Close Menu
  • Home
  • United States
  • World
  • Politics
  • Business
  • Lifestyle
  • Entertainment
  • Health
  • Science
  • Tech
  • Sports
  • More
    • Web Stories
    • Editor’s Picks
    • Press Release

Subscribe to Updates

Get the latest USA news and updates directly to your inbox.

What's On
Tom Cruise Says Taylor Swift Schooled Him on Football While Supporting Travis Kelce at Chiefs Game

Tom Cruise Says Taylor Swift Schooled Him on Football While Supporting Travis Kelce at Chiefs Game

September 18, 2026
Alejandro Tosti’s caddie quit mid-round — while fiery golfer thought he was in the bathroom

Alejandro Tosti’s caddie quit mid-round — while fiery golfer thought he was in the bathroom

September 18, 2026
Doctors find shocking ‘foreign bodies’ inside a man’s chest, pelvis, bladder — and penis

Doctors find shocking ‘foreign bodies’ inside a man’s chest, pelvis, bladder — and penis

September 18, 2026
Facebook X (Twitter) Instagram
Trending
  • Tom Cruise Says Taylor Swift Schooled Him on Football While Supporting Travis Kelce at Chiefs Game
  • Alejandro Tosti’s caddie quit mid-round — while fiery golfer thought he was in the bathroom
  • Doctors find shocking ‘foreign bodies’ inside a man’s chest, pelvis, bladder — and penis
  • Microsoft, OpenAI workers privately worried their work is ‘largest theft of labor in human history’
  • Hasan Piker argues Middle East would be ‘more stable’ if Iran had nuclear weapons
  • Maye Musk defends Sydney Sweeney’s nude sports ad and recalls 12-year path to citizenship
  • Minka Kelly’s Ultra-Cozy ‘Ransom Canyon’ Cardigan Is Bound to Be Everywhere This Fall — The Look
  • Why Caitlin Clark is ‘warning’ refs before WNBA games
  • Privacy
  • Terms
  • Advertise
  • Contact Us
Join Us
USA TimesUSA Times
Newsletter Login
  • Home
  • United States
  • World
  • Politics
  • Business
  • Lifestyle
  • Entertainment
  • Health
  • Science
  • Tech
  • Sports
  • More
    • Web Stories
    • Editor’s Picks
    • Press Release
USA TimesUSA Times
Home » Brains don’t always rot: Scientists may finally know how human brains have evaded decay for thousands of years
Brains don’t always rot: Scientists may finally know how human brains have evaded decay for thousands of years
Science

Brains don’t always rot: Scientists may finally know how human brains have evaded decay for thousands of years

News RoomBy News RoomAugust 4, 20262 ViewsNo Comments

The brain preservation paradox — the discovery of well-preserved human brains among otherwise skeletal remains — has puzzled archaeologists and pathologists alike for decades. Now, new research finally provides a scientific explanation for this longstanding mystery.

“We found that brain preservation isn’t a rare anomaly, it’s a novel chemical pathway,” first study author Alexandra Seviour, a doctoral researcher of paleobiology at the University of Oxford, told Live Science in an email about the new work, published June 19 in the Journal of Proteome Research. “Under the right conditions, preservation actually arises from decay itself: the same reactions that degrade tissue can also weld the breakdown products together into something far tougher.”

Despite being one of the first tissues to begin decomposing after death, human brains are surprisingly prolific in archaeology: more than 4,400 preserved brains have been discovered among human remains spanning the last 12,000 years, according to earlier work published by Seviour.

Latest Videos FromLive Science

Mummification, freezing, and even saponification (where body fat turns into a greasy substance called grave wax) can all preserve soft tissues, sometimes for millennia. Usually, these processes conserve the structures of multiple body parts, including the internal organs and skin. But bizarrely, around one-third of the archaeological brains recovered don’t fit this model, and a shrunken mass of protein is the only surviving tissue left among a cluster of bones.

The bulk of these unexplained brains were found in waterlogged, oxygen-poor (hypoxic) ground — anything from riverbeds and lake shores, to flooded caves and sunken shipwrecks. “Water, being nature’s solvent, is typically associated with decomposition, not preservation, ” Seviour said. “So the surprise is really the selectivity.” In other words: Why is it only the brain which survives under these conditions?


You may like

The preserved brain of an adult whose burial was found in Bristol. The brain is coated with clay from a waterlogged grave.

(Image credit: Alexandra Morton-Hayward)

Burying mice

Seviour’s team hypothesized that this specific burial environment, combined with the brain’s unique structure and chemistry, divert the normal decay pathway away from total breakdown — instead stabilizing the brain’s proteins via a different chemical sequence. To test this theory, they buried mouse carcasses in four different water and oxygen conditions and evaluated their decay pathways over a period of six months.

“At 24 hours, 72 hours, one week, six weeks, three months, and six months, we dissected the brains and analysed them using high-resolution mass spectrometry to see exactly which proteins were still present and in what state,” Seviour explained. “We were looking for which specific peptides survived and which vanished, and what chemical marks were left on the survivors.”

Get the world’s most fascinating discoveries delivered straight to your inbox.

Overall, their analysis yielded more than 1.26 million protein decay trajectories, enabling the team to draw patterns about how and when the chemistry diverged under the different conditions. Early analysis showed that the initial steps of decay were fairly similar, but that after a few weeks, oxygen levels became the controlling factor, with more oxygen leading to faster and more widespread decay. Conversely, wet, low-oxygen conditions favored the formation of toughened protein structures, which resisted further decomposition and preserved the remaining brain tissue.

The solution comes down to free radicals — extremely reactive particles with a single, unpaired electron. Abundant oxygen initiates a chain-like free radical chemical sequence in the brain proteins, which quickly degrades the entire protein structure, Seviour said. However, in hypoxic conditions, there is simply not sufficient oxygen for this same cascade to occur; instead, intermediates in the sequence form crosslinks with other neighboring parts of the brain protein, creating tough and insoluble aggregates that resist decay.

Brain tissue is particularly well-adapted to this localized and self-limiting pathway, Seviour added: it’s rich in metals that promote free-radical chemistry, packed with membranes where radicals can accumulate, and contains many “redox-active” amino acids that can absorb free radicals to form crosslinks. The physical barrier of the skull also likely plays a part, restricting the exchange of fluid and oxygen compared with the rest of the body, the researchers said.


What to read next

Richard Evershed, an organic geochemist at the University of Bristol who was not part of the study, was impressed by the team’s comprehensive analysis. Evershed believes it would be fascinating to expand this to other proteins found in the archaeological record.

“Comparing more tissues — other organs and muscles — would be really useful to get an idea whether what was happening in the brain was special compared to what was happening elsewhere, and also to resolve questions regarding proteins preserved in other environments in archaeology such as pots or dental calculus,” Evershed told Live Science.

But the implications of the work extend beyond archaeology. “For medicine, the more unexpected finding is that the molecular fingerprint of these decay-resistant peptides closely resembles the fingerprint seen in neurodegenerative diseases like Alzheimer’s,” Seviour said. One interesting future direction will therefore be to explore how far this similarity extends and whether preserved brains could ultimately help scientists understand the progression of these devastating diseases.

Morton-Hayward, A., Flannery, S., Berry, P., Vendrell, I., Johansen, A., Hansen, M., & Fischer, R. (2026). Molecular solution to the paradox of ancient brain preservation. Journal of Proteome Research. https://doi.org/10.1021/acs.jproteome.6c00200


See how much you know about the most complex organ in the human body with our brain quiz!

Share. Facebook Twitter LinkedIn Telegram WhatsApp Email

Keep Reading

Climate change will harm our health. Here’s what could protect us.

Climate change will harm our health. Here’s what could protect us.

AI agents resorted to crime and self-destruction to survive in a simulated world — but does this mean they would do the same in the real world?

AI agents resorted to crime and self-destruction to survive in a simulated world — but does this mean they would do the same in the real world?

Scientists identify rare genetic mutation that dramatically raises risk of lung cancer in nonsmokers

Scientists identify rare genetic mutation that dramatically raises risk of lung cancer in nonsmokers

A space shark, ‘royal’ auroras and a ‘Venusian pearl’: See the winners of the 2026 ZWO Astronomy Photographer of the Year contest

A space shark, ‘royal’ auroras and a ‘Venusian pearl’: See the winners of the 2026 ZWO Astronomy Photographer of the Year contest

Giant ‘baby’ exoplanet Elias 2-24 b is the youngest alien world scientists have ever seen

Giant ‘baby’ exoplanet Elias 2-24 b is the youngest alien world scientists have ever seen

‘Predatory behavior’: Elite mathematicians clash over OpenAI’s ‘solution’ to million-dollar math problem

‘Predatory behavior’: Elite mathematicians clash over OpenAI’s ‘solution’ to million-dollar math problem

Scientists name a new cat species for the first time in over a century

Scientists name a new cat species for the first time in over a century

1,000-year-old ‘snake amulet’ discovered in Russia blends Christian and pagan imagery

1,000-year-old ‘snake amulet’ discovered in Russia blends Christian and pagan imagery

‘At some point we’re going to have to react’: How El Niño, climate change, and crime are pushing the Amazon rainforest over the brink

‘At some point we’re going to have to react’: How El Niño, climate change, and crime are pushing the Amazon rainforest over the brink

Add A Comment
Leave A Reply Cancel Reply

Editors Picks

Alejandro Tosti’s caddie quit mid-round — while fiery golfer thought he was in the bathroom

Alejandro Tosti’s caddie quit mid-round — while fiery golfer thought he was in the bathroom

September 18, 2026
Doctors find shocking ‘foreign bodies’ inside a man’s chest, pelvis, bladder — and penis

Doctors find shocking ‘foreign bodies’ inside a man’s chest, pelvis, bladder — and penis

September 18, 2026
Microsoft, OpenAI workers privately worried their work is ‘largest theft of labor in human history’

Microsoft, OpenAI workers privately worried their work is ‘largest theft of labor in human history’

September 18, 2026
Hasan Piker argues Middle East would be ‘more stable’ if Iran had nuclear weapons

Hasan Piker argues Middle East would be ‘more stable’ if Iran had nuclear weapons

September 18, 2026

Subscribe to News

Get the latest USA news and updates directly to your inbox.

Latest News
Maye Musk defends Sydney Sweeney’s nude sports ad and recalls 12-year path to citizenship

Maye Musk defends Sydney Sweeney’s nude sports ad and recalls 12-year path to citizenship

September 18, 2026
Minka Kelly’s Ultra-Cozy ‘Ransom Canyon’ Cardigan Is Bound to Be Everywhere This Fall — The Look

Minka Kelly’s Ultra-Cozy ‘Ransom Canyon’ Cardigan Is Bound to Be Everywhere This Fall — The Look

September 18, 2026
Why Caitlin Clark is ‘warning’ refs before WNBA games

Why Caitlin Clark is ‘warning’ refs before WNBA games

September 18, 2026
Facebook X (Twitter) Pinterest WhatsApp TikTok Instagram
© 2026 USA Times. All Rights Reserved.
  • Privacy Policy
  • Terms
  • Advertise
  • Contact

Type above and press Enter to search. Press Esc to cancel.