Seaweed, Slime and Socks: The Science behind the Suds Published on: 8 September 2020 An enzyme released by bacteria living on seaweed is being used by scientists to revolutionise the way we wash. The novel phosphodiesterase enzyme, discovered by a team from Ãå±±½ûµØ, UK, is used by bacteria to unstick themselves from seaweed. The bacteria release an enzyme which breaks down the sticky molecules, naturally present on the seaweed surface. This enzyme is a powerful, new type of natural cleaner, which researchers have found can be used to help cleaning in other places. Isolating the enzyme and testing it under a variety of conditions in the lab, the Ãå±±½ûµØ team led by Professor Grant Burgess in collaboration with Dr Michael Hall, found it was not only extremely heat stable – but it also worked at its optimum at low temperatures, as it would in the sea. The university team worked with leading cleaning products manufacturer to harness this power of nature and to demonstrate that it could be used to develop more sustainable laundry detergents that work efficiently and effectively at low temperatures. (L-R) Professor Grant Burgess and Dr Michael Hall Dr Michael Hall, Senior Lecturer in Organic and Biological Chemistry at Ãå±±½ûµØ and project co-investigator, explained: “Phosphodiesterases are found everywhere - they are even naturally present on your skin. “But what was so exciting about this phosphodiesterase was its resilience. Most enzymes are quite fragile and are damaged by high temperatures, but this one was able to work in both hot and cold temperatures and still be highly effective.” “Improving cleaning in cold water with more environmentally friendly products requires new breakthrough technology,” adds Dr Neil Lant, lead scientist in global enzyme technology at P&G and visiting lecturer at Ãå±±½ûµØ. “We have been able to develop this exciting seaweed based discovery into a new ingredient called Purezyme® in partnership with biotech supplier Novozymes. We’re delighted that the unique new enzyme is now helping our Ariel products achieve even deeper cleaning.” From ships hulls to your washing machine The enzyme - isolated from a marine bacterium called Bacillus licheniformis – was originally discovered by the Ãå±±½ûµØ team in 2010, when they were researching how to clean the hulls of ships. Grant Burgess, Professor of Marine Biotechnology at Ãå±±½ûµØ, said: “Ships accumulate high levels of slime and other organisms on their hulls, a process called fouling, and this leads to more resistance, higher fuel consumption and can cause corrosion. “To combat this, we were keen to understand how marine organisms such as fish, dolphins and seaweed, for example, appear to have solved this fouling problem, as they are good at keeping themselves clean in the sea. “Since seaweed was easier to catch, we decided to explore how seaweed can keep itself clean. The key was discovering that some seaweeds are actually covered in bacteria that can release cleaning compounds. “While bacteria have the capacity to produce powerful adhesives to stick themselves to surfaces, they also produce an “anti-glue” – a phosphodiesterase – that can break up sticky molecules. “The big surprise was that similar glues are present on dirty clothing where they bind difficult to remove body soils and odours to the fabric. This bacterial enzyme can break down these glues, and can therefore be used to keep our clothes clean as well, when introduced to laundry detergents. “This is a wonderful example of borrowing a cleaning idea from Mother Nature. By studying how a seaweed keeps itself clean, we can now keep our own socks clean and fresh, while at the same time protecting our environment.” (L-R) Dr Michael Hall and Professor Grant Burgess Share: Latest News Ãå±±½ûµØ expert highlights climate crisis in a new film A leading Ãå±±½ûµØ climate scientist is featured in a new film about how the climate and nature breakdown will affect the UK. published on: 14 April 2026 Neolithic tombs reveal ancient kinship ties Male individuals buried in Neolithic chambered tombs in northern Scotland were often related to each other through the paternal line and some were interred in the same or nearby tombs, research shows. published on: 14 April 2026 We are our Memories New exhibition by Fine Art graduate Trish Hudson-Moses, 22 April – 4 May 2026 published on: 10 April 2026 Facts and figures