the design of a spacesuit that will be used for NASA's Artemis 3 mission to the moon.

Artemis 3, planned as the first astronaut moon landing since Apollo 17 in 1972, is currently scheduled for 2026.

The new Axiom Extravehicular Mobility Unit (AxEMU), showcased at the International Astronautical Congress in Milan, aims to combine highly engineered functionality and aesthetics to deal with challenging lunar conditions, Reuters reported.

The spacesuits were made to withstand extreme temperatures at the lunar south pole and endure the coldest temperatures in the permanently shadowed regions for at least two hours, the two companies said in a joint statement.

Astronauts will be able to perform spacewalks for at least eight hours.

The AxEMU has already undergone extensive testing, included underwater to simulate the lunar environment. It is nearing the final development stage, the two companies said.

"I'm very proud of the result we're showing today, which is just the first step in a long-term collaboration with Axiom Space," Prada's Chief Marketing Officer Lorenzo Bertelli said in a statement.

As the space exploration and tourism industries develop, luxury brands are exploring possible partnerships.

Last month French fashion house Pierre Cardin unveiled an astronaut training suit, set to be used at the European Space Agency's center in Cologne.

Hotel group Hilton is working with Voyager Space to support the design and development of crew suites aboard planned commercial space station Starlab.