Rejuvenated Human Eggs… Scientists Revolutionize IVF Success

Egg quality is the primary cause of IVF failure and miscarriage in older women (Reuters) 
Egg quality is the primary cause of IVF failure and miscarriage in older women (Reuters) 
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Rejuvenated Human Eggs… Scientists Revolutionize IVF Success

Egg quality is the primary cause of IVF failure and miscarriage in older women (Reuters) 
Egg quality is the primary cause of IVF failure and miscarriage in older women (Reuters) 

German scientists claim to have “rejuvenated” human eggs for the first time in an advance that they predict could revolutionize IVF success rates for older women.

The groundbreaking research suggests that an age-related defect that causes genetic errors in embryos could be reversed by supplementing eggs with a crucial protein, according to The Guardian.

When eggs donated by fertility patients were given microinjections of the protein, they were almost half as likely to show the defect compared with untreated eggs.

If confirmed in more extensive trials, the approach has the potential to improve egg quality, which is the primary cause of IVF failure and miscarriage in older women.

The decline in egg quality is the main reason IVF success rates drop steeply with female age and is why the risk of chromosome disorders such as Down’s syndrome increases with maternal age.

“Overall we can nearly halve the number of eggs with [abnormal] chromosomes. That’s a very prominent improvement,” said Prof Melina Schuh, a director at the Max Planck Institute for Multidisciplinary Sciences in Göttingen and a co-founder of Ovo Labs, which is aiming to commercialize the technique.

“Most women in their early 40s do have eggs, but nearly all of the eggs have incorrect chromosome numbers,” added Schuh, whose lab has been investigating egg biology for the past two decades. “This was the motivation for wanting to address this problem.”

The latest approach targets a vulnerability in eggs linked to a process called meiosis, in which sex cells (eggs or sperm) jettison half their genetic material so they can join together to make an embryo.

In eggs, this requires 23 pairs of X-shaped chromosomes to align along a single axis in the cell. On fertilization, the cell divides causing the chromosome pairs to be – ideally – neatly snapped down their centers to create a cell with precisely 23 single chromosomes from the mother, the rest being delivered by the sperm.

However, in older eggs the chromosome pairs tend to loosen at their midpoint, becoming slightly unstuck or detaching entirely before fertilization.

In this scenario, the X-shaped structures fail to line up properly and move around chaotically in the cell, so when the cell divides they are not snapped symmetrically.

This results in an embryo with too many or too few chromosomes.

Schuh and colleagues previously found that a protein, Shugoshin 1, which appears to act as a glue for the chromosome pairs, declines with age. In the latest experiments in mouse and human eggs, they found that microinjections of Shugoshin 1 appeared to reverse the problem of chromosome pairs separating prematurely.

Using eggs donated by patients at the Bourn Hall fertility clinic in Cambridge, they found that the number showing the defect decreased from 53% in control eggs to 29% in treated eggs. When they looked only at eggs from women over 35 years of age, a similar trend was seen (65% compared with 44%), although this result was not statistically significant, which the scientists said was probably due to them only having treated nine eggs in this age range.

Dr Agata Zielinska, a co-founder and co-CEO of Ovo Labs, said: “Currently, when it comes to female factor infertility, the only solution that’s available to most patients is trying IVF multiple times so that, cumulatively, your likelihood of success increases. What we envision is that many more women would be able to conceive within a single IVF cycle.”

The findings will be presented at the British Fertility Conference in Edinburgh on Friday and have been published as a preprint paper on the Biorxiv website.



Best Time to Take Vitamin D for Muscle Strength

Vitamin D tablets (file photo – AP)
Vitamin D tablets (file photo – AP)
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Best Time to Take Vitamin D for Muscle Strength

Vitamin D tablets (file photo – AP)
Vitamin D tablets (file photo – AP)

Vitamin D is an essential nutrient that plays a central role in both bone and muscle health.

With growing interest in dietary supplements, a key question arises: what is the best time to take vitamin D to support muscle strength?

This article reviews the latest scientific evidence on vitamin D timing and its impact on muscle health, offering practical recommendations based on recent research.

The optimal time to take vitamin D is with or after a meal that contains fat- preferably in the morning or at lunchtime. Taking it with food enhances absorption, supporting bone health and contributing more effectively to muscle strength. It is also advisable to take it at the same time each day for best results.

How Vitamin D Works in Muscles

Vitamin D is a fat-soluble vitamin, meaning its absorption in the intestine depends heavily on dietary fat. When taken with a fat-containing meal, micelles form, facilitating its transport across the intestinal wall into the bloodstream. It then reaches muscle cells, where it helps promote muscle protein synthesis and improve muscle fiber function.

Scientific Evidence on Timing

A randomized controlled trial published in Nutrients (2022) found that taking a combination of whey protein and vitamin D3 either before sleep or after waking led to beneficial increases in muscle mass in young men undergoing resistance training.

Importantly, no statistically significant differences were found between the groups in terms of muscle gains, suggesting that vitamin D’s benefits for muscle health are not dependent on a specific time of day, but rather on consistent intake.

Effects on Sleep and Melatonin

Some research indicates a link between vitamin D levels and sleep quality, with low levels associated with a higher risk of sleep disorders.

Certain recommendations suggest that taking vitamin D in the evening may interfere with melatonin production—the hormone that regulates the sleep-wake cycle. For this reason, experts generally recommend taking vitamin D in the morning or at midday to avoid potential sleep disruption.

Vitamin D and Athletic Performance

A systematic review published in the Journal of Human Sport and Exercise (2025), analyzing 13 studies on vitamin D and athletic performance, found:

  • Vitamin D supplementation consistently increases blood levels in athletes
  • Noticeable improvements in performance among those initially deficient
  • Mixed effects on muscle recovery and blood markers across studies
  • Seasonal fluctuations in vitamin D levels highlight the importance of supplementation timing

Taking vitamin D with main meals and maintaining daily consistency are key to maximizing its benefits for muscle health. Consulting a healthcare provider is recommended to determine the appropriate dosage based on individual health status and blood levels.


Taif Rose Harvest Season Produces over 550 Million Roses

Rose farms are spread across the highlands of Al-Hada and Al-Shafa - SPA
Rose farms are spread across the highlands of Al-Hada and Al-Shafa - SPA
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Taif Rose Harvest Season Produces over 550 Million Roses

Rose farms are spread across the highlands of Al-Hada and Al-Shafa - SPA
Rose farms are spread across the highlands of Al-Hada and Al-Shafa - SPA

Taif rose farms are witnessing a notable abundance of production during the current harvest season, amid favorable climatic conditions that have contributed to improved crop quality and increased quantities. Taif Governorate is home to more than 910 farms, comprising around 1.14 million rose shrubs, which produce approximately 550 million roses annually during a season lasting around 45 days.

Rose farms are spread across the highlands of Al-Hada and Al-Shafa, between the slopes of the Sarawat Mountains, in a natural setting characterized by moderate temperatures and abundant water, with fertile valleys that create an ideal environment for Taif roses, SPA reported.

Farmer Khalaf Jaber Al Tuwairqi stated that moderate weather and the availability of irrigation sources contributed to increased flower density and quality this season, thereby positively impacting harvesting and production. He noted that farms produce thousands of roses daily during peak periods, with around 12,000 roses required to produce one unit of rose oil, one of the world's most precious aromatic oils.

Tourism guide Abdullah Al Zahrani affirmed that the abundant rose production has boosted tourism activity in Taif, as rose farms in Al-Hada and Al-Shafa attract growing numbers of visitors during the harvest season to witness harvesting and distillation stages and learn about this traditional craft that forms part of the governorate's agricultural identity.


Artemis Astronauts to Study the Moon’s Surface Using Mainly Their Eyes

 This photo provided by NASA shows the moon seen from a window on the Orion spacecraft Integrity during the Artemis II mission on Friday, April 3, 2026. (NASA via AP)
This photo provided by NASA shows the moon seen from a window on the Orion spacecraft Integrity during the Artemis II mission on Friday, April 3, 2026. (NASA via AP)
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Artemis Astronauts to Study the Moon’s Surface Using Mainly Their Eyes

 This photo provided by NASA shows the moon seen from a window on the Orion spacecraft Integrity during the Artemis II mission on Friday, April 3, 2026. (NASA via AP)
This photo provided by NASA shows the moon seen from a window on the Orion spacecraft Integrity during the Artemis II mission on Friday, April 3, 2026. (NASA via AP)

More than 50 years after humans first flew around the Moon, Artemis astronauts will repeat the feat on Monday and use the most basic instrument to study it: their eyes.

Despite the technological advancements since the Apollo missions, NASA still relies on the eyesight of its astronauts to learn more about the Moon.

"The human eye is basically the best camera that could ever or will ever exist," Kelsey Young, the lead scientist for the Artemis 2 mission, told AFP.

"The number of receptors in the human eye far outweighs what a camera is able to do."

Although modern cameras may be superior to human eyesight in some respects, "the human eye is really good at color, and it's really good at context, and it's also really good at photometric observations," Young said.

Humans can understand how lighting changes surface details, like how angled lighting reveals texture but reduces visible color.

In just the blink of an eye, humans can detect a subtle color shift and understand how lighting changes the contours of a landscape like the Moon's surface, details which are scientifically useful but difficult to ascertain from photos or videos.

Artemis 2 astronaut Victor Glover, who pilots the Orion spacecraft, said before liftoff this week that eyes were a "magical instrument."

- Field scientists -

To ensure they made the most of their proximity to the Moon, the four Artemis 2 crew members underwent more than two years of training.

Young said the goal was to turn the astronauts into "field scientists" via a combination of classroom lessons, geological expeditions to Iceland and Canada, and multiple simulated flybys of the Moon, just like the mission they are on.

The three American astronauts -- commander Reid Wiseman, pilot Glover and mission specialist Christina Koch -- along with Canadian astronaut Jeremy Hansen, all had to memorize the Moon's "Big 15," or the 15 features of the Moon that will allow them to orient themselves.

Using an inflatable Moon globe, they practiced seeing how the angle of the sun changed the colors and textures of the lunar surface, honing their observation and note-taking skills for the big moment.

"I can tell you, they are excited and they are ready," Young said with a smile.

- 'About the size of a basketball' -

The Artemis astronauts' mission is to study certain lunar sites and phenomena as part of 10 objectives chosen by NASA and ranked in priority order based on scientific interest.

During the Moon flyby, which will last for several hours, the crew will have to observe the celestial body with their naked eyes, along with cameras they have on board.

Noah Petro, head of NASA's planetary geology lab, told AFP that the Moon will look to the astronauts "about the size of a basketball held at arm's length."

"The question I'm most interested in is, are they going to be able to see color on the lunar surface," Petro said.

"I don't mean rainbow colors, but you know, dark browns or tan colors because that tells us something about the composition, and that tells us something about the history of the Moon."

David Kring of the Lunar and Planetary Institute told AFP he is not expecting any earth-shattering discoveries because of the multiple lunar probes and high-resolution images of the Moon taken since the Apollo missions.

Nevertheless, "having astronauts describing what they're seeing... That is an occurrence that at least two generations of people on Earth have never heard before," he said.

The Artemis 2 flyby will be broadcast live by NASA, save for a period for when the spacecraft is behind the moon.

"Just listening to their practice descriptions in the mission simulations... It brings chills up my arms," Young said.

"I am absolutely confident that these four people are going to deliver some incredible descriptions."