What in the World

Doctors are warning that some cancers are becoming more common in people in their 20s

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Can a rooftop garden help very ill patients heal faster?

Still in her hospital bed, connected to feeding tubes and life support, Hollie is the first patient to try out the new intensive care rooftop ward at King’s College Hospital in south London.

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Prostate cancer screening only for ‘a few thousand’ high risk men

Only men with a dangerous genetic variant and a family history of cancer should be offered screening, say UK advisors.

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Yes, Nails Can Turn Yellow From Age — This $24 Kit Helps Fix It

Believe it or not (you probably believe it), your nails are often one of the biggest indicators of your lifestyle and sometimes even your health. And if your precious fingers have assumed a yellow-ish tint these days — either due to aging, working the yard, or an affinity for back-to-back gel manicures that stain over time — we literally spotted a bright idea for that! Enter Londontown’s Mani Bright Nail Scrub, a whitening kit paste and a scrub brush designed to restore your nails back to their glory days. Even better, it’s only $24 for a salon-level transformation that can take a few years off your fingernails.

Whether it’s been months or years of yellowing, reviewers say this stuff can fix you right on up!

In case you didn’t know, yes, your nails can simply yellow with age or due to underlying health conditions like yellow nail syndrome, which typically affects folks 50 years or older.

“I’m almost 70 and I noticed my toenails were getting a tinge of yellow,” one shopper wrote of their natural manicure experience. “So I tried this stuff in the shower and it worked really well.”

“My nails looked young again, without any yellowish tone,” another reviewer, Tallulah Belle, vouched.

Known for its $20 milky nail concealer that helps conceal your imperfections underneath a shockingly natural sheen (HuffPosters LOVE IT), Londontown’s Mani Bright nail kit is designed to remove the color issue altogether. Easy to use, it’s a mere two-step restoration process that involves the scrub solution and a brush. The scrub formula features calcium carbonate to remove the odd colors, sodium bicarbonate to boost whitening plus citrus extract to naturally brighten.

Of course, age isn’t the only reason your nails could stand some brightening care.

“This is a definite YES!” another reviewer wrote. “So easy and works GREAT! Nail polish had my nails looking dull and yellowing and now they are great even after the first use! I will definitely continue purchasing this one!”

Results are so impressive, it leaves reviewers wishing they had documented their journey using the brightening kit sooner. “Whoa, this stuff really works,” says one thrilled user. “I wish I had taken a photo before and after. I didn’t think about it till after I used it. My nails look so white and bright. Very impressed with this product…”

Of the lot who adore this nail cleaning and brightening kit, we’re most pleasantly surprised by the number of gardeners who credit it with transforming nails that undergo routine manhandling.

“This is so handy,” one card-carrying green thumb holder, Lori, shared. “Even though I wear garden gloves I like to scrub my nails after gardening. Perfect!”

“Nice and compact,” another reviewer shared. “Can put in a travel bag for convenience of use. Especially great for hands and nails after gardening. The shape is perfect with the cleaning soap to get under nails and into the crevices of nail beds for a clean job.”

And it’s not just gardeners who benefit: it’s for folks who tend to get messy in the kitchen or seem to use their hands for a range of DIY purposes (basically, a significant chunk of the population). “It sure does whiten the ends of your nails,” says one pleased shopper. “The underneath of my nails are stained from picking weeds in the garden, cooking, etc., (mustard REALLY stains them), and generally speaking using my fingernails as screwdrivers. I used this product one time, scrubbing the underneath of my nails with the brush and the difference was amazing.”

“Best analogy is like going to a dentist and getting a professional teeth cleaning. The results were night & day,” another shopper wrote.

Now that’s worth every penny.

Check out more promising reviews of this nail brightening kit below.

“I’m almost 70 and I noticed my toenails were getting a tinge of yellow. So I tried this stuff in the shower and it worked really well.” — Ron

“I have been using this product for almost two weeks and I see so much of a difference in my nails. My nails look so much brighter and cleaner now since I have been using the scrub. I am so glad I discovered this product and would recommend this to anyone! Definitely worth the hype!” — Yana H.

“I wasn’t sure what to expect, but this stuff actually does work! My nails were kind of yellow and lackluster, particularly at the tips, and one use made them look much cleaner and brighter. The brush that comes with it makes it easy to reach in to the tiny edges, and it didn’t dry out my nails like I feared it might. Such a nice feeling to use—definitely adding it to my routine.” — Cassidy V.

“I loved this nail brush and cleansing cream. I bought more for gifts.” — Patty

“Exceeded my expectations. My nails were stained from polish and this product worked wonderfully. The included brush is of nice quality as well.” — Whispering willow

The Real Deal: We use deal trackers and commerce experience to sift through “fake” hike-and-drop deals and other deceptive sales tactics. Products will usually be rated at least 4 stars with a minimum 15% discount. (And when there’s an exception, we’ll tell you why.)

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Why the gut is known as the second brain

Your gut doesn’t just respond to your brain – it helps shape your emotions. Professor of Biomolecular Medicine Jon Swann explains why.

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Researchers block key protein that helps Parkinson’s spread through the brain

Researchers at the Perelman School of Medicine at the University of Pennsylvania have identified a brain immune protein that may play a major role in the progression of Parkinson’s disease (PD). Their findings, published in Neuron, suggest that blocking this protein with monoclonal antibodies could eventually lead to treatments that slow the disease in its earliest stages.

The protein, known as glycoprotein nonmetastatic melanoma B (GPNMB), appears to help harmful Parkinson’s-related damage spread from one brain cell to another. Scientists say targeting it may offer a new strategy for slowing the worsening of the disease over time.

“Many patients with Parkinson’s disease are diagnosed in the early stages, when symptoms are relatively mild, but there is currently no treatment that slows the progression,” said lead author, Alice Chen-Plotkin, MD, Parker Family Professor of Neurology. “These early results are a promising step towards developing this type of treatment.”

How Parkinson’s Disease Spreads in the Brain

Parkinson’s disease affects more than one million Americans, and approximately 90,000 people in the United States are diagnosed each year. Although researchers still do not fully understand what causes the disease, scientists have known for years that it gradually spreads through the brain in stages.

A protein called alpha-synuclein is central to this process. In Parkinson’s disease, alpha-synuclein forms abnormal clumps inside neurons. These clumps damage the affected cells and can then move into nearby healthy neurons, where they continue spreading.

As more areas of the brain become affected, symptoms worsen. Patients may develop tremors, difficulty walking, balance problems, and trouble swallowing.

Current treatments, including levodopa and deep-brain stimulation, can help reduce symptoms. However, no approved therapy has been shown to slow or stop the underlying progression of Parkinson’s disease itself.

Brain Immune Cells May Help Fuel Disease Progression

In earlier research published in 2022, Chen-Plotkin and colleagues identified GPNMB as an important molecule involved in the spread of alpha-synuclein between neurons. That discovery made the protein a promising target for future therapies.

In the new study, the research team found that microglia, the brain’s immune cells, are a major source of GPNMB in Parkinson’s disease. When neurons become damaged or begin dying, nearby microglia respond by producing larger amounts of the protein.

Enzymes then cut part of GPNMB away from the cell surface, allowing it to move freely between cells in the brain.

Using preclinical laboratory experiments with cultured neurons, researchers developed antibodies designed to block GPNMB. The antibodies successfully prevented alpha-synuclein pathology from spreading from one cell to another.

“These results suggest Parkinson’s disease may be driven by a self reinforcing cycle — alpha-synuclein accumulates in neurons, damaging the neurons. The injury to the neurons initiates the release of GPNMB, which accelerates the spread of alpha-synuclein, leading to further damage,” Chen-Plotkin said. “Interrupting this cycle would hopefully slow, or even stop, the spread of alpha-synuclein through the brain and the neurodegeneration that follows.”

Human Brain Analysis Supports the Findings

To examine whether the results were relevant in people, researchers analyzed tissue samples from 1,675 brains stored in the Penn Brain Bank.

The team found that individuals carrying genetic variants linked to higher GPNMB production also showed more extensive alpha-synuclein pathology. According to the researchers, this provides strong evidence that GPNMB plays a significant role in the progression of Parkinson’s disease in humans.

Importantly, elevated GPNMB levels were not connected to markers associated with other neurodegenerative conditions, including Alzheimer’s disease.

“These results are promising for laboratory models and human brain tissue analysis, but we still have a lot of work to do before we can translate this therapy into humans,” said Chen-Plotkin. “That being said, these results are encouraging as we continue to work towards a novel treatment for PD.”

The study received support from the National Institutes of Health (R37 NS115139, P30 AG010124, U19 AG062418, P01 AG084497), SPARK-NS, the Parker Family Chair, and the Lipman Family Fund.

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‘It’s not a nice world to bring children into’: Births fall to the lowest level in 50 years

Live births in England and Wales are at their lowest since 1977, while the age of first-time mothers has also risen.

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Resident doctors in England to strike for 16th time over pay

British Medical Association resident doctor members in England announce new strike for four days from 15 June.

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Scientists break 30-year superconductivity record at normal pressure

University of Houston researchers have achieved a major superconductivity breakthrough by setting a new temperature record for superconductors operating under ambient pressure conditions. The advance could eventually help create more efficient electrical grids, improved energy storage systems, faster electronics, and new technologies for fusion energy and medical imaging.

Scientists from the Texas Center for Superconductivity (TcSUH) and the University of Houston department of physics reached a superconducting transition temperature (Tc) of 151 Kelvin (about minus 122 degrees Celsius). That is now the highest Tc ever reported for a superconductor functioning at ambient pressure since superconductivity was first discovered in 1911.

The transition temperature marks the point where a material can carry electricity with zero resistance. Increasing this temperature has been one of the biggest goals in superconductivity research because higher operating temperatures could make superconducting technologies far more practical and affordable.

The findings by physicists Ching-Wu Chu and Liangzi Deng were published in the Proceedings of the National Academy of Sciences. Funding for the work came from Intellectual Ventures, the state of Texas through TcSUH, and several foundations.

“Transmitting electricity in the grid loses about 8% of the electricity,” said Chu, professor of physics, TcSUH founding director and the paper’s senior author. “If we conserve that energy, that’s billions of dollars of savings and it also saves us lots of effort and reduces environmental impacts.”

Why Superconductors Matter

Superconductors are materials that allow electricity to flow without resistance. Because no energy is lost as heat, they could dramatically improve the efficiency of electrical systems. Scientists also see superconductors as critical for technologies such as magnetic resonance imaging (MRI), fusion reactors, quantum technologies, and ultrafast electronics.

The challenge is that most superconductors only work at extremely low temperatures, requiring expensive cooling systems that limit widespread use.

“Once we bring the material to ambient pressure, it becomes much more accessible for scientists to use well-developed instrumentation to investigate it and further develop technologies for ambient condition operations,” said Deng, assistant professor of physics, principal investigator at the TcSUH and lead author of the paper.

New Record Breaks Decades-Old Barrier

Researchers have spent decades searching for superconducting materials with increasingly higher transition temperatures.

A major milestone came in 1987 when Chu and his collaborators discovered that a material known as YBCO could become superconducting at minus 180 degrees C, or 93 K. That discovery helped launch a global race to develop high-temperature superconductors.

In 1993, scientists discovered a mercury-based copper-oxide ceramic called Hg1223 that reached superconductivity at minus 140 degrees C, or 133 K. That material held the ambient-pressure record for more than 30 years.

The new University of Houston achievement pushes the record 18 degrees C higher to 151 K.

Pressure Quenching Creates Stable Superconductivity

The breakthrough relied on a process known as pressure quenching. While pressure techniques are commonly used in other fields, including diamond production, the method is relatively new in superconductivity research.

Researchers first subjected the material to extremely high pressure, which enhanced its superconducting behavior and increased its transition temperature. While still under pressure, the material was cooled to a carefully chosen temperature before the pressure was suddenly removed.

That rapid release effectively preserved the enhanced superconducting properties, allowing the material to remain stable even after returning to normal pressure conditions.

“Other researchers have shown that reaching superconductivity at room temperature under pressure is achievable,” Chu said. “Our method shows that it is possible to retain that state without maintaining pressure.”

A Step Toward Room-Temperature Superconductors

Although room-temperature superconductivity at ambient pressure remains out of reach, researchers say the new record is an important advance toward that goal. Room temperature is roughly 300 K, leaving a gap of about 140 degrees C from the newly achieved record.

“This finding has great potential,” Chu said. “We believe, with enough people working on it and given enough time, we should be able to realize the potential.”

Chu and Deng also contributed to a companion perspective paper funded by Intellectual Ventures and published in PNAS. The paper discusses six different approaches researchers could use to raise superconducting temperatures further, including pressure quenching.

“Room-temperature superconductivity has been seen as a ‘holy grail’ by scientists for over a century,” said Rohit Prasankumar, director of superconductivity research at Intellectual Ventures. “The UH team’s result shows that this goal is closer than ever before. However, the distance between the new record set in this study and room temperature is still about 140 degrees C. Closing this gap will require concerted, intentional efforts by the broader scientific community, including materials scientists, chemists, and engineers, as well as physicists.”

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‘When I was 14 I thought I was dying’

BBC Radio Sheffield presenter Ellie Colton’s symptoms of endometriosis started when she was a young teenager. But she wasn’t diagnosed until she was 24.

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