‘My cancer spread while I waited months for surgery’: The cost of England’s cancer wait times

Cancer care has got worse since the government announced plans to speed up waiting times and save more lives, BBC analysis shows.

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UK needs new laws for AI in healthcare, says watchdog

The technology will soon be routinely used within the NHS, MHRA chief Lawrence Tallon tells the BBC.

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Migraines and acne among five more conditions pharmacists can treat

Pharmacies in England will soon offer treatments for a total of 12 common conditions which save people going to their GP first.

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Anthropic Researcher Resigns, Warning AI ‘Could Kill Us All By The End Of The Decade’

A researcher for Anthropic resigned from the company on Tuesday, warning that “the people building AI earnestly believe that it could kill us all by the end of the decade.”

In a series of posts on X, Jacob Coxon, who said he has worked for both Anthropic and OpenAI on pretraining research, claimed neither AI giant is “acting responsibly.”

“They are racing straight to self-improving superintelligence and gambling with our lives,” he said.

Coxon warned that Americans cannot afford to “underestimate this technology.”

“These will soon be superhuman systems that can hack anything, revolutionize any field overnight, and acquire real power and resources. We have all witnessed the progress in each of these domains, and progress is not slowing,” he said.

“The people building AI earnestly believe that it could kill us all by the end of the decade,” he added. “No other human activity poses this level of danger.”

Evan Hubinger, alignment science lead at Anthropic, said Coxon’s assessment was valid, adding that he believes there is an over 10% chance the technology could wipe out all humans.

In a follow-up post on X, Hubinger reiterated that the risk from currently available models is low.

“What I am worried about is superintelligence arising from recursive self-improvement,” Hubinger added.

Another Anthropic employee, scalable oversight lead Samuel Marks, said, “AI developers believe their technology could cause human extinction.”

“This could happen in the next few years. In general, the more senior the employee, the more concerned they are,” Marks added, while noting that many AI developers are keen “to slow down to figure out how to build AI more safely.”

This is not the first time those working closely with AI have sounded the alarm on the technology’s expanding capabilities.

Even some of the top AI companies’ bosses, including Dario Amodei of Anthropic and Sam Altman of OpenAI, signed a statement in 2023, declaring that “mitigating the risk of extinction from AI should be a global priority alongside other societal-scale risks such as pandemics and nuclear war.”

Still, Coxon’s social media post amplified fears about the possibility of humans losing control of AI following a series of recent hacking incidents, including Anthropic’s disclosure that some Claude AI models hacked into the systems of three companies during testing.

This followed OpenAI’s revelation that one of its AI agents broke into tech firm Hugging Face.

Meta had also reported a similar incident with one of its AI models.

Microsoft co-founder Bill Gates recently echoed concerns about AI in a lengthy statement posted on his website, remarking that “even under the best circumstances, the transition to this new AI era will be one of the most turbulent times in human history.”

“Unfortunately, right now we are not preparing for it. I don’t see evidence that leaders, experts, and communities are confronting the challenges adequately. There is no plan to ease the entry into the AI era,” he continued.

Despite the threats, the Trump administration has been wary of placing stronger guardrails on AI for fear of giving foreign countries an edge.

“We can’t pause. You can’t, because the Chinese won’t pause. Even the North Koreans, they won’t pause,” Treasury Secretary Scott Bessent said Tuesday.

Meanwhile, the Financial Times reported that Anthropic refused to give the U.K. AI Security Institute access to testing ahead of its release, as the tech giant appears to have ceded to the Trump administration’s demands to not make models available to foreign nationals.

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Police Launch Investigation Into Reform UK Donations After Channel 4 Documentary

Detectives have launched an investigation into allegations that Reform UK broke the law on political donations after an undercover Channel 4 investigation.

Senior Reform officials Dan Jukes and James Orr stood down from the party after the documentary was broadcast last Thursday night.

It appeared to show them discussing with a fake American donor how he could give money to the party.

Under electoral law, all political donors must either be registered to vote in the UK or a company registered in Britain.

In a statement, the Metropolitan Police said they had “assessed the information provided and determined that there are potential offences requiring investigation”.

Detectives are “seeking to obtain relevant footage” from last Thursday’s broadcast.

The statement added: “Detectives continue to liaise closely with the Electoral Commission and Crown Prosecution Service as inquiries progress.”

A Reform spokesman said: “Reform UK denies any wrongdoing and will fully co-operate with the investigation.

“We won’t be commenting further while a live investigation is under way.”

The Met is already investigating whether payments to Reform before the last election broke donation laws.

The probe is examining money given to the party by Fiona Cottrell, who is the mother of longstanding Nigel Farage ally, George Cottrell.

Detectives are also investigating payments from a company controlled by Reform’s deputy leader Richard Tice, which received £1m from Fiona Cottrell in June 2024.

Lib Dem Cabinet Office spokesperson Lisa Smart said: “We welcome the Met Police’s criminal inquiry into Reform’s finances, and if proven, Nigel Farage and his cronies should face the full force of the law.

“Every Reform MP urgently needs to state whether they or their campaigns have benefited from any foreign money.”

Listen to Commons People, the podcast that makes politics easy. Every week, Kevin Schofield and Kate Nicholson unpack the week’s biggest stories to keep you informed. Join us for straightforward analysis of what’s going on at Westminster.

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Scientists find a bone-building switch that could fight osteoporosis

Osteoporosis, a condition that weakens bones and increases the risk of fractures, affects millions of people and remains a major challenge for doctors seeking safe treatments that can be used over long periods. In Germany alone, about six million people are affected, most of them women.

Because existing therapies can have limitations and side effects, researchers are looking for new biological targets that could lead to more effective ways of preserving or rebuilding bone. Scientists at Leipzig University have now identified one such target in GPR133, a receptor that appears to play an important role in keeping bones strong.

A Little-Known Receptor With a Major Role in Bone Health

GPR133 belongs to a group known as adhesion G protein-coupled receptors. These receptors sit on the surface of cells and help them respond to signals from their surroundings. Although this family of receptors is still not fully understood, the new findings suggest GPR133 is closely involved in the processes that build and maintain healthy bone.

“If this receptor is impaired by genetic changes, mice show signs of loss of bone density at an early age – similar to osteoporosis in humans. Using the substance AP503, which was only recently identified via a computer-assisted screen as a stimulator of GPR133, we were able to significantly increase bone strength in both healthy and osteoporotic mice,” explains Professor Ines Liebscher, lead investigator of the study from the Rudolf Schönheimer Institute of Biochemistry at the Faculty of Medicine.

The results point to GPR133 as a potentially valuable target for future osteoporosis treatments. The researchers found that stimulating the receptor with AP503 increased bone strength not only in healthy mice, but also in mice with osteoporosis-like bone loss.

How GPR133 Helps Build Stronger Bones

Inside bone tissue, GPR133 responds to physical forces and interactions between nearby bone cells. When the receptor is activated, it sets off signaling that changes the balance between the cells that build bone and those that break it down.

Bone-forming cells (osteoblasts) are responsible for producing new bone tissue. Bone-resorbing cells (osteoclasts), by contrast, remove old bone as part of the skeleton’s normal cycle of renewal. Healthy bones depend on maintaining the right balance between these two processes.

Activation of GPR133 encourages the activity of osteoblasts while reducing the activity of osteoclasts. This shifts the balance toward stronger and more durable bone.

AP503 appears to imitate the natural process that activates GPR133. That raises the possibility that the compound could eventually be used to increase bone strength or help restore bone that has already been weakened. One potential application would be osteoporosis associated with menopause, when declining hormone levels can accelerate bone loss in women.

Potential Benefits for Both Bone and Muscle

The findings could have broader implications because AP503 may affect more than the skeleton.

In an earlier study, researchers at Leipzig University had already found that activation with AP503 also strengthens skeletal muscle.

“The newly demonstrated parallel strengthening of bone once again highlights the great potential this receptor holds for medical applications in an aging population,” says Dr. Juliane Lehmann, lead author of the study and a researcher at the Rudolf Schönheimer Institute of Biochemistry.

A treatment capable of improving both bone and muscle strength could be especially relevant for older adults, who often experience declines in both tissues at the same time. Maintaining stronger muscles can also support mobility and stability, while stronger bones can reduce vulnerability to fractures.

The Leipzig team is now pursuing several follow-up projects aimed at understanding GPR133 more fully. Researchers are also investigating whether AP503 could have applications in other diseases and are continuing to examine the receptor’s wider functions throughout the body.

Leipzig’s Longstanding Research Into GPR Receptors

For more than a decade, Leipzig University has made adhesion G protein-coupled receptors a major research priority through Collaborative Research Center 1423, Structural Dynamics of GPCR Activation and Signaling.

The program focuses on understanding how these receptors change shape, become activated, and transmit signals inside cells. Leipzig University is internationally recognized as a leading center for research in this area.

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The Year Of The Pickle: You Can Now Drink Your Favourite Flavour In A Sparkling Drink

What was once something you interacted with when it was sandwiched between your patty and bun is now everywhere.

From big snack pickles, to picklebacks, the past decade has certainly been the time for pickles to shine.

And now, pickles are dominating the soft drink market, too.

Earlier this year, I had a limited-edition pickle matcha, which blended matcha with lemonade and pickle brine, at Bird & Blend.

And now, pickle sodas seem to be popping up left, right and centre.

Almost certainly not for the pickle protester, these drinks taste (shockingly) as though they’ve been infused with citrusy brine.

Three Cents’ has a slightly more cucumber, vegetal taste to it, and comes in the brand’s classic glass bottle.

Yew’s, on the other hand, tastes exactly like drinking a sparkling version of the liquid straight from the jar.

If you do have a particular penchant for pickles, like me, these drinks are refreshing and quench that need to chomp down an entire jar of the things as a late-night ‘snack’.

Should you be even slightly opposed to a pickle, though, you’ll find yourself making a face like you’ve eaten a sour candy at even the first sip – they’re that precise.

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Have we found alien life? Hundreds of scientists weigh in

It may seem like we are on the verge of discovering alien life. In 2025, a press release stated that we have the “strongest hints yet” of extraterrestrial life on the exoplanet K2-18b. And when talking about a collected sample from a rock named “Cheyava Falls” on Mars, NASA Administrator Sean Duffy said this was the “closest we have ever come” to discovering life on the red planet.

Such moments capture the imagination. But they also raise an important question: what do the majority of scientists actually think?

Surprisingly, we usually don’t know. When a scientific controversy or breakthrough dominates headlines, press officers and journalists often quote a handful of experts. These views may be insightful, but they rarely tell us what the wider scientific community thinks. And yet public discussions frequently rely on phrases such as “the science says” or “scientists believe”, as if there were a clear and measurable answer.

In reality, systematic evidence about scientific opinion is often missing. My colleagues and I recently tried to change that in the domain of astrobiology. Shortly after the two major announcements of possible extraterrestrial life in 2025, we surveyed astrobiologists to understand how expert judgment was distributed across the field.

The first case concerned the exoplanet K2-18b. In April 2025, researchers reported possible traces of molecules called dimethyl sulfide and/or dimethyl disulfide. On Earth, these are associated with biological activity. Media coverage was extensive, with many reports framing the finding as an extraordinary advance in the search for alien life.

The second case came in September, when NASA announced that Cheyava Falls appeared to preserve a potential biosignature – so-called “leopard spots” which are mineral rings that on Earth are often formed by microbial activity. Again, headlines, and NASA officials themselves, suggested something momentous.

What scientists actually thought

We surveyed hundreds of astrobiologists from across the global research community, within days of each announcement. We asked a simple question: did scientists think extraterrestrial life had probably been found?

The results revealed a rather cautious picture. For K2-18b, only 6.6% of surveyed astrobiologists agreed that scientists had probably found extraterrestrial life. Nearly two-thirds disagreed, while 28.0% remained neutral. For the Mars case, confidence was higher but still cautious: 15.1% agreed, disagreement fell to 44.6% and neutrality rose to 40.3%.

Looking only at agreement and disagreement, however, misses an important part of the story. The proportion of astrobiologists who strongly disagreed fell dramatically, from 35.1% in the K2-18b case to just 11.1% for Mars. Much of the movement was therefore not from rejection to endorsement, but from strong rejection towards more tentative positions.

In other words, expert opinion moved in structured ways. The shift from K2-18b to Mars was not a simple movement from “no” to “yes”. Instead, the community became more open to the possibility without embracing it outright.

One possible reason is that the two cases involved different kinds of evidence. The K2-18b claim relied on possible atmospheric signatures detected from across interstellar distances, whereas the Martian case concerned a rock that could be studied directly and in much greater detail. At the same time, astrobiologists have long been aware that apparently lifelike features can sometimes arise through non-biological processes. Often, the challenge is not imagining how life could produce a signal, but understanding all the ways nature might produce something similar without life.

Scientific opinion is rarely binary. Public discussion often treats science as though communities either agree or disagree. But the distribution of opinion matters too. Strong agreement, agreement, neutrality, disagreement and strong disagreement can each tell us something different about how a scientific community is responding to a claim.

A large neutral response can indicate several things. Scientists may judge the evidence genuinely inconclusive. They may hold an intermediate level of confidence. Or they may regard a claim as too speculative to endorse or reject decisively. Likewise, movement from strong disagreement towards ordinary disagreement may signal a softening of attitudes even when overall disagreement remains high. Treating scientific opinion as simply “for” or “against” risks flattening these important distinctions.

Beyond extraterrestrial life

The broader lesson extends well beyond extraterrestrial life. In areas such as climate science, pandemics, artificial intelligence or medical research, public conversations frequently invoke scientific consensus.

Sometimes strong agreement genuinely exists. Sometimes it does not. But we often lack systematic ways of measuring what scientists actually think, especially where evidence is emerging or uncertainty remains substantial. Instead, discussions rely heavily on selective quotation, vocal individuals or assumptions about community views.

Efforts to do this more systematically are beginning to emerge. At Durham University, our research group, C-Scope (the Centre for Scientific Community Opinion Polling and Evaluation), studies how expert opinion is distributed and how it changes over time. We are not trying to replace evidence with polling, nor to treat majority opinion as truth. Our aim is to better understand how scientific communities respond to uncertainty.

Scientific knowledge advances through uncertainty, disagreement and gradual revision. If public discussion, and perhaps political will, increasingly turns on claims about what scientists think, we should make more effort to find out.The Conversation

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Interstellar comet 3I/ATLAS is bursting with methanol

Comet 3I/ATLAS is continuing to surprise astronomers. New observations from the Atacama Large Millimeter/submillimeter Array (ALMA), of which the U.S. National Science Foundation National Radio Astronomy Observatory (NSF NRAO) is a partner, show that the interstellar visitor contains an unusually large amount of methanol. In fact, its methanol abundance exceeds that seen in almost all known comets from our own solar system.

“Observing 3I/ATLAS is like taking a fingerprint from another solar system,” shares Nathan Roth, lead author on this research, and a professor with American University, “The details reveal what it’s made of, and it’s bursting with methanol in a way we just don’t usually see in comets in our own solar system.”

A Chemical Fingerprint From Another Solar System

The research team used ALMA’s Atacama Compact Array in Chile to observe 3I/ATLAS on several dates in late 2025 as it moved closer to the Sun. As sunlight heated the comet’s icy surface, gas and dust escaped and created a bright cloud (or coma) around its core.

By studying the molecules in this coma, astronomers could identify the chemical makeup of material carried by the comet. Because 3I/ATLAS originated outside our solar system, those measurements provide a rare opportunity to investigate how small icy bodies may form in another planetary system without traveling beyond our own.

The scientists concentrated on the faint submillimeter signatures of two molecules: methanol (CH3OH), a type of alcohol, and hydrogen cyanide (HCN), a nitrogen-bearing organic molecule commonly seen in comets.

ALMA revealed that 3I/ATLAS contains an unusually high amount of methanol relative to hydrogen cyanide. On two observation dates, researchers measured methanol-to-HCN ratios of roughly 70 and 120. Those values place 3I/ATLAS among the most methanol-rich solar system comets ever studied.

Unusual Chemistry Points to Different Origins

The measurements suggest that the ice inside 3I/ATLAS formed under, or was later exposed to, conditions very different from those experienced by most comets in our solar system.

Earlier observations with the James Webb Space Telescope found that 3I/ATLAS had a coma dominated by carbon dioxide while it was still far from the Sun. The new ALMA measurements now add abundant methanol to the growing list of unusual features in the comet’s chemical makeup.

ALMA’s high resolution for imaging also allowed astronomers to track how different molecules are released and travel away from the comet. The observations revealed a striking contrast between methanol and hydrogen cyanide.

Hydrogen cyanide appears to originate mostly from the comet’s central body, or nucleus. That behavior is common among comets in our solar system. Methanol, however, appears to come from both the nucleus AND from ice particles floating within the coma.

Tiny Ice Grains Act Like Mini-Comets

These small icy grains effectively behave like miniature comets. As 3I/ATLAS approaches the Sun and temperatures rise, ice within the grains turns into gas and releases additional methanol into the surrounding coma.

Astronomers have seen similar behavior in some comets from our own solar system. However, this is the first time researchers have traced the detailed physics of this type of outgassing in an object that originated in interstellar space.

Comet 3I/ATLAS is only the third confirmed object ever observed entering our solar system from interstellar space, following 1I/’Oumuamua and 2I/Borisov. Studies of those earlier visitors also uncovered unusual characteristics.

As astronomers find and examine more interstellar objects, each one offers another opportunity to compare our solar system with planetary systems elsewhere in the galaxy. The unusual chemistry of 3I/ATLAS is adding another intriguing piece to the broader picture of how planets, comets, and other small bodies form around distant stars.

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Very hot drinks may damage the food pipe and increase cancer risk

Steaming hot liquid can damage the cell lining on the way down to the stomach, experts say.

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