Diabetes study finds keeping blood sugar too steady may come at a price

New research suggests that keeping blood sugar extremely steady may come with an unexpected tradeoff for some people with diabetes.

The findings, which will be presented at the Annual Meeting of The European Association for the Study of Diabetes (EASD) in Milan, Italy (Sept. 28 – Oct. 2), indicate that people with type 1 or type 2 diabetes sometimes reported a better quality of life after days when their glucose levels fluctuated more, provided those levels remained within safe limits.

Researchers paired data from continuous glucose monitoring (CGM) devices with daily well-being assessments. Their results suggest that the effort and restrictions required to minimize every glucose fluctuation could make it harder for some people to enjoy everyday activities.

The research was conducted by Professor Dominic Ehrmann of FIDAM (Research Institute Diabetes Academy Mergentheim), Bad Mergentheim, Germany, and colleagues.

Looking Beyond Blood Sugar Numbers

Helping people with diabetes maintain a good quality of life is an important part of treatment. Blood sugar control matters, but researchers also want to understand how day to day diabetes management affects mood, energy, sleep, stress, and the ability to participate in normal activities.

The new analysis examined whether glucose patterns recorded by CGM devices were associated with daily quality of life among people with type 1 and type 2 diabetes.

The data came from the PRO-MENTAL study, funded by the German Center for Diabetes Research (DZD). Participants rated their quality of life every day for 14 consecutive days using a technique known as ecological momentary assessment (EMA) based on the WHO-5 questionnaire.

The questionnaire asks participants to rate five statements:

  1. I have felt cheerful and in good spirits
  2. I have felt calm and relaxed
  3. I have felt active and vigorous
  4. I woke up feeling fresh and rested
  5. My daily life has been filled with things that interest me

Researchers also collected daily information about sleep quality, perceived stress, mood, and energy using the same EMA approach.

Tracking Glucose Around the Clock

CGM data from the same 14 day period allowed the team to examine several measures of glucose control. These included blood sugar time below safe range (TBR: <70 mg/dl), time above safe range (TAR: >180 mg/dl), time in normal range (normoglycemia) (TING: 70-140 mg/dl), and glucose variability.

Glucose variability reflects how much a person’s blood sugar rises and falls over time.

The researchers then used statistical modeling to determine whether glucose patterns, sleep, stress, mood, and energy on one day could predict quality of life on the following day.

They also ran a separate analysis to see whether same-day measurements were associated with that day’s quality of life. The models accounted for age, sex, and diabetes type. They also included previous-day quality of life to ensure it was not strongly driving the results.

400 People With Diabetes Took Part

The analysis included data from 400 people with diabetes (72% type 1 diabetes, 28% type 2 diabetes, 55% female, age 47 years (range 32-63 years), mean glycated hemoglobin (HbA1c – a measure of blood sugar control) 7.6%.

Two glucose patterns stood out.

Spending more time in the normal glucose range on one day was significantly associated with better quality of life the next day. But more surprisingly, greater glucose variability on the previous day was also linked to higher next day quality of life.

By contrast, the amount of time participants spent above or below the safe glucose range on the previous day was not significantly associated with their quality of life the following day.

Better sleep during the preceding night was also linked to improved next day well-being. The same was true for higher energy levels on the previous day (by asking how energetic the person felt on a scale from 0 [not at all] to 10 [very much].

Interestingly, glucose measurements from the same day were not associated with quality of life on that day.

A Possible Cost of Trying to Keep Glucose Too Steady

The results do not suggest that poor glucose control is beneficial. In fact, spending more time within the normal range was associated with better quality of life.

Instead, the researchers say the finding involving glucose variability may point to a different issue. People who work especially hard to eliminate normal fluctuations may sometimes impose restrictions on themselves that make everyday life less enjoyable or make certain activities feel harder to pursue safely.

The authors say: “Days with higher time in the normal safe range for blood sugar were followed by days on which individuals with type 1 and type 2 diabetes reported better quality of life, underscoring the importance of optimal blood sugar control for well-being.

“Interestingly, higher-than-usual glucose variability was also associated with improved next-day quality of life. These findings may suggest that individuals experience lower quality of life when attempting to minimize glucose fluctuations too strictly, potentially due to the associated burden or restrictions in daily life, which may contribute to some people living with diabetes feeling unable to safely engage in certain activities.”

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Blood tests reveal why astronauts get constipated in space

Constipation is a familiar problem for astronauts, but scientists have not fully understood why spending time in space can disrupt normal digestion.

New research from the University of Copenhagen, conducted in collaboration with NASA, offers a possible explanation. Scientists analyzed blood samples from 52 astronauts who spent months aboard the International Space Station and found signs that the digestive system begins changing relatively soon after astronauts leave Earth.

“We see changes in astronauts’ blood samples that indicate that the gut bacteria begin to ferment protein to a greater extent than usual within weeks after the astronauts arrive in space, and this change continues until they are back on Earth,” says joint first author and associate professor at the Department of Nutrition, Exercise and Sports, Giorgia La Barbera.

Gut Bacteria Shift Toward Protein

Protein fermentation occurs when bacteria in the intestines begin breaking down protein rather than fiber because available dietary fiber has already been used. The process is not unique to astronauts and can also occur in people on Earth.

The researchers suspect that microgravity may slow the movement of food through the digestive tract. If food remains in the intestines longer, bacteria have more time to turn to protein fermentation.

“The lack of gravity in space probably causes food to move more slowly through the intestine, and this fits with the fact that we are seeing signs of increased protein fermentation. This may also help explain constipation in astronauts,” says co-author of the article Henrik Roager, who is also an associate professor at the Department of Nutrition, Exercise and Sports.

Gut Changes Could Affect the Brain

The findings came from an investigation of metabolites in astronauts’ blood. Metabolites are small molecules circulating through the bloodstream that can provide clues about how the body is functioning.

By analyzing these molecules, researchers can learn about processes ranging from diet and metabolism to what is happening inside the intestines.

The results could matter beyond digestion because changes in the gut can influence other parts of the body, including the brain.

“We know that products of protein fermentation [are] often associated with negative health consequences, such as kidney damage, potential effects on mood or reduced ability to focus, among others,” says Lars Ove Dragsted, senior author of the study and professor at the Department of Nutrition, Exercise and Sports.

Why This Matters for Missions to Mars

The findings could become especially important as space agencies prepare for longer missions to the Moon and eventually Mars. Astronauts on those journeys may spend far more time away from Earth’s gravity than crews currently stationed aboard the International Space Station.

“When we plan for longer journeys in space – for example to Mars countermeasures may be needed to mitigate negative effects of space travel on the intestines,” says Giorgia La Barbera.

Researchers say several approaches might help reduce these digestive changes.

“Our findings can inform potential interventions – either directly through increasing dietary fiber, supplementation with prebiotics or other types of treatments that promote peristalsis and decrease gut transit time. This would help reduce protein fermentation and thus provide a healthy gut environment and avoid negative health consequences,” adds Henrik Roager.

Peristalsis refers to the coordinated muscle contractions that move food and waste through the digestive system. Supporting that movement could shorten the amount of time material remains in the intestines and reduce the opportunity for excessive protein fermentation.

The Findings Could Also Help Patients on Earth

The work may also have implications far beyond spaceflight.

People who spend extended periods confined to bed often experience constipation as well. Researchers suggest that slowed intestinal movement in these patients could potentially produce similar changes in gut fermentation.

“You can use this knowledge to help bedridden patients. They also experience constipation and likely also have increased protein fermentation that may aggravate health conditions,” concludes Lars Ove Dragsted, senior author of the paper.

What Is Protein Fermentation?

Protein fermentation happens when bacteria in the gut begin breaking down protein after they no longer have enough fiber available.

The process is more likely when food remains in the intestines for an extended period, even if a person does not feel noticeably constipated.

As bacteria digest protein, they produce various metabolites. These molecules can enter the bloodstream and travel throughout the body.

Some can also influence the brain through the gut-brain axis, the two-way communication system linking the digestive tract and the brain.

Previous research has associated metabolites produced during protein fermentation with effects on the brain, including anxiety and reduced ability to concentrate.

Why the Results Were Unusually Clear

Research on blood metabolites can be difficult to interpret because metabolism differs considerably from person to person.

The unusual nature of the astronaut data helped researchers overcome some of that variability and strengthened confidence in the pattern they observed.

“The samples we have analyzed come from a total of 52 different astronauts, on different missions and across many years. This is very different from how you normally do a study. So, it is quite impressive that our method has been able to show so clearly that there is consistently more protein fermentation,” says joint first author and assistant professor Jan Stanstrup.

How the Study Was Conducted

The researchers examined how human metabolism changes during spaceflight by measuring metabolites in astronauts’ blood.

Their analysis indicated that protein fermentation in the intestines increases when astronauts leave Earth and enter microgravity. The blood samples also revealed smaller changes associated with fish and caffeine consumption.

Rather than searching only for predetermined substances, the researchers used a so-called non-targeted approach. This allowed them to analyze the broad range of metabolites in the blood and identify which ones changed during spaceflight.

The samples came from three studies conducted aboard the International Space Station. Even though only small quantities of blood were available, researchers were able to perform additional analyses and extract more scientific information from the existing studies.

The collaboration between researchers at the University of Copenhagen and NASA also highlights the international scientific cooperation made possible by the ISS.

NASA researchers Sara R. Zwart and Scott M. Smith contributed to the study. University of Copenhagen researchers Giorgia La Barbera, Jan Stanstrup, Henrik M. Roager and Lars Ove Dragsted also contributed.

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Feather or foam? An expert’s guide to finding your perfect pillow

Dr Chris McCarthy talks through the four considerations you need to make before buying your pillow.

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Is the universe infinite? The answer gets weird fast

Earth has a finite surface. We can measure it, and if the planet itself were expanding, that surface area would increase over time. Surprisingly, our familiar planet also offers a useful way to think about something far harder to understand: what the universe might be like beyond the region we can observe.

The simplest assumption is that beyond our cosmic horizon, there is simply more universe. More stars. More galaxies. More AI-generated cat videos. It is similar to standing somewhere on Earth and assuming that beyond your visible horizon, there is still more Earth.

But how large is the entire universe, including everything beyond what we can see?

The frustrating answer is that we may never know.

The Limits of the Observable Universe

The boundary of the observable universe is not merely the farthest distance our telescopes can currently reach. It represents a deeper limit on what information can ever reach us. The universe contains a finite amount of information that can become accessible to us, even if we waited for an arbitrarily long time.

Beyond that boundary, we are left to infer and speculate.

One possibility is straightforward: the universe is infinite. Space simply continues forever with no endpoint.

But another possibility is that the universe is finite.

That immediately raises an obvious question. How can something be finite without having an edge?

Earth provides the answer.

The surface of our planet has a finite area, yet someone traveling along that surface never encounters a boundary where the ground suddenly ends. Yes, Earth has an edge if you leave its surface in the third dimension and head into outer space, but that misses the point. The two-dimensional surface itself is finite and has no border because it curves back around.

How Geometry Reveals Curvature

We do not need to leave Earth to prove that its surface is curved. Mathematics gives us several ways to detect curvature while remaining entirely on the surface.

Triangles provide one example. On a perfectly flat plane, the three interior angles of a triangle add up to 180 degrees. Thank you, Euclid.

But imagine drawing enormous lines between three widely separated cities on Earth. The resulting triangle would not behave like one drawn on a sheet of paper. Its interior angles would add up to more than 180 degrees because the surface beneath it is curved.

Parallel lines offer another clue. On a flat plane, parallel lines never meet. On a curved surface, however, lines that begin parallel can eventually converge.

Imagine that you and I begin at different points along the equator and travel straight north. Eventually, our paths meet at the North Pole. Neither of us turned toward the other. The surface of Earth curved beneath us.

Astronomers can perform similar geometric tests on the universe itself.

Ancient Light Tests the Shape of Space

One of the most powerful tools comes from the cosmic microwave background, or CMB.

This ancient radiation was released when the early universe cooled enough for light to travel freely through what had previously been a hot, dense plasma. Scientists understand much of the relevant plasma physics (we have a decent understanding of plasmas here on Earth), which allows them to predict what patterns should appear in this ancient glow.

Those predictions include tiny temperature variations scattered across the CMB.

And those variations are exactly what astronomers observe.

More importantly, scientists can calculate how large those temperature patches should appear. If space were strongly curved, the light traveling toward us across billions of light years would follow altered paths. That distortion would change the apparent size of the patterns.

Astronomers can therefore compare the observed size of the CMB features with the size predicted for different cosmic geometries.

The features appear at essentially the expected scale for flat space.

That is why scientists say the universe appears to be geometrically flat.

So is the mystery solved? Does a flat universe automatically mean an infinite universe?

Not quite.

Flat Does Not Necessarily Mean Infinite

Imagine trying to measure the curvature of Earth while confined to your own neighborhood. The area would look nearly flat. Small triangles would behave almost exactly as Euclid predicted, and short parallel paths would not noticeably converge.

The problem would not be that Earth is actually flat. Your measuring area would simply be too small compared with the size of the planet.

Something similar could be true of the universe.

Our measurements are limited to the observable cosmos. Within that enormous region, space appears extremely flat. But the universe outside our observable patch could be vastly larger.

It is therefore possible that the universe has curvature that becomes apparent only on scales much larger than we can access (I know that tens of billions of light-years isn’t exactly tiny, but it is compared to how big the universe COULD be.)

If so, space might eventually curve back around itself.

In principle, that could mean traveling continuously in one direction would eventually return you to where you started, much as traveling around Earth can bring you back to your starting point.

In practice, the expansion of the universe places regions beyond our cosmic horizon permanently out of reach, so such a journey remains a theoretical thought experiment.

But things can get even stranger.

The Universe Could Be Flat and Still Wrap Around

A universe can be geometrically flat without being infinite in every direction.

To understand how, picture a flat sheet of paper. Draw triangles and parallel lines on it. Now bend the paper into a cylinder without stretching or tearing it.

Locally, the geometry remains flat. The triangles still behave like ordinary triangles, and the parallel lines still behave like parallel lines. Yet one direction now loops around.

This highlights the difference between geometry and topology.

Geometry describes properties such as curvature. Topology describes the broader way a space is connected.

The observable universe appears geometrically flat. But that does not automatically tell us whether one or more dimensions might wrap around and connect back to themselves while remaining locally flat.

Topology allows for some very strange possibilities.

A Mobius strip can be created by connecting the ends of a strip after introducing a twist. A Klein bottle can be thought of as another unusual connected surface. Cylinders, donuts, Mobius strips, and Klein bottles can all illustrate how spaces with locally flat geometry can have very different overall structures.

In three dimensions, mathematicians have identified 17 distinct topologies that can all remain geometrically flat. One particularly interesting example is Hantzsche Wendt space, which involves repeating structures related to hexagonal patterns.

Scientists Have Looked for Cosmic Loops

Astronomers have searched for evidence that the universe has a closed topology.

One strategy is to look for repeated patterns in the cosmic microwave background. Another is to search for galaxies that might appear in different places on opposite sides of the sky because their light has traveled through a universe that wraps around itself.

So far, researchers have found no convincing evidence that this happens.

Based on everything we can currently observe, the universe appears both geometrically flat and topologically simple. In other words, there is no detected sign that its dimensions loop back on themselves.

But once again, our cosmic horizon creates a fundamental limitation. If the scale of any such looping is larger than the observable universe, we may never be able to detect it.

That means we may never know with certainty whether the entire universe is infinite, finite, curved, or connected in some larger and stranger way.

And then there is the multiverse.

In some cosmological ideas, everything we call the universe, including regions far beyond our observable horizon, might be only one bubble among potentially countless others. Those bubbles could expand away from one another while new regions undergo their own Big Bang-like beginnings.

But that is probably enough cosmic geometry for one day.

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Trump Claims Men Arrested At US Air Base In UK Were ‘Looking To Do Big Damage’

Donald Trump has claimed the men arrested at a US air base in the UK were “looking to do big damage”.

British police arrested five people on suspicion of explosive and terrorism offences on Sunday.

It came after a tip-off that the three suspicious vans were heading towards the RAF Fairford, a military airfield which has previously been used to target Iran.

Britain previously gave the US approval to use its military bases to launch defensive strikes against Iran as part of the ongoing conflict.

A major incident was declared earlier today at the scene.

The five men were arrested and held on suspicion of preparation of a terrorist act, and police say they believe the incident is now contained.

British Counter Terrorism Policing said in a statement that they were in the early stages of an investigation and working with partners to understand the circumstances of the incident.

But Trump was much more open, telling reporters in the US: “It was fantastic. Working with Britain, it was an amazing job.

“We had them under investigation. They were looking to do big damage to our fort, and working with the British worked out great.

“It may have been Scotland Yard, I don’t know. We worked with a lot of them.

“We had them under view for a long time, and we got them. Thank you.”

UK defence secretary Wes Streeting responded to Trump’s remarks, telling reporters: “This is my first experience as defence secretary of responding live to President Trump and I’m sure it won’t be the only occasion.

“I’m sure you will understand that I’m not going to comment on a live operation and operational security matters.

“I don’t think it will come as a surprise to anyone that given the importance of Fairford – not just to the UK but to the US – we’ve been working closely with our American friends, and I’ve been in touch during the course of today with my counterpart, Pete Hegseth.”

Prime minister Andy Burnham thanked the police and armed forces on X, saying: “I know today’s incident near RAF Fairford will be deeply concerning for local residents and for many people following developments across the country.”

Iran’s Revolutionary Guards previously claimed any UK site which is used to target Iran would be a legitimate target.

The UK responded by insisting its armed forces were ready to protect the country from any attack.

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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Glucosamine, a popular joint supplement, linked to faster Alzheimer’s progression

A widely used supplement for joint pain has been linked to a potentially concerning outcome in people with early cognitive problems.

Researchers at the University of Florida found that glucosamine use was associated with a greater likelihood that mild cognitive impairment would progress to dementia. Mild cognitive impairment, often shortened to MCI, describes measurable problems with memory or thinking that are greater than expected with normal aging but do not necessarily interfere substantially with everyday life.

The findings come from a large retrospective analysis of patient health records, supported by experiments involving human brain tissue and mouse models of Alzheimer’s disease. The results remain preliminary and will need to be tested in a human clinical trial, but the researchers say they add to growing evidence that disrupted metabolism may play an important role in neurodegeneration.

The study was published in Nature Metabolism.

A Popular Supplement Comes Under Scrutiny

“In the United States, there are about 7 million people living with Alzheimer’s and millions more with related dementias such as Lewy body or frontotemporal dementia,” said senior author Ramon Sun, Ph.D., director of the Center for Advanced Spatial Biomolecule Research and associate director for innovation of UF’s McKnight Brain Institute. “A lot of these people actively take an over-the-counter supplement that could be making their disease progression worse.”

Glucosamine is widely sold without a prescription and is especially popular among older adults who take it for joint discomfort and joint health. Because of how commonly it is used, the researchers wanted to know whether it might influence Alzheimer’s disease and related dementias, known as ADRD.

Working with Yi Guo, Ph.D., and Jiang Bian, Ph.D., the team used artificial intelligence to analyze deidentified UF Health records collected from 2012 to 2024.

The researchers focused on patients diagnosed with either ADRD or mild cognitive impairment, or MCI. In both groups, 8% of patients reported using glucosamine. That included 1,896 people with ADRD and 2,750 people with MCI.

Glucosamine Linked to Dementia Progression

After accounting for age, sex and demographics, the researchers found that glucosamine use was associated with a 25% higher likelihood that mild cognitive impairment would progress to dementia.

Among people who already had ADRD, glucosamine use was also associated with a 25% higher mortality risk, meaning a greater likelihood of death during a defined period of time.

The researchers did not observe that mortality association in the MCI group. That difference suggests glucosamine may have a stronger effect once dementia is already established.

Importantly, the health record findings do not show that glucosamine itself causes dementia to progress. Observational studies can reveal associations, but other differences between people who take a supplement and those who do not may contribute to the results.

“The electronic health record data are very provocative,” said Matt Gentry, Ph.D., chair of UF’s Department of Biochemistry and Molecular Biology and a study co-author. “While it’s an association and not proof of causality, it does raise an important clinical question that now deserves much more attention.”

A Metabolic Pathway May Help Explain the Link

The researchers also uncovered evidence of a biological mechanism that could help explain the association.

Their work points to a metabolic pathway involving the attachment of sugar structures to proteins. This process is a normal and important part of cell biology, but the researchers found signs that it becomes excessively active in Alzheimer’s disease.

Sun said that abnormal activity in this pathway could eventually become a target for new treatments.

“Our results suggest that altered metabolism is a significant contributor to Alzheimer’s progression and, in addition, addressing the metabolic defect could be an important complement to approaches focused on Alzheimer’s plaques and tangles,” Sun said.

Plaques and tangles are two of the best known features of Alzheimer’s disease. Plaques are abnormal deposits of a protein called amyloid beta that accumulate between brain cells, while tangles are twisted forms of the tau protein that develop inside neurons. Much Alzheimer’s research has traditionally focused on these abnormalities, but scientists are increasingly studying additional processes that may contribute to the disease.

Mapping Thousands of Molecules in the Brain

A spatial technology developed in Sun’s laboratory helped researchers examine the metabolic changes in much greater detail.

“This technology allows us to examine thousands and thousands of molecules created when the body breaks down food or drugs and to uncover intricate pathways that otherwise would stay hidden,” Sun said.

The team then focused specifically on glucosamine. Glucosamine is a naturally occurring, sugar-related molecule that can cross the blood-brain barrier, the protective boundary that tightly controls which substances can move from the bloodstream into brain tissue.

Once inside the brain, glucosamine can enter biochemical pathways that construct complex sugar structures and attach them to proteins. Commercial glucosamine supplements can be produced from materials including shellfish shells or corn.

According to the researchers, the effects of glucosamine may depend heavily on the biological environment in which it is acting. A healthy brain and a brain affected by Alzheimer’s may therefore respond differently to the same molecule.

The Alzheimer’s brain appeared to be particularly vulnerable to this metabolic pathway.

Mouse Experiments Point to a Possible Mechanism

To explore the mechanism more closely, the scientists studied genetically modified mice.

Glucosamine significantly increased the attachment of sugar residues to proteins inside cells. At the same time, glucosamine-treated mice developed worse deficits in “social memory” — or memory of recognition — compared with the other animals.

When the researchers used a chemical treatment to suppress the sugar attachment process, memory performance improved.

That experiment suggested that excessive sugar tagging could play a direct role in the memory problems seen in the animals rather than simply occurring alongside them.

Human Alzheimer’s Brain Tissue Shows the Same Pattern

The researchers next examined human brain tissue with Stefan Prokop, M.D.

Brain specimens from people with Alzheimer’s disease, provided by the UF Neuromedicine Brain and Tissue Bank, showed significantly more sugar attachment than tissue from normal controls.

Combined with the mouse experiments and health record analysis, the findings suggest that abnormal metabolism may be more than a secondary consequence of Alzheimer’s disease. The researchers reported that it could instead contribute to the disease process itself.

“Proteins are the cell’s molecular machines, and many of them need sugar tags added in just the right way to fold correctly, travel to the right place and do their jobs,” Gentry said. “What we found in Alzheimer’s is that this sugar-tagging system appears to be overactive. The Alzheimer’s brain is adding too many of these sugar structures, and this seems to contribute to the disease rather than protect against it.”

The results raise a potentially important question about glucosamine use among people with cognitive impairment or dementia, but they do not yet establish that people should stop taking the supplement. A controlled human clinical trial will be needed to determine whether glucosamine directly accelerates Alzheimer’s progression and, if so, which patients may be most vulnerable.

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Most Scientists Agree Alien Life Exists, Study Finds

However big you think the universe is, it’s almost certainly bigger.

Our galaxy, the Milky Way, is 100,000 light-years across (one light-year is about six trillion miles).

And according to some estimates, there could be one to two billion galaxies in the universe. So perhaps it’s no wonder scientists have long wondered whether we can really be alone in that endlessness.

In fact, our intergalactic solitude seems so unlikely to some that a puzzle – the Fermi paradox – centres on its improbability. Given how statistically likely other life seems to be, it asks: where are all the aliens?

Of course, we’ve only been looking for other extraterrestrial beings since about the ’60s, and the very vastness that makes alien life so probable might also make our likelihood of meeting them next to impossible.

But a paper published in Nature Astronomy shows that most scientists agree they’re probably out there, somewhere.

What did the study show?

This research involved four surveys, all sent out to scientists like astrobiologists (those who study life outside our planet), biologists, and physicists.

These were all about “the likely existence of basic, complex, and intelligent extraterrestrial life”. That means they wanted to know whether experts thought anything from bacteria to plants or even conscious beings were probable.

When the results came back, 86.6% of astrobiologists said they “agree” or “strongly agree” that this was likely.

While 12% were more neutral on the topic, only 2% outright disagreed.

Among non-astrobiologists, meanwhile, the response was even more strongly positive. A whopping 88.4% reckoned there probably is life out there somewhere.

What about aliens, though?

“Extraterrestrial life” does not mean ET, or any other thinking, communicating being you might imagine when you hear the word “alien”. It could be as simple as a single-celled amoeba.

So it’s a good thing researchers also asked scientists how probable they thought “complex” and “intelligent” forms of life were, too.

67.4% of astrobiologists agreed this is likely, compared to 58.2% of other scientists.

Only 10.2% of astrobiologists outright disagreed that this was plausible.

These results, the study reads, “offer a snapshot of community opinion and reveal a significant degree of consensus that extraterrestrial life is likely to exist”.

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Why rheumatoid arthritis pain may persist even when inflammation is under control

Researchers at Semmelweis University say persistent rheumatic symptoms may be driven by more than inflammation alone. Sleep disorders, depression, obesity, smoking, and other health problems may also help keep symptoms going. In publications in Nature Reviews Rheumatology and The Lancet Rheumatology, the team also introduced a model designed to help doctors identify the underlying causes of symptoms earlier and tailor treatment more effectively.

The researchers examined how depression, smoking, obesity, sleep problems, and other health conditions are connected with difficult-to-treat rheumatoid arthritis.

Rheumatoid arthritis is a chronic autoimmune disease in which the immune system mistakenly attacks the joints, leading to pain, swelling, and stiffness. In Hungary alone, it affects tens of thousands of people. Most patients respond well to treatment, but 6-28 percent fall into the so-called “difficult-to-treat” group because they do not achieve lasting remission despite therapy.

According to the studies in Nature Reviews Rheumatology and The Lancet Rheumatology, these additional health problems may do more than simply occur alongside rheumatoid arthritis. They may also contribute to keeping symptoms active.

A Vicious Cycle of Pain, Mood, and Sleep

Pain and depression, for example, can reduce physical activity, contribute to weight gain, and worsen both sleep and mood. Those changes can then intensify pain and make daily activities more difficult, creating a difficult-to-break “vicious cycle.”

The researchers also developed a new model that could improve care for patients whose rheumatoid arthritis remains difficult to manage. Under the widely used “treat-to-target” approach, doctors regularly track measurable indicators of disease activity. If inflammation is not reduced enough, treatment is adjusted, such as by increasing the medication dose or switching to another drug.

The team argues that this same approach can also serve as a kind of “early warning system.” If measurable signs of inflammation improve but symptoms remain, that may indicate the pain or fatigue is not being caused solely, or perhaps at all, by ongoing inflammation.

Looking Beyond Inflammation

“When target values improve but the patient still suffers from pain and fatigue, it is worth taking a step back. In such cases, instead of automatically prescribing more medication, doctors should look for what is maintaining the symptoms – whether it is chronic pain syndrome, depression, sleep disorders, or obesity,” said Dr. György Nagy, head of the Department of Rheumatology and Immunology at Semmelweis University.

The researchers say they have seen this approach improve outcomes in difficult-to-treat patients. In many cases, it may also strengthen the doctor-patient relationship by focusing treatment more closely on what is actually driving the patient’s symptoms.

A Model With Growing International Influence

The team’s model has gained substantial international attention. Publications that introduced the concept of “difficult-to-treat” disease and the related treatment strategy have already been cited more than a thousand times by other researchers.

The definition is now used worldwide not only for rheumatoid arthritis, but also in discussions of other diseases.

AI Could Help Personalize Treatment

The researchers are now looking toward the next stage of the work. Alongside their own studies, they plan to participate in projects that use artificial intelligence to develop more effective treatments for people with rheumatoid arthritis.

“With AI-based pattern recognition, we could identify subgroups among patients, and with the help of these data we could create more effective, almost personalized treatment strategies for them,” explained Dr. Lilla Gunkl-Tóth, PhD student at Semmelweis University and first author of the publications.

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Chancellor Reveals ‘Mentor’ Gordon Brown’s Rather Unique Style Of Communicating

Gordon Brown has a very unique way of communicating his thoughts with the new Labour chancellor, according to a new interview.

Brown – Tony Blair’s chancellor and later the prime minister who steered the country through the financial crisis of 2008 – is known for having strong opinions on the way the country should be governed.

And, Speaking to The Sunday Times, the new chancellor John Healey did indeed reveal that the former PM had been in touch.

The cabinet minister said: “I’ve talked to him.

“I’ve had his block cap emails in the middle of the night. But the man is driven and an inspiration to those that he works with.”

Brown was appointed as Special Reviewer on Global Finance and Cooperation under Keir Starmer and has been kept on under Andy Burnham, meaning he continues to be an influential voice for government.

Healey also has a prior working relationship with Brown, having spent five years working as a minister in his Treasury.

He told The Sunday Times he sees Brown as an “inspiration, a mentor”.

He added: “He captured for me the best of a Labour chancellor.”

Healey welcomed the idea of balancing an appreciation that “private investment creates jobs” with a belief the government can help in “partnership” with business.

His praise comes after Opinium polling revealed last week that 56% of Labour supporters think the current government is doing about as well (26%) or better (30%) at running the country than New Labour did.

However, 31% say it is doing much worse.

Labour is heading into its first annual party conference under Burnham’s leadership after Starmer was ousted from office in July.

The new prime minister has secured a real boost in the polls for the party while support for Reform UK has dipped.

However, More in Common think tank believes Labour would still fall short of an absolute majority in a general election.

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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If You Deal With Pain From Sciatica, An Expert Says These Products May Help

If you deal with pain or discomfort from sciatica, you’re not alone. Up to 40% of people in the U.S. experience the condition at some point in their lives.

Characterized by irritation of the sciatic nerve in the lower back (or lumbar spine) region, sciatica “usually feels like a deep throbbing pain that radiates from the back or buttocks,” said physical therapist Chris DeRosa. DeRosa, who is a co-owner of Los Angeles-based Davis and DeRosa Physical Therapy, specializes in lower back pain and sciatica, among other issues.

Sciatica-related pain often continues down the leg and can travel as far as one’s toes, DeRosa noted, and may be accompanied by numbness or tingling.

According to DeRosa, because these symptoms are typically (though not always) muscular in origin, targeted exercises and physical therapy can be immensely helpful in improving sciatica and even resolving the condition completely.

“Sciatica is 100% treatable in most cases, and your physical therapist is your best line of defense,” DeRosa said. “Especially when symptoms first arise.”

DeRosa recommended some equipment that, in conjunction with proper exercises, can help assuage pain from sciatica. Before using any of the tools, be sure to consult with a physical therapist or doctor.

The experts consulted for this story do not endorse the products ahead unless otherwise noted.

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A supportive lower back brace with 40,000 5-star ratings

In addition, DeRosa recommended this popular back support belt, designed to soothe lower back pain through firm yet comfortable support.

The belted brace is made with breathable, flexible mesh, so it’ll stabilize your back while still allowing for natural movement. You can also make use of its removable lumbar pad for days when you need additional stability and targeted compression.

Another plus, according to reviewers, is that the brace is subtle enough to wear under clothes if you prefer, lacking the bulkiness characteristic of other models. It’s available in three colors and in sizes XS-XXXL.

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Gentle stretching with a dedicated nylon strap tool

According to physical therapist and co-owner of Los Angeles-based Davis and DeRosa Physical Therapy, Chris DeRosa, if a patient with sciatica has been clinically diagnosed with muscular symptoms, “the piriformis muscle, or as I call it, the ‘pain in butt muscle,’ is usually the culprit.”

“Sometimes, self-massage using a foam roller or massage gun/ball, followed by gentle stretching, can help with the symptoms and [be] part of our prescription for recovery,” DeRosa said.

DeRosa recommended this six-foot Stretch Out Strap for gently stretching the legs and upper and lower body. It’s designed with 10 loops that help you stretch with greater control; you can also use the loops as comfy yet grippy handholds.

The tool also comes with a stretching exercise booklet and access to a video stretching guide.

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A budget-friendly foam roller for gentle exercise

DeRosa also recommended this foam roller from Healthy You for gentle stretching and self-massaging.

The roller is made with medium-firm foam that’s dense and durable yet slightly soft to the touch. It comes in three sizes, though DeRosa recommended the largest size (36 inches long).

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Or self-massage using specialized deep-massage tools

In addition, DeRosa suggested this trio of massage balls for massaging the gluteal area.

Designed to address muscle pain across the body, the rubber set includes a textured ball for targeting “trigger” points, a spiky ball for more intense tension relief and a firm, smooth ball for precise muscle massage.

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A reviewer-favorite roller that offers penetrating massages

Per DeRosa’s advice to invest in a foam roller, we think this textured massage roller is a good option for folks wanting the stretch of a roller and the precise targeting of a more specialized tool.

This “next level” medium-density foam roller is super popular among Amazon reviewers, who’ve given it 28,000 5-star ratings. It’s designed with three zones so you can customize your self-massage: a “palm” area that mimics the feeling of a light massage; a “finger” zone created for tissue flushing and an especially intense “thumb” region with projecting nodes.

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Self-massaging, including with a vibration therapy massage ball

DeRosa also recommended the Hyperice vibrating massage ball for gently massaging the piriformis muscle in your gluteal area. Small enough to fit in your palm, the massage ball offers three vibration speeds to help soothe muscle stiffness and soreness.

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Or an extra-textured roller for even more intensity

If you’re seeking an especially intense massage, we chose this deep tissue roller based on expert suggestions. The tool’s firm textured bumps are supposed to deeply penetrate into muscles while the spaces in between allow for movement of your soft tissue.

Something of a hidden-gem recovery tool, the piece has earned 4.7 out of 5 stars on Amazon. “It’s amazing how much of a difference the Rumble Roller has made in my life,” wrote one reviewer. “The roller really helped ‘loosen’ things up and significantly decrease[d] the pain and stiffness that I was suffering from.”

The roller is available in an “original” firm style and an extra-firm version. You can also grab it in several sizes.

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A handheld massage gun to relieve stiffness and tension

DeRosa also suggested the Hyperice percussion massager for targeting muscles in the gluteal region.

Designed to loosen knots and soothe stiffness, the device has three speeds and two interchangeable heads (which you can swap out depending on your needs). Available in two colors, it’s lightweight enough for you to carry with you and, according to reviewers, impressively quiet given its 40-watt motor.

The original version of this story was published on HuffPost at an earlier date.

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