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Sticky or slippery? Snails can change their slime to meet the moment : NPR


A new study finds that snails can modulate the properties of their slime.

Franziska Jehle/Max Planck Institute of Colloids and Interfaces

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Franziska Jehle/Max Planck Institute of Colloids and Interfaces

Slime is splattered across the animal kingdom. Tubeworms produce mucus that glows. Hagfish can make buckets of slime in an instant. And then there are snails.

“Snail slime specifically is fascinating — a natural work of art,” says Mariella Gabler, a Ph.D. student in physical chemistry at the Max Planck Institute of Colloids and Interfaces in Germany. “The complexity and functionality are mesmerizing.”

To that end, Gabler and her colleagues wanted to know more about the composition of the slime of a particular kind of terrestrial species that’s native to central Europe, called Cepaea nemoralis, or the brown-lipped snail.

In a paper published in the journal Science, the researchers reveal that these snails tune the relative proportions of certain proteins and ions to create five different types of mucus, each with their own function and distinctive properties.

Understanding how the snails make different types of slime could serve engineers well in the creation of new materials, says Gabler, “because now they have a system that can produce different materials based on the same principal components.”

She points to numerous potential applications, including developing a slime that might help seal a wound or deliver a drug.

A tiny mucus factory

The brown-lipped snail is a many-hued wonder. “It can come in a lot of different colors and patterns,” says Gabler. “The shell colors are nuances of yellow, white, brown or pink.”

And it produces an array of mucuses whose structures serve different purposes.

First, there’s a sticky, yet slippery lubricant mucus that the snails use for locomotion, allowing them to adhere to a surface while gliding along with minimal friction.

They produce two types of defensive mucus. “When it feels stressed or threatened, it can produce either a foam, for example, to wash out small pests or a sticky glue to immobilize them,” says Gabler.

There’s a protective mucus that the snails use to seal themselves inside their shells in the winter. And they make an adhesive mucus, which allows them to cling to everything from wood to glass to aluminum.

Mariella Gabler, a Ph.D. student in physical chemistry at the Max Planck Institute of Colloids and Interfaces in Germany, says snail mucus is "mesmerizing.”

Mariella Gabler, a Ph.D. student in physical chemistry at the Max Planck Institute of Colloids and Interfaces in Germany, says snail mucus is “mesmerizing.”

Sarah Jade Sullivan


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Sarah Jade Sullivan

“The versatility makes it a perfect model system to understand how it can tune these different types of mucus according to its needs,” Gabler explains.



This story originally appeared on NPR

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