8 Film And TV Adaptations The Authors Who Inspired Them Hated

If you love both reading and watching films, 2026 offers rich rewards – this year will see everything from new Pride and Prejudice and Sense and Sensibility adaptations to yet another instalment in the Dune franchise.

Project Hail Mary, The Odyssey, H is For Hawk, and Wuthering Heights are already out, meanwhile.

Generally, hitting the big or small screen spells good news for book sales. People can’t stop buying copies of the Homeric text after Nolan’s blockbuster; Wuthering Heights sales skyrocketed after Emerald Fennell’s controversial interpretation.

But that doesn’t mean every author is a fan of their works’ film or telly counterparts.

Here, we rounded up eight authors who criticised adaptations of their books:

1) E.B. White wasn’t delighted with 1973’s Charlotte’s Web

Charlotte's Web
Charlotte’s Web

Paramount Pictures

E.B. White, who wrote the 1952 children’s book, had been in negotiations with the production team John and Faith Hubley.

Eventually, Hanna-Barbera got the rights instead. After their animated 1973 movie came out, White wrote: “The movie of Charlotte’s Web is about what I expected it to be. The story is interrupted every few minutes so that somebody can sing a jolly song. I don’t care much for jolly songs. The Blue Hill Fair, which I tried to report faithfully in the book, has become a Disney World, with 76 trombones.”

His wife, meanwhile, told would-be director of the abandoned original adaptation, Gene Dietch, “We have never ceased to regret that your version of Charlotte’s Web never got made. The Hanna-Barbera version has never pleased either of us.”

2) Truman Capote didn’t love 1961’s Breakfast at Tiffany’s

Author Truman Capote spent many years disparaging the movie based on his 1958 novel, calling it the “most miscast” movie (he’d wanted Marilyn Monroe for the part Audrey Hepburn got).

When asked what he didn’t like about the adaptation, he replied, “Oh god, just everything” – the book’s narrator role changes, as does the book’s ending.

3) Stephen King had issues with 1980’s The Shining

The Shining
The Shining

Warner Bros Pictures

Speaking to The Paris Review about Kubrick’s version of his story, King said he thought the movie was “Too cold. No sense of emotional investment in the family whatsoever on his part”.

He added that Shelley Duvall as Wendy was “insulting to women. She’s basically a scream machine…

“And Kubrick didn’t seem to have any idea that Jack Nicholson was playing the same motorcycle psycho that he played in all those biker films he did… The guy is crazy. So where is the tragedy if the guy shows up for his job interview and he’s already bonkers? No, I hated what Kubrick did with that.”

The writer had penned his own version of the script, which Kubrick didn’t use.

4) Rick Riordan disavowed the 2010 Percy Jackson and The Lightning Thief flick

Author Rick Riordan let his feelings about the adaptation be known on X, where he likened the movie to “my life’s work going through a meat grinder when I pleaded with [the studio] not to do it.”

He also posted, “I still have not seen the movies, and don’t plan on ever doing so… I judge them from having read the scripts because I care most about the story. I certainly have nothing against the very talented actors. Not their fault. I’m just sorry they got dragged into that mess.”

Still, the writer hinted he was “gonna fix” this with Disney+’s 2023 series, Percy Jackson and the Olympians, for which he had more oversight.

5) Michael Ende called 1984’s The Neverending Story “revolting”

Going so far as to remove his name from the movie’s credits, Ende publicly described the movie as “revolting” and claimed, “the makers of the film simply did not understand the book at all”.

The author even reportedly tried (and failed) to sue in order to stop the movie from going out, saying his “moral and artistic existence is at stake in this film”.

6) PL Travers had such a contentious relationship with Disney due to Mary Poppins, there’s a whole film about it

The film, which won a remarkable five Oscars, had a very different nanny to the one in PL Travers’ books (she “never wastes time being nice”) – Travers also disliked the fact that Disney made Mrs Banks a Suffragette.

So contentious was her relationship with Walt Disney that the movie Saving Mr Banks was made to chronicle the making of the film.

7) Alan Moore, the mind behind V for Vendetta’s comics, called the 2005 movie’s writing “rubbish”

V For Vendetta
V For Vendetta

Warner Bros Pictures

When asked to weigh in on the adaptation, Moore said: “I’ve read the screenplay. It’s rubbish”.

He also told the New York Times that for a lot of the DC projects that had become movies, “I don’t want anything more to do with these works because they were stolen from me – knowingly stolen from me.”

8) Moore also slammed the Watchmen film

The writer, who claimed the studio was using his brother’s serious illness to pressure him, said of the movie: “curse this wretched film and everything connected with it”.

Speaking to GQ, meanwhile, he said: “I would be the last person to want to sit through any adaptations of my work.

“From what I’ve heard of them, it would be enormously punishing. It would be torturous, and for no very good reason… It seemed to me that what people were taking away from works like Watchmen or V For Vendetta wasn’t the storytelling techniques, which to me seemed to be the most important part of it. It was instead this greater leeway with violence and with sexual references. Tits and innards.”

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Animal Experts Reveal Stark Reason Why You Should Be Friendly To Crows

According to National Geographic, crows are some of the most intelligent birds in the world. They have also always been held in incredibly high esteem and are considered to be symbols of prophecy, transformation, change, and freedom.

However, as majestic and revered as these birds are, they are also not to be messed with.

According to Science World: “Crows are incredibly territorial during May and June. They are known to dive and strike humans not just once, but repetitively until the human in question has moved a good distance away from the nest.”

In fact… you may actually want to be a little more friendly with crows and even befriend one. Yes, really.

Why you should befriend a crow

So, maybe you don’t need to specifically befriend a crow but you definitely need to stay on their good side.

This is because a five-year study by scientists at the University of Washington has found they possess an unusually good memory for human faces linked to a stressful event.

Not only do crows remember the faces of humans for five years, but these clever corvids can also warn their friends and family about you, too. I don’t know about you but being the target of a murder of local crows sounds bloody terrifying.

However, if you do choose to buddy up with a crow, they’ll actually bring you gifts. They may be fiercely protective and hold a hell of a grudge but they are generous souls, too!

John Marzluff, conservation ecologist at the University of Washington said that crows take part in “gifting” by leaving behind keys, lost earrings, bones, or rocks, for the people who feed them.

How to befriend a crow

According to Pet Helpful, following these steps can help you to become friends with a crow:

  • Find food that the crows seem to like and keep it in stock. Crows tend to like nuts and seeds
  • Establish a regular feeding schedule so they know when to expect you and can create a rhythm with them
  • Don’t overdo it — you don’t need to feed them meals, just enough for them to know that you care and want to befriend them
  • Don’t overdo it. Don’t feed them so much or so often that they become dependent—just a handful of something to show you care.
  • Don’t just throw the food out there and walk away. Stay at a respectful distance to watch them eat. You may see them eat it on the spot, or they might choose carefully and fly off to cache it for later
  • Don’t get too close to them as they prefer to be standoffish and may feel threatened

Brb, off to invest in some nuts and seeds.

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Ancient Arctic carbon is pouring into the sea, but the seabed captures most of it

The Arctic’s frozen ground contains enormous stores of organic carbon. As permafrost thaws and coastlines erode, some of that carbon is carried into the ocean. There, microorganisms can break it down and release greenhouse gases that contribute to climate change.

Until now, scientists have had limited information about how much of this carbon returns to the atmosphere and how much remains trapped in the ocean. Researchers from the Alfred Wegener Institute and MARUM – Centre for Marine Environmental Sciences at the University of Bremen have now examined this process along the permafrost coast of Qikiqtaruk (Herschel Island) in Canada.

By studying sediment cores, the team found that large amounts of carbon from land are preserved in the seafloor. They also discovered that marine microorganisms behave like selective eaters, favoring fresh carbon from the ocean over older carbon released from permafrost. The findings were published in Nature Geoscience.

Vast Carbon Stores Are Beginning to Thaw

Permafrost ecosystems on Arctic land contain about 1,300 gigatonnes of organic carbon, much of it from plant remains. Another 400 gigatonnes are stored in ocean sediments and river deltas.

As the planet warms, the Arctic is heating faster than any other region. This rapid temperature rise is causing frozen ground to thaw and coastlines to break apart. Carbon that was previously locked in the soil can then reach the Arctic Ocean through rivers and coastal erosion.

“Consequently, up to 0.02 gigatonnes are entering the sea each year, and according to forecasts, this outflow could rise by 70 to 150 percent by the year 2100,” says Dr. Manuel Ruben, lead author of the study from the Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research (AWI). “However, how much of this is released back into the atmosphere as a greenhouse gas and how much is stored in the seabed has, until now, been largely unknown.”

Resolving that uncertainty is important because scientists need to know where the carbon ultimately ends up to estimate how thawing permafrost could affect the climate.

Sediment Cores Reveal Where the Carbon Goes

To investigate, the researchers collected sediment cores from several locations off the coast of Herschel Island. These cores contain layers of material deposited over roughly 50 years.

The results showed that only a relatively small share of the carbon swept into the ocean becomes part of the active carbon cycle.

“Although the sea here carries away huge quantities of organic carbon from the coast, surprisingly little of it ends up in the ocean’s active carbon cycle,” says Manuel Ruben. “Microorganisms convert around ten percent of the organic carbon from the sediments into gases, which rise into the water and can then enter our atmosphere.”

Most of the remaining carbon stays buried in the seabed.

Chemical Clues Track Microbial Activity

The scientists analyzed the composition of the sediment cores and measured how quickly material from the permafrost accumulated on the ocean floor.

They also studied dissolved inorganic carbon found in tiny spaces between sediment particles, known as pore water. These measurements reveal how much CO2 microorganisms have released after consuming organic material.

The isotopic makeup of the pore water helped the team determine where that material came from.

“Carbon isotopes represent our atomic indicators that can identify the food source of the microorganisms,” says Prof. Gesine Mollenhauer, a geochemist at the AWI and co-spokesperson for the ‘The Ocean Floor – Earth’s Unexplored Interface’ cluster of Excellence. “The 13C isotope, for example, tells us whether they have consumed carbon from land or from the sea. By way of the 14C isotope, we were able to determine whether the single-celled organisms preferred old organic carbon from permafrost or fresh organic carbon from algae remains.”

“Gourmet” Bacteria Prefer Fresh Carbon

The results suggest that the organisms living in the sediment are not equally interested in every type of carbon.

“The sediment is home to ‘gourmet’ bacteria that apparently prefer fresh carbon stemming from, for example, more recent algal remains over the ‘old’ carbon from permafrost deposits,” explains Gesine Mollenhauer.

Because the microbes favor fresh marine material, older carbon from thawing permafrost may contribute less to atmospheric greenhouse gas levels than scientists once feared.

However, the researchers caution that the full picture is not yet clear.

“However, we do need further research here. This is because some of the organic carbon from the permafrost may already have been broken down before it reaches the seabed.”

Coastal Carbon Could Reshape Arctic Ecosystems

The movement of carbon from land into the ocean may affect more than greenhouse gas emissions. It can also change the chemistry and biology of coastal waters that support food resources for local communities.

Sediment released by coastal erosion can reduce the amount of sunlight entering the water. Freshly eroded fragments make the coastal ocean cloudy, while dissolved organic carbon can darken the water.

That loss of light can affect single-celled organisms such as algae, which need sunlight to produce biomass and oxygen. This primary production supports a wider food web that includes fish, crustaceans and seals.

The researchers plan to explore these connections further during the international ‘Arctic Pulse’ campaign scheduled for 2027. Scientists will carry out coordinated observations from the Polarstern research icebreaker, aboard AWI research aircraft and at sites on land. Their goal is to understand how rapid environmental change is transforming Arctic ecosystems.

Improving Arctic Climate Models

“Our study shows, more precisely than ever before, how much carbon is safely stored in the seabed – and just how much of the decomposed material actually originates from the old permafrost,” says Manuel Ruben. “This provides an important foundation for climate models that can predict the consequences of permafrost thawing for the global climate.”

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Scientists may have found aging’s hidden trigger for brain disease

Aging is the strongest known risk factor for neurodegenerative diseases, yet researchers still do not fully understand which molecular changes associated with getting older cause these conditions to develop.

Scientists have now identified a protein pathway that may help connect aging with the harmful protein buildup seen in disorders such as Huntington’s disease and amyotrophic lateral sclerosis (ALS).

Searching for the Link Between Aging and Brain Disease

A research team led by Professor Dr. David Vilchez at the CECAD Cluster of Excellence for Aging Research investigated this connection using the small nematode worm Caenorhabditis elegans. The researchers examined a signaling pathway that becomes increasingly active with age and contributes to the accumulation of abnormal proteins.

Their study, titled “The aging factor EPS8 induces disease-related protein aggregation through RAC signaling hyperactivation,” was published in Nature Aging.

The team concentrated on EPS8, an aging-associated protein, and the signaling pathways it controls. Previous research showed that EPS8 accumulates as worms grow older and activates damaging stress responses that shorten their lifespan.

EPS8 Drives Toxic Protein Buildup

The researchers found that higher EPS8 levels and increased activity in its signaling pathways promote pathological protein aggregation and neurodegeneration. Both are defining features of age-associated neurodegenerative conditions, including Huntington’s disease and ALS.

When the scientists reduced EPS8 activity, toxic protein aggregates no longer accumulated as readily. The treatment also helped preserve neuronal function in worm models of both diseases.

“We are delighted to uncover a molecular mechanism that could shed light on to how aging contributes to diseases like ALS and Huntington’s,” says first author Dr. Seda Koyuncu. “For years, we’ve known that age is the major common risk factor for different neurodegenerative diseases. However, how exactly age-related changes contribute to these diseases remains largely unknown. This study may contribute to filling in a part of that puzzle.”

Similar Results in Human Cells

EPS8 and the signaling molecules associated with it have been preserved throughout evolution and are also found in human cells. This allowed the researchers to determine whether the mechanism they observed in worms might also be relevant to human disease.

Reducing EPS8 levels in human cell models of Huntington’s disease and ALS produced results similar to those seen in C. elegans. The intervention prevented the accumulation of toxic protein aggregates in the cells.

“It’s incredibly exciting that the mechanisms we uncovered in C. elegans are also conserved in human cell models,” says Professor Dr. David Vilchez, highlighting how the use of simpler model organisms like the nematode worm can prove extremely useful to uncover disease mechanisms relevant to humans.

A Potential Target for Future Treatments

Scientists still do not know precisely how increased EPS8 activity causes toxic proteins to aggregate. Even so, the results address an important gap in neurodegenerative disease research by identifying a direct molecular connection between aging and neurodegeneration.

The findings also point to EPS8 and its signaling partners as possible targets for future therapies. Treatments aimed at this pathway could potentially slow or prevent the progression of ALS, Huntington’s disease, and other brain disorders associated with aging.

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Two new compounds could reveal hidden drivers of Alzheimer’s disease

Alzheimer’s disease is the leading cause of dementia and currently affects more than seven million people in the United States. Some available treatments can slow the disease, but most primarily address symptoms, and none can cure it.

“Alzheimer’s is a condition that remains recalcitrant to the scientific community’s attempts at developing a cure or preventative treatment,” said Daniel Schultz, a former postdoctoral fellow in the Vanderbilt University Warren Center for Neuroscience Drug Discovery.

Gaps in Alzheimer’s Biology

One major obstacle to developing better therapies is that researchers still do not fully understand the biology behind Alzheimer’s disease. The same problem affects research into many other neurological diseases and neurodevelopmental disorders.

Scientists have identified genes and proteins that may contribute to these conditions, but studying them can be extremely difficult when researchers lack a reliable way to change how those biological targets behave.

One approach involves using tool compounds. These chemicals interact with particular proteins and either raise or reduce their activity. Although many tool compounds are unsuitable for use as medicines because they may affect unintended targets or cause toxicity, they are still highly valuable for investigating what a protein does. That knowledge can become an important early step toward developing new treatments.

Targeting the TAOK1 Protein

In a study published in ACS Chemical Neuroscience, Schultz and co-first author Lauren Parr, a Ph.D. student in the Department of Pharmacology, developed a compound that selectively inhibits TAOK-1. The protein has been linked to Alzheimer’s disease, but it has remained poorly understood partly because researchers have lacked suitable compounds for studying it.

Most of the work was carried out at the WCNDD under the leadership of Executive Director Craig Lindsley. The WCNDD is a clinical-stage biotech start-up within Vanderbilt. Its drug discovery pipeline currently includes five compounds in phase I clinical trials.

The center is also a founding pillar of the new Vanderbilt Institute for Therapeutic Advances, a next-generation drug discovery institute that is also led by Lindsley.

To find useful compounds, Schultz, Parr, and other WCNDD researchers created a large collection of related molecules. Each one had a slightly different structure. The team then evaluated how the compounds affected TAOK-1 and assessed whether they had properties considered desirable in potential drugs.

“This project showcased the strength of the WCNDD’s drug discovery infrastructure,” Schultz said.

The First Selective TAOK1 Inhibitor

The collaboration led to the discovery of VU6083859, the first selective inhibitor of TAOK-1. The compound could provide a starting point for research aimed at developing future Alzheimer’s disease treatments.

Another molecule produced an unexpected result. The compound, named VU6080195, activated all three proteins in the TAOK family rather than inhibiting them.

“Our understanding of TAOK proteins largely centers around their inhibition, so we are excited at the prospect of studying the neurological effects of increasing their activity,” Schultz said. “As scientists, we can get lost in planning our projects to the last detail and expecting things to go a certain way, so it was quite fun to see this unexpected result.”

Schultz hopes the two compounds will encourage more researchers to investigate the TAOK protein family. So far, these proteins have received relatively little attention in in vivo models.

New Tools for Alzheimer’s Research

A deeper understanding of disease biology can improve the chances of finding effective treatments. With these two compounds now available, neuroscientists can examine how the TAOK protein family functions and explore its links to Alzheimer’s and other neurological diseases.

The findings could eventually help researchers identify new treatment strategies and perhaps contribute to the long-term search for a cure.

The paper “Discovery of VU6083859, a TAOK1 Selective Inhibitor, and VU6080195, a pan-TAOK Activator” was published in ACS Chemical Neuroscience.

The research used funding from the William K. Warren Foundation and received support from the Zenobia and Mark Godschalk Alzheimer’s Research Endowment, the Helen H. and Morris D. Hartman, MD 1910, Neurological Research Fund, the Warren Center for Neuroscience Drug Discovery, and the Vanderbilt Institute for Therapeutic Advances.

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What are the ‘luteal uglies’? And how they’re affecting women

More women than ever are talking about the luteal phase on social media, but how does it actually affect you?

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Dark matter’s secret force does the opposite of what scientists expected

Dark matter is usually described as an invisible substance that responds only to gravity. But scientists are now exploring a more complex possibility: dark matter particles may also interact through a hidden force of their own.

A new study in the Journal of Cosmology and Astroparticle Physics (JCAP) examined what would happen if dark matter experienced an additional attractive force. The results were surprisingly counterintuitive. Although the force causes dark matter to gather more efficiently, it usually does not accelerate the growth of cosmic structure. Instead, it tends to slow that growth.

Why Scientists Are Considering a Dark Force

Interest in a possible “dark force” has increased as highly precise observations of the Universe have produced results that do not always align perfectly.

Measurements of cosmic expansion and the development of galaxies and other large structures sometimes appear to tell slightly different stories. Some observations of the distant Universe suggest that expansion may have proceeded somewhat more slowly in the past than the standard cosmological model predicts.

At the same time, studies of the cosmic microwave background have long suggested that matter could be more tightly clustered across the largest scales of the Universe than expected.

These differences are relatively small, but they have encouraged scientists to ask whether the standard model of cosmology may be missing an important ingredient.

One possibility is that dark matter particles feel an extra force that ordinary matter cannot detect. Because the interaction would operate only within the dark matter sector, researchers refer to it as a “dark force.” Such an interaction could potentially affect both the Universe’s expansion and the formation of galaxies and larger cosmic structures.

“What we really know about dark matter has so far been learned only through its gravitational effects,” says Zachary Weiner, a researcher at the Perimeter Institute for Theoretical Physics, corresponding author for the study. “That leaves open the possibility that dark matter might have additional interactions that are hidden from ordinary matter.”

Testing a Force Beyond Gravity

The research team investigated a group of theoretical models in which dark matter particles interact through a long-range force in addition to gravity.

Using theoretical calculations together with cosmological data, the scientists studied how this hidden interaction would influence the history of cosmic expansion and the growth of large-scale structure.

At first, the expected result seems straightforward. If dark matter particles attract each other through another force, they should assemble into clumps more quickly. That stronger clustering might also appear to explain observations suggesting that the Universe contains denser structures than predicted.

“The first thing you would expect is that giving dark matter an additional attractive force should make structures grow faster,” says Weiner. “But another effect comes into play at the same time.”

A Surprising Effect on Cosmic Growth

In the models examined by the researchers, the extra force does make dark matter cluster more effectively. However, it also changes how dark matter behaves as the Universe expands.

The same process causes dark matter particles to effectively lose mass over time. This reduction weakens their gravitational influence, offsetting the stronger attraction produced by the hidden force.

As a result, the enhanced clustering does not create a stronger gravitational imprint on the cosmic microwave background. In most cases, the combined effect actually suppresses the growth of cosmic structure.

Implications for DESI and Dark Energy Models

The findings could matter for theories that extend beyond dark matter alone. Some explanations proposed for recent measurements from the Dark Energy Spectroscopic Instrument (DESI) involve similar interactions among dark matter particles.

According to the researchers, the newly identified mechanism is likely to influence many of those more complicated models as well. Any theory involving a hidden attractive force may need to account for the possibility that dark matter becomes effectively lighter as the Universe evolves.

More precise measurements from upcoming observatories and cosmic surveys could help scientists determine which hidden interactions dark matter might possess and which possibilities observations can rule out.

“The Universe is often more subtle than our intuition,” says Weiner. “That’s exactly why we have to keep testing these ideas.”

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Diane Abbott Under Fire For Describing Ukraine War As A ‘Nato Campaign Against Russia’

Diane Abbott has been criticised after describing the Ukraine war as a “Nato campaign against Russia”.

The left-wing MP was readmitted into the Labour Party on Friday following a year-long suspension.

She lost the whip last year after saying she did not regret past remarks about racism – comments which triggered her first suspension from the party back in 2023.

She argued in a letter to The Observer in April 2023 that Jewish, Irish and Traveller communities experience prejudice rather than racism.

She also made a separate post on social media called the Israel Defence Forces the “Jewish Defence Force”.

In a statement on Friday, Abbott said she had returned to the party after a formal warning over that post, adding: “I am deeply sorry for any hurt caused by that conflation and apologise for any hurt caused by it.”

But her return to Labour sparked backlash on social media after it emerged she described Vladimir Putin’s illegal invasion of Ukraine as a “Nato campaign against Russia” back in June.

Speaking at an anti-war conference, Abbott said: “We meet at a crucial time for all those who are opposed to war and strive for peace.

“Because we are not trying to stop one war, we are having to fight to stop very many wars.”

She continued: “There is a military build-up against China, there is the war and blockade in Iran and, finally, there is one of the biggest wars in Europe since the Second World War – the Nato campaign against Russia.”

The revived video sparked backlash on social media from in the Conservative Party and Labour.

Abbott also wrote in the Morning Star last weekend: “The reason there is such a hue and cry about military spending now is not because Russian forces are in Ukraine; that happened well over four years ago.

“No, the reason for the outlandish claims about an imminent Russian invasion is simply because Trump demanded more military spending from Nato members…

“None of this is making us any safer. On the contrary. Russia is a major military power, but Nato is engaged in a war which is now striking deep into Russian territory, provoking widespread calls for retaliation against Nato countries.”

Labour declined to comment.

Abbott’s return to the party comes after new prime minister and Labour leader Andy Burnham pledged to end factionalism within the party.

Labour insists her reinstatement was unrelated to the party’s new leadership.

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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Andy Burnham Says His Devolution Plans Strengthen Argument For Written Constitution

Andy Burnham has claimed his devolution plans strengthen his case for a written constitution for the UK.

The prime minister said the UK’s “antiquated” political system needs reform if equal opportunities are to be effectively shared out across the country.

Britain is one of the only major democracies without a codified arrangement which lays out how the country should be governed.

The UK’s constitution is currently established through history by common law, statutes and conventions.

Burnham has already decided to allow regional mayors to keep a proportion of income tax to spend on their local area by early 2028.

He has also set up No.10 North, an alternative to 10 Downing Street in the north of England, to symbolise his commitment to moving power out of Westminster.

He said his devolution plans “increase the case for a constitution because Britain is changing through this, England is certainly changing through this.”

He claimed the country needs to set up a codified model of devolution which works for Wales, Scotland, Northern Ireland and England.

“In the end, I think it does start to point towards a new constitutional settlement… with that commitment to equivalent living standards,” he said.

He added that his promise to implement “good growth in every postcode” was “more than just a sound bite”.

The prime minister did not outline any time frame for implementing such a historic change.

Countries usually adopt a written constitution following major events like revolution or war, when governments need to signal a departure from previous regimes.

The prime minister first floated the idea in his 2024 book Head North, co-written with Liverpool city region mayor Steve Rotherham.

He said deep inequality had become part of Britain because it had not moved on from the “feudal state” which held power in Westminster.

“Our failure fully to set out the rules for how the country should be run is one of the principal reasons why Britain is one of the most unequal major countries in the world,” he wrote.

“Our unwritten and murky constitutional arrangements have had the effect of hoarding power in a small number of hands – in Whitehall and Westminster and, by extension, in the powerful networks of institutions and vested interests that surround them.”.

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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This once-a-week workout may help cut belly fat, study shows

Researchers at the School of Public Health at the LKS Faculty of Medicine, the University of Hong Kong (HKUMed), have found that completing brisk interval walking once per week can reduce body fat and improve cardiorespiratory fitness in adults with central obesity. The benefits were comparable to those seen in participants who exercised three times per week, which is the frequency commonly recommended in traditional exercise guidance.

The findings support once weekly brisk interval walking as a practical therapeutic option for adults with central obesity, especially those who have difficulty fitting several workouts into their schedules. The study was published in Nature Communications.

A More Practical Approach to Reducing Body Fat

Obesity is a chronic health condition involving an unhealthy buildup of body fat. Fat that accumulates around the abdomen is especially concerning because it is associated with cardiovascular disease, metabolic disorders, and a higher risk of premature death.

Exercise plays an important role in managing obesity and offers a wide range of health benefits. Even so, many people, particularly those living with obesity, struggle to maintain regular physical activity over time.

Interval training alternates between more vigorous periods of exercise and lower-intensity periods of active recovery. Research has shown that it can be a time-efficient way to reduce overall body fat and visceral fat compared with continuous exercise performed at a moderate intensity.

Most exercise recommendations call for interval training three days each week. That schedule may be difficult for people with demanding jobs, family responsibilities, limited time, or restricted access to exercise facilities.

Previous research has suggested that a “weekend warrior” pattern, in which most weekly exercise is completed over one or two days, can still produce health benefits. However, there has been relatively little evidence showing whether interval training remains effective when concentrated into a single weekly session.

Professor Parco Siu Ming-fai, Professor and Head of Division of Kinesiology at the School of Public Health, HKUMed, said it was important to determine whether once weekly interval training could match the results of a traditional three-session schedule and provide a more accessible alternative.

One Session Versus Three

From September 2021 to September 2024, the HKUMed team carried out a randomized trial in Hong Kong involving 315 Chinese adults aged 18 or older. All participants were overweight and had central obesity.

Participants were assigned to one of three groups. One group completed interval training once each week, another completed interval training three times each week, and the third served as a control group.

The control group took part in a 2.5-hour health education session every two weeks for four months. Both exercise groups completed a total of 75 minutes of interval training each week. One group performed the full amount in a single session, while the other divided it across three sessions.

Researchers measured body fat using dual-energy X-ray absorptiometry at three stages: before the program began (baseline), after 16 weeks (post-intervention), and at 32 weeks (four-month post-intervention follow-up).

Similar Fat Loss and Fitness Benefits

At the 16-week assessment, both interval training groups showed similar improvements. Participants who exercised once per week and those who exercised three times per week reduced total body fat mass, body fat percentage, and waist circumference. Both groups also improved their cardiorespiratory fitness compared with the control group.

“While thrice-weekly interval training remains a commonly recommended approach for the therapeutic management of excess adiposity, our findings show that once-weekly interval training offers similar benefits and represents a practical exercise strategy,” said Professor Siu. “For many adults with central obesity who struggle to balance work, study, family and other commitments, time constraints are a primary barrier to exercising multiple days per week.”

“Instead of relying solely on high-frequency exercise prescriptions, once-weekly interval training can be considered a feasible and effective alternative,” added Professor Siu.

The study was led by Professor Parco Siu Ming-fai, Professor and Head of Division of Kinesiology at the School of Public Health, HKUMed. The co-first authors were Dr. Leung Chit-kay and Mr. Joshua Bernal, both from the same School.

The research was supported by the General Research Fund of the Research Grants Council, the University Grants Committee of Hong Kong, China, and the Seed Fund for Basic Research, HKU.

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