-
Green policies just good politics, says UK minister
-
Infantino proposes consulting federations to reform FIFA
-
El Nino weather pattern enters record territory: scientist
-
South Africa arrests three more suspects, after nine women murdered
-
US networks halt Trump coverage in revolt over White House ban
-
Paramount settles with US states to clear Warner Bros. mega-merger
-
NOWPayments Releases Cross-Chain Payout Data Revealing Key Performance Benchmarks Across TRON, BNB Chain, and Solana
-
Climate crisis a job for world leaders, not just activists: UK FM
-
COP31 host says AI climate footprint to be a summit priority
-
COP31 host says AI's climate footprint to be a summit priority
-
Global stocks rally on lower oil prices, US-China hopes
-
EU proposes energy rating for data centres
-
Spanish PM says unregulated AI could be 'devastating'
-
TradersYard Shifts Focus to Futures Trading
-
From Korean Chipmakers to Leveraged Semiconductor ETFs: STARTRADER Launches 49 New 24/7 Stock and ETF CFDs
-
Indonesia doing 'everything' but struggling to curb fires
-
Asia stocks rise on AI, US-China trade talks optimism
-
FQ-42 Vengeance Finds New Home at Creech Air Force Base
-
France's Macron, Canada's Carney announce closer ties
-
Multi-Asset Trading Venue Monochrome Exchange Announces IEO of Its Native Token, $MCR
-
AI 'warning shots' focus Beijing on national security risks
-
Data centre command hub keeps AI up and running
-
Philippine tribe in limbo over US-led tech hub
-
Leo XIV, first US pope transcends his restrained style
-
Saudi-led coalition says Houthis fired ballistic missile at Riyadh
-
France's debt climbs to highest since 1978: ministry
-
Cuba works to restore power after another blackout
-
Thousands protest inaction over climate crisis in Switzerland
-
Brigitte Bardot widower slams sale of star's belongings
-
UK actor Naomi Watts honoured at Spain film festival
-
Indonesia accepts Malaysia's help to tackle wildfires
-
Trump signs bill authorizing sweeping Russia sanctions
-
Nvidia, OpenAI CEOs to attend Xi dinner at White House
-
Anthropic picks Accenture for in-house AI safety evaluation
-
Cuba hit with seventh major blackout of the year
-
Hushing and hedging: US companies retreat on climate
-
Nigeria miners struggled to breathe in cell before 37 died: survivors
-
Crisis-wracked Volkswagen warns of 10-bn-euro hit to profits
-
Warren Buffett steps down as Berkshire Hathaway chairman
-
Shakira to cap off world tour with Madrid 12-gig run
-
Isolated Syrian-Druze city blames Damascus for shortages
-
Isolated Syrian-Druze city shortages
-
Kerry James Marshall: American 'blackness' painter celebrated in Europe
-
UNESCO can be 'moderator' in AI debate: chief to AFP
-
Infantino 'must go', says German FA vice-president
-
Russia seizes assets of Nestle, French firms
-
Japan's busiest rail station tests robot bins
-
Anthropic says AI systems moving towards building themselves
-
Backpackers fret over Australian visa crackdown
-
Asian stocks boosted by falling oil, yen weakens after BoJ rate hike
What are regulatory T-cells? Nobel-winning science explained
The Nobel Prize in Medicine was awarded on Monday to three scientists for discovering how a particular kind of cell can stop the body's immune system from attacking itself.
The discovery of these "regulatory T-cells" has raised hopes of finding new ways to fight autoimmune diseases and cancer, though treatments based on the work have yet to become widely available.
After Americans Mary Brunkow and Fred Ramsdell and Japan's Shimon Sakaguchi were announced new Nobel laureates at a ceremony in Stockholm, here is what you need to know about their work.
- What is the immune system? -
The immune system is your body's first line of defence against invaders such as microbes that could give you an infection.
Its most powerful weapons are white blood cells called T-cells. They seek out, identify and destroy these invading germs -- or other unwanted outsiders such as cancerous cells -- throughout the body.
But sometimes these T-cells identify the wrong target and attack healthy cells, which causes a range of autoimmune diseases such as type 1 diabetes and lupus.
Enter regulatory T-cells -- also called Tregs -- which the Nobel committee dubbed the body's "security guards".
"They put the brakes on the immune system to prevent it from attacking something that it shouldn't," Jonathan Fisher, head of the innate immune engineering laboratory at University College London, told AFP.
For a long time, it had been thought this crucial regulation role was performed entirely by the thymus, a small gland in the upper chest.
T-cells have things called "receptors" which make sure they can detect the shape of an invading microbe -- such as the famously spiky Covid-19 virus.
When T-cells grow in the thymus, the gland has a way to eliminate any that have receptors which match healthy cells, to avoid friendly fire in the future.
But what if some of these rogue T-cells slip through?
- What did the Nobel winners do? -
Some scientists had once thought there could be some other cell out there, patrolling for escapees.
But by the 1980s, most researchers had abandoned this idea -- except Sakaguchi.
His team took T-cells from one mouse and injected them into another which had no thymus. The mouse was suddenly protected against autoimmune diseases, showing that something other than the gland must be able to fight off self-attacking T-cells.
A decade later, Brunkow and Ramsdell were investigating why the males of a mutated strain of mice called "scurfy" only lived for a few weeks.
In 2021, they were able to prove that a mutation of the gene FOXP3 caused both scurfy and a rare autoimmune disease in humans called IPEX.
Scientists including Sakaguchi were then able to show that FOXP3 controls the development of regulatory T-cells.
- How does this help us? -
A new field of research has been probing exactly what this discovery means for human health.
French immunologist Divi Cornec told AFP that "a defect in regulatory T-cells" can make autoimmune diseases more severe.
These cells also play a "crucial role in preventing transplanted organs from being rejected," Cornec said.
Cancer can also "hijack" regulatory T-cells to help it escape the immune system, Fisher said.
When this happens, the cells crack down too hard on the immune system -- like an overzealous security guard -- and allow the tumour to grow.
- What about new drugs? -
There are now over 200 clinical trials testing treatments involving regulatory T-cells, according to the Nobel ceremony.
However the breakthroughs which won Monday's Nobel have not yet led to a drug that is currently in wide use.
On Monday, Sakaguchi said he hopes the Nobel spurs the field "in a direction where it can be applied in actual bedside and clinical settings".
Fisher emphasised that a lot of progress had been made over the last five years -- and that these things take a lot of time and money.
"There is a big gap between our scientific understanding of the immune system and our ability to investigate it and manipulate it in a lab -- and our ability to actually deliver a safe-in-humans drug product that will have a consistent and beneficial effect," Fisher said.
A.Levy--CPN