Hugo Flint-Cahan, 34, was fatally attacked by Rolando Torres-Pena, 22, at a mental health trust in east London.
Richard E Grant’s Day 1 Admission Gives The Traitors Its Most Chaotic Launch Ever
Warning: This article contains major spoilers for The Celebrity Traitors.
Remember last year when Alan Carr couldn’t get through trying to tell his Celebrity Traitors co-stars that he was a Faithful without bursting out laughing?
At the time, we really thought that’d be the epitome of how blatant someone could be as a Traitor on the Bafta-winning reality show.
Well, Richard E Grant took that and said “hold my poisoned chalice”.
Yes, any doubts that The Celebrity Traitors couldn’t live up to last year’s series went out the castle window mere minutes into the Thursday night’s launch show.
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BBC/Studio Lambert/Cody Burridge/BBC Creative
During the first episode of the new season, Richard was chosen by host Claudia Winkleman as one of this year’s “Traitors”, alongside Love Island host Maya Jama.
And before he’d set foot in the turret or donned his iconic cloak, the Other Bennet Sister actor had already landed himself at the centre of suspicion.
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Following Claudia’s decision, the cast immediately began interrogating one another to look for early clues, with Joe Lycett insisting to Richard, truthfully, that he was part of the “Faithful”.
In the jaw-dropping scenes that followed, Joe reversed the question, asking the Oscar nominee outright: “What are you?”
Richard then somewhat overplayed his hand, trying to nonchalantly tell Joe and fellow comedian Rob Beckett: “Traitor.”
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After a beat, they grilled him again, to which he doubled down: “Traitor. What’s the point in the being in the game if you’re not?”
“Right. OK,” a perplexed Joe responded, with James Blunt quipping: “That’s an interesting angle. You need to be very careful.”

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Indeed, what Richard clearly intended to be a light-hearted joke or double bluff clearly came out a lot more seriously than he hoped, leading to suspicion in the castle growing like wildfire (apart from where Jerry Hall was concerned, as she maintained that her pal was kidding, even though he wasn’t…).
By the end of the episode, when it came to Richard and Maya recruiting a new Traitor, the duo narrowed it down to two of the actor’s biggest sceptics, to immediately try and diffuse the situation.
The launch show ended with James Acaster and Amol Rajan lying in two separate coffins, with one about to be recruited by the Traitors, and the other poised to become the series’ first casualty.
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So yes, you might say that the new series is off to an absolutely flying start – and that’s without even getting into Julie Hesmondhalgh getting out of her chapel pew to tell everyone what a fan she was of them, Ross Kemp suspecting everyone who brushed against him of being a Traitor, and Claudia Winkleman sporting an outfit that looked like it was styled out of whipped cream.
Oh, Celebrity Traitors. It’s so good to have you back.
Find out who has been eliminated in the first murder of the season when The Celebrity Traitors returns on Friday at 8pm on BBC One and BBC iPlayer.
You Won’t Want To Miss This Week’s ‘Beautiful’ Orionid Meteor Shower

Stargazers have been spoiled this year. Aside from the usual Lyrid and Eta Aquariid meteor showers, we’ve also enjoyed a solar eclipse – which was itself followed by a Perseid meteor shower in what was termed a “cosmic double whammy”.
Now, we’re due for what NASA calls “one of the most beautiful [meteor] showers of the year”: the Orionids.
Here’s what those are, as well as when and where you’ll be able to see them.
What is the Orionid meteor shower?
As with all meteor showers, it’s not that the comets are “shooting” towards us.
The Earth sometimes passes through the debris of comets (in this case, comet Halley) in its journey around the sun. This is also the source of spring’s Eta Aquariid meteor shower.
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When some of this space rubble enters our atmosphere, it compresses and superheats the air surrounding it. That leads to a glowing “head” and, sometimes, a streaking “tail” that stargazers will recognise as part of a meteor shower.
Fortunately for those who love the show, the Orionids move particularly quickly (about 41 metres a second). That leaves especially bright, long-lasting tails.
Per NASA, they can sometimes remain visible for several seconds and even minutes.
Not just that, but “the Orionids are also framed by some of the brightest stars in the night sky, which lend a spectacular backdrop for these showy meteors”.
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All in all, it’s set to be a pretty stunning display.
When will the Orionid meteor shower start?
It’s set to begin on Thursday 2 October 2026, and is expected to last until about 7 November.
But some periods will be brighter and more beautiful than others.
The shower will “peak” on 21 October, though Royal Museums Greenwich explained, “there is a broad maximum lasting about a week roughly centred on that date”.
Where can I see it?
The less light pollution, the better. If you can get away from the city and other bright locations, do.
The broader the view you have of the sky, the more meteors you might see. High points are therefore a good option.
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Expect the best viewing conditions, weather-wise, in southern and eastern parts of England. Though Northern Ireland and Scotland might face showery conditions, the skies should be relatively clear between rainfall, too.
You might “struggle” more in Wales, the Midlands and Northern England, the BBC added, due to a slow-moving cloudy weather front.
How can I see the Orionid meteor shower in 2026?
Go outside in the wee hours and get comfortable. Sleeping bags and outdoor chairs can help to keep you warm, and the darker the sky is, the more visible the meteors can be.
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You can see these brilliant meteors with the naked eye – no special equipment is needed.
Andy Burnham Forced Into Climbdown After Row Over Manchester City Comments

Andy Burnham has been forced to clarify his views on Manchester City after he triggered an angry backlash by saying he was “really concerned” the club’s owners could quit English football.
The prime minister gave his views after City were found guilty of multiple breaches of the Premier League’s financial rules.
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Club officials have denied any wrongdoing and are set to appeal against the decision, which was handed down by an independent commission.
If they lose, they face a massive fine and possible relegation from the league.
Asked by the BBC if he was worried the owners could sell the club, Burnham – the former mayor of Greater Manchester – said: “I would be really concerned to lose them.
“They’ve been such a huge partner in the building of modern Manchester. Obviously, the building of Manchester City into the global force that it is.”
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Asked if all his dealings with City while he was mayor will stand up to scrutiny, Burnham said: “Oh indeed. I do actually thank the City Football Group and the wider ownership for the money that they didn’t just put into the Etihad and the campus around it but also into the city, but yes of course.”
The PM said there was “a lot at stake … for the football club, for city supporters, for the city of Manchester”.
His comments were condemned by politicians, supporters of other clubs as well as senior figures within football.
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Green Party deputy leader Mothin Ali said: “Andy Burnham’s comments are staggering, just one day after saying people should come before profit, he sides with big money over the integrity of a sport that belongs to the people.
“It’s a shame the prime minister appears to agree there should be one rule for the rich and one for everyone else.”
In an attempt to take the sting out of the row, a No.10 spokesman said: “As the prime minister made clear, the initial judgement is serious and there can’t be any suggestion that anyone is above the rules. He also stressed that it is an ongoing independent process.
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“It is essential that it is allowed to run its course and the outcome respected. If wrongdoing is established, those responsible should face the appropriate consequences.”
However, the PM was praised by high-profile City fan and Oasis lead singer Liam Gallagher, who posted on X: “There’s only 1 Andy Burnham.”
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 diet may slow brain aging by 2.5 years

A diet that combines elements of the Mediterranean diet with an eating plan designed to lower blood pressure may help slow some of the structural changes that occur as the brain ages, according to research published online in the Journal of Neurology Neurosurgery & Psychiatry.
Greater adherence to the MIND diet was linked to less brain tissue loss over time, particularly in grey matter, which plays an important role in memory, learning, decision making, and information processing. It was also associated with less enlargement of the brain’s ventricles, fluid filled spaces that tend to grow as brain tissue shrinks.
What Is the MIND Diet?
The Mediterranean-Dietary Approaches to Stop Hypertension Diet Intervention for Neurodegenerative Delay diet, or MIND for short, has previously been associated with better cognitive health, according to the researchers.
The eating pattern emphasizes green leafy vegetables; other vegetables; berries; nuts; whole grains; fish; beans; olive oil; and poultry, along with moderate wine consumption. It also recommends limiting butter/margarine, cheese, red meat, pastries/sweets, and fried fast foods.
Although previous research has connected the MIND diet with cognitive benefits, its relationship with age related changes in brain structure has remained less clear. Those structural changes are also relevant to neurodegenerative diseases such as Alzheimer’s and Parkinson’s diseases.
Researchers Tracked Brain Changes for Years
To investigate, researchers studied 1647 middle aged and older adults (average age 60 at the start of the study) from the Framingham Heart Study Offspring cohort (FOS).
Participants underwent regular health evaluations every 4-8 years. Starting in 1999, they also received MRI brain scans every 2-6 years.
Diet was assessed through at least 1 food frequency questionnaire (FFQ) completed during check ups between 1991-5, 1995-8, and/or 1998-2001. Each participant also had at least 2 brain MRI scan assessments between 1999 and 2019 and showed no evidence of stroke or dementia at the time of their first MRI scan.
The average MIND diet score was just under 7 out of a possible 15, with 15 representing the strongest adherence.
People in the highest third for MIND diet adherence were more likely to be women and college educated. They were also less likely to smoke or have obesity.
They were also less likely to have conditions that can affect brain health, including type 2 diabetes, high blood pressure, and cardiovascular disease.
Higher MIND Scores Linked to Slower Grey Matter Loss
Over an average follow up period of 12 years, MRI scans showed the expected age related changes across the group. These included decreases in total brain, grey matter, white matter, and hippocampal volumes.
At the same time, cerebrospinal fluid and ventricular volumes increased, as did white matter hyperintensities, which appear as bright spots on MRI scans and can indicate tissue damage.
However, people with higher MIND diet scores experienced slower loss of grey matter.
Each 3 point increase in MIND diet score was associated with slower grey matter loss of (0.279 cm³/year). According to the researchers, that corresponded to 20% less age related decline and the equivalent of 2.5 years of delayed brain aging.
A similar pattern appeared in ventricular enlargement. Each 3-point rise in MIND diet score was associated with slower expansion of total ventricular volume by −0.071 cm³/year, equivalent to 8% less tissue loss and about 1 year of delayed brain aging.
Berries and Poultry Stand Out
Some foods appeared to contribute more strongly to the favorable associations.
Higher berry intake was linked to slower increases in ventricular volume. Poultry was also associated with slower ventricular enlargement, along with a slower decline in grey matter.
In contrast, higher consumption of sweets was associated with faster ventricular enlargement and greater hippocampal atrophy. Fried fast foods were also linked to a larger decline in hippocampal volume.
“MIND-recommended foods rich in antioxidants, such as berries, and high-quality protein sources like poultry may reduce oxidative stress and mitigate neuronal damage,” suggest the researchers. “Conversely, fried fast foods, often high in unhealthy fats, trans fats, and advanced glycation end-products, may contribute to inflammation and vascular damage,” they add.
Some Findings Were Unexpected
Not every food produced the expected pattern.
Higher whole grain intake was associated with several unfavorable structural changes, including faster losses of grey matter and hippocampal volume, as well as faster ventricular enlargement.
Cheese showed the opposite pattern. Greater cheese intake was associated with slower declines in grey matter and hippocampal volume, less ventricular enlargement, and fewer white matter hyperintensities.
Benefits Appeared Stronger in Older Adults
The overall associations remained consistent across several additional analyses and were stronger among older participants.
The researchers say this may suggest that the MIND diet could be especially relevant for people at greater risk of faster brain aging or those who show more variation in the pace of brain atrophy.
Stronger associations were also seen among participants who were more physically active and among those who were not overweight or obese.
That pattern raises the possibility that combining a brain healthy diet with other healthy lifestyle habits could help reduce the risk of neurodegenerative disease, the researchers say.
The Study Cannot Prove Cause and Effect
The findings come from an observational study, so they cannot establish that the MIND diet directly caused the slower brain changes.
The researchers also note that food frequency questionnaires rely on participants accurately remembering what they ate, which can introduce recall bias.
They were also unable to rule out mild cognitive impairment at the time of the first MRI scan, changes in diet over time, or the influence of genetic risk factors.
Because the participants were predominantly White, the findings may not apply equally to people from other ethnic backgrounds.
Still, the researchers conclude: “These findings reinforce the potential of the MIND diet as a brain-healthy dietary pattern and support its role in strategies aimed at slowing neurodegeneration in aging populations.”
‘Why I’m donating 100 litres of my breast milk’
Emma said donating her breast milk had been “such a worthwhile thing to do”.
Could quitting ultra-processed food boost your mental health?

A small preliminary study from UC San Francisco adds to mounting evidence that eating fewer ultra-processed foods may help reduce symptoms of depression.
Published Sept. 23 in JAMA Psychiatry, the study was funded by the National Institutes of Health. Researchers believe it is the first study to compare depression symptoms in the same participants before and after they moved from their usual ultra-processed diet to healthier foods.
The pilot study included only 20 people, but senior author Andrew Krystal, MD, Ray and Dagmar Dolby Distinguished Professor in UCSF’s departments of Psychiatry and Behavioral Sciences and Neurology, said it “successfully established the viability of carrying out this research in a larger-scale trial.”
Depression Symptoms Improved After a Major Diet Shift
Participants cut their intake of ultra-processed foods by more than 85%. After doing so, they showed moderate to large improvements across three different measures of depression. Anxiety scores also improved modestly.
Ultra-processed foods include products such as packaged snacks, fast food, sugary drinks, and other industrially manufactured foods. These products may contain ingredients including preservatives, artificial coloring, flavor enhancers, and emulsifiers.
“Reducing the amount of ultra-processed food in our diet can be challenging, because it’s highly palatable, cheap, and convenient,” said corresponding author Nyasha Chagwedera, MD, PhD, assistant professor in the UCSF Department of Psychiatry and Behavioral Sciences. “Ultra-processed food triggers dopamine, the pleasure hormone, which promotes craving. Food companies work with scientists to find just the right amount of sugar, salt, and fat that make you want to eat more and more.”
Testing the Gut-Brain Connection
The participants had an average age of 44, and 70% were female. Along with depression, 14 participants also had anxiety. Everyone in the study had a high BMI and at least one metabolic disorder — such as hypertension, diabetes, or elevated LDL cholesterol.
Researchers divided the participants into two groups. One group stayed on its usual diet for four weeks, while the other switched to a diet low in ultra-processed foods. Participants selected and bought their own food with guidance from the research team. After four weeks, the groups switched diets.
Chagwedera, who founded the UCSF Metabolic and Mental Health Program, said one possible explanation for the connection between ultra-processed food and depression involves what she described as a “leaky, out-of-balance gut.” According to this idea, ultra-processed foods may damage the protective lining of the gut.
“This gut damage can create low-grade, chronic inflammation throughout the body that either directly causes depression or makes people more vulnerable to it.”
“In other words, junky processing may harm your gut in ways that ripple up to your brain.”
Larger Depression Trial Planned
Because the study was small, the findings are still preliminary. The researchers now plan to investigate the effect in a larger group, with enrollment for phase 2 expected to begin in 2028.
Authors: Additional UCSF authors include Eliana Kim, MD, Dorothy T. Chiu, PhD, Chengshi Jin, PhD, Catherine Lee PhD. Other authors are Susannah Tye, PhD, of the University of Queensland, Australia, Mayo Clinic, and Emory University.
Funding: National Center for Advancing Translational Sciences, National Institutes of Health, through UCSF-CTSI Grant Number UL1 TR001872; NHLBI grant R38AG070171, NIMH grant R38AG070171, and the UCSF Weill Institute of Neurosciences.
Alzheimer’s risk gene APOE4 may have a reversible weakness

Mount Sinai researchers have uncovered new details about how APOE4, the strongest known genetic risk factor for Alzheimer’s disease, may contribute to brain damage. Two studies published in Cell and Cell Stem Cell show that the gene can damage blood vessels in the brain and encourage the accumulation of abnormal proteins associated with neurodegenerative disease. The findings point to disease processes that may be reversible and also highlight a new human brain tissue platform derived from stem cells that could speed up the search for treatments.
Alzheimer’s disease gradually damages memory, thinking, and behavior and affects more than 7 million older adults in the United States. Researchers have known for years that blood vessels in the brain deteriorate as Alzheimer’s progresses, especially in people who carry APOE4. What has been less clear is why this happens and whether the vascular damage contributes directly to the disease. Because of that uncertainty, damage to the brain’s circulation has often been treated as a consequence of Alzheimer’s rather than as a process that could help drive it.
Mapping How APOE4 Damages Brain Blood Vessels
For the Cell study published on September 24, Mount Sinai scientists combined existing datasets to build a single cell transcriptomic atlas of blood vessels in the human brain. The resulting map showed patterns of gene activity across the different cells that create and support the brain’s vascular system, giving researchers a detailed way to examine how APOE4 contributes to vascular degeneration.
The team found that APOE4 altered the behavior of pericytes. These cells normally help stabilize small blood vessels and support the blood brain barrier. In the presence of APOE4, however, the pericytes changed into myofibroblast-like cells that produce scar tissue.
That transformation promoted vascular fibrosis and increased the buildup of amyloid around blood vessels. These changes could interfere with blood flow and create conditions that encourage neurodegeneration.
The researchers also found evidence that this process could be reversed. Blocking TGF-β signaling, which plays a role in communication between cells and in tissue remodeling, restored pericyte coverage while reducing fibrosis and amyloid around blood vessels. The researchers reproduced the result in aged APOE4 mice, showing that the vascular degeneration associated with APOE4 can be therapeutically reversed.
“Damage to the brain’s blood vessels is not simply a late consequence of Alzheimer’s disease; it is a biologically active process caused by APOE4 that may be reversible,” said corresponding author Joel W. Blanchard, PhD, Associate Professor of Neuroscience, and Stem Cell Biology and Regenerative Medicine, at the Icahn School of Medicine at Mount Sinai. “These findings reveal new therapeutic targets for preserving vascular function and limiting amyloid accumulation.”
“We show that APOE4 converts blood-vessel support cells into scar-producing cells, causing amyloid or abnormal protein buildup to accumulate around the brain’s vessels. Through our experiments, we were able to block this protein buildup process, revealing possible new therapeutic treatment options and strategies for protecting the brain’s circulation in people at high genetic risk for Alzheimer’s disease,” said first author Braxton R. Schuldt, MD/PhD candidate in Neuroscience and researcher in the Blanchard Laboratory at the Icahn School of Medicine at Mount Sinai.
Human miBrains Reveal Disease Mechanisms
A major part of the research relied on miBrains, three dimensional human brain tissue developed by the Mount Sinai team from induced pluripotent stem cells. The model reproduces important features of human brain tissue, including its network of blood vessels.
The Blanchard laboratory combined findings from miBrains with preclinical models, postmortem human brain tissue, and transcriptomic data. Each approach helped confirm and expand on observations made with the others.
By bringing these systems together, the scientists were able to recreate events that occur before the severe vascular abnormalities seen in postmortem human brain tissue. They could then identify the mechanisms behind those changes and quickly test possible treatments.
APOE4 May Also Disrupt the Brain’s Protein Cleanup
In the Cell Stem Cell study, researchers used miBrains to explore another effect of APOE4: its role in the accumulation of abnormal proteins associated with neurodegenerative disease.
Abnormal protein buildup is a defining feature of conditions such as Alzheimer’s and Parkinson’s disease. However, investigating exactly how these deposits form inside a living human brain is extremely difficult. The miBrain system gives scientists a way to observe related processes in complex human brain-like tissue under laboratory conditions.
miBrains include all of the major cell types present in the human brain, including neurons, supporting glial cells, myelin producing cells, and cells that make up blood vessels. Similar to what happens in the human brain, miBrains carrying APOE4 developed higher amounts of abnormal alpha-synuclein. This protein is most strongly associated with Lewy body dementia and Parkinson’s disease.
Although alpha-synuclein has major clinical importance, researchers have not fully understood the cellular processes that cause it to accumulate.
Cholesterol Buildup Disrupts Cellular Waste Removal
The experiments revealed that APOE4 causes cholesterol to accumulate inside astrocytes, support cells that perform several essential functions in maintaining brain health.
That excess cholesterol interfered with the astrocytes’ lysosomal waste-disposal system. As a result, the cells became less effective at breaking down alpha-synuclein. Instead of being cleared away, the protein accumulated and spread to neurons, where it contributed to harmful deposits.
These findings suggest that cholesterol metabolism inside astrocytes, along with lysosomal function, could become important treatment targets for both Alzheimer’s and Parkinson’s disease.
Using miBrains, the researchers were able to follow the chain of events in complex human brain-like tissue. Their experiments connected APOE4 with lipid buildup in astrocytes, weaker clearance of alpha-synuclein, and the formation of toxic protein deposits.
The results point to both lipid metabolism and cellular waste removal systems as potential therapeutic targets in neurodegenerative disease.
A Platform for Testing Personalized Treatments
Another advantage of the miBrain system is that researchers can preserve the tissue for future experiments.
“A key advance of our technology is that miBrains with predefined cellular compositions and disease-related factors can be cryopreserved,” said Louise Mesentier-Louro, PhD, Assistant Professor of Neuroscience, and Stem Cell Biology and Regenerative Medicine, at the Icahn School of Medicine at Mount Sinai and first author of the Cell Stem Cell study. “This capability improves reproducibility and scalability of complex disease modeling and supports more efficient drug development and validation.”
Mount Sinai researchers are also developing miBrains derived from individual patients, which could eventually allow scientists to investigate how neurodegenerative disease develops differently from person to person and how patients might respond to particular treatments.
“At Mount Sinai we are creating and cryopreserving miBrains from patients,” Dr. Blanchard added. “This will enable personalized studies into how neurodegenerative disease develops and how individuals may respond to therapies. By enabling potential therapies to be tested earlier and more efficiently, the miBrain platform could help bridge the gap between laboratory discoveries and treatments for a broad range of disorders.”
Study Funding
The Cell study examining vascular degeneration in the brain received support from the National Aeronautics and Space Administration (80ARC022CA004), the National Institute on Aging at the National Institutes of Health (R01AG089533, UH3NS115064, U54AG090669, T32GM146636), The SWT Foundation, and the CureAlz Fund.
The Cell Stem Cell study examining abnormal protein buildup in the brain received support from the National Aeronautics and Space Administration (80ARC022CA004), Aligning Science Across Parkinson’s (ASAP-024297) through the Michael J. Fox Foundation for Parkinson’s Research, the National Institute of Neurological Disorders and Stroke and the National Institute on Aging at the National Institutes of Health (R01NS114239, UH3NS115064, 1U54AG090669-01, T32AG04968, F31NS13090), the CureAlz Fund, and The SWT Foundation.
The children dying in India’s remote tribal heartland
At least 32 children have died in India’s Balaghat district since May amid outbreaks of measles and malaria.
Endometriosis trial gives hope to millions of women in pain like me
A £2.3m study will look at whether a personalised pain management plan can improve the quality of life of women who have the debilitating condition.




