KAUST Stem Cell Research Advances Understanding of Early Human Development

Researchers at King Abdullah University of Science and Technology (KAUST) developed a new method to improve the formation and control of stem cell-derived embryo models. (SPA)
Researchers at King Abdullah University of Science and Technology (KAUST) developed a new method to improve the formation and control of stem cell-derived embryo models. (SPA)
TT

KAUST Stem Cell Research Advances Understanding of Early Human Development

Researchers at King Abdullah University of Science and Technology (KAUST) developed a new method to improve the formation and control of stem cell-derived embryo models. (SPA)
Researchers at King Abdullah University of Science and Technology (KAUST) developed a new method to improve the formation and control of stem cell-derived embryo models. (SPA)

Researchers at King Abdullah University of Science and Technology (KAUST), through the university’s Center of Excellence for Smart Health (KCSH), have developed a new method to improve the formation and control of stem cell-derived embryo models, enabling unprecedented insights into the early stages of human development.

These early stages of human development are essential for reproductive health, and disturbances during this period can lead to infertility, early miscarriage, or developmental disorders. Despite decades of research, the mechanism that initiates and drives the formation of the human embryo is still not fully understood, reported the Saudi Press Agency on Thursday.

To study this process, the research team used blastoids derived from human stem cells. These are laboratory models that mimic key features of early human development, enabling the observation of processes that would otherwise be inaccessible in a controlled laboratory environment.

Using advanced imaging techniques and molecular analysis, the researchers tracked how cavity formation occurs alongside cellular reorganization.

The results show how molecular activities within cells generate physical forces necessary for the formation of early embryonic structures, providing a direct link between intracellular processes and mechanisms of embryonic organization.

When the activity of the V-ATPase pump is inhibited, fluid accumulation no longer occurs, and the blastocoel cavity fails to form properly. By improving the accuracy and reliability of human embryo models, this research offers a powerful new platform for studying such conditions and supporting research in reproductive medicine.



Red Sea Destination Announces Opening of Global Resort on Shura Island

The resort offers a comprehensive wellness retreat experience through 180 upscale rooms, suites, and villas - SPA
The resort offers a comprehensive wellness retreat experience through 180 upscale rooms, suites, and villas - SPA
TT

Red Sea Destination Announces Opening of Global Resort on Shura Island

The resort offers a comprehensive wellness retreat experience through 180 upscale rooms, suites, and villas - SPA
The resort offers a comprehensive wellness retreat experience through 180 upscale rooms, suites, and villas - SPA

Red Sea Global announced that Miraval The Red Sea will begin welcoming guests starting May 15. The launch marks the first international expansion of the luxury “Miraval” brand outside the United States, reinforcing the status of the Red Sea destination as a leading global tourism hub, especially after occupancy rates across the destination reached 82% during the final days of Ramadan, SPA reported.

The resort offers a comprehensive wellness retreat experience through 180 upscale rooms, suites, and villas.

CEO of Red Sea Global John Pagano stated that attracting a prestigious brand such as “Miraval” reflects the strong global confidence in the Kingdom’s tourism offerings.

He noted that the momentum witnessed by the destination has been clearly reflected in strong occupancy rates and early bookings for the Eid season.

Resort guests will enjoy a variety of activities and culinary experiences inspired by locally sourced ingredients.


Czech Police Seek Thief who Stole Saint's Skull


Police officers patrol the Czech-Slovak green border near Stary Hrozenkov, Czech Republic, September 29, 2022. REUTERS/Radovan Stoklasa
Police officers patrol the Czech-Slovak green border near Stary Hrozenkov, Czech Republic, September 29, 2022. REUTERS/Radovan Stoklasa
TT

Czech Police Seek Thief who Stole Saint's Skull


Police officers patrol the Czech-Slovak green border near Stary Hrozenkov, Czech Republic, September 29, 2022. REUTERS/Radovan Stoklasa
Police officers patrol the Czech-Slovak green border near Stary Hrozenkov, Czech Republic, September 29, 2022. REUTERS/Radovan Stoklasa

An unidentified thief stole the skull of Czech saint Zdislava of Lemberk from a glass shrine in a northern Czech church, causing "incalculable" historic damage, police said late on Tuesday.

St Zdislava of Lemberk (estimated 1220-1252), a noblewoman known for her merciful and charitable deeds, was canonized by Pope John Paul II in 1995.

The theft in the basilica of St Lawrence and St Zdislava in the northern town of Jablonne v Podjestedi was committed after 1600 GMT, said police spokeswoman Dagmar Sochorova.

"An unknown culprit broke a shrine in which the skull was stored and ran away from the site," AFP quoted her as saying.

Police published "low quality footage" depicting the culprit clad "probably" in black and wearing "probably" white shoes, and asked the public for help.

"The value of the stolen skull is currently being investigated. However, its historic value is obviously incalculable," Sochorova added.

Prague Archbishop Stanislav Pribyl, who also heads the Litomerice diocese in charge of the Jablonne church, said the news was "devastating".

Placed on an altar in a side chapel, the skull "was the subject of adoration for pilgrims travelling to Jablonne where Zdislava lived and worked more than 750 years ago," he said.

"I can't believe that someone commits a daylight robbery to steal from a church a relic whose value is above all historic," added Pribyl, who was named Prague archbishop in February.


Saudi Arabia: KAUST Study Reveals How Plants Protect Photosynthesis During Extreme Heat

The research team identified a protective mechanism within chloroplasts. SPA
The research team identified a protective mechanism within chloroplasts. SPA
TT

Saudi Arabia: KAUST Study Reveals How Plants Protect Photosynthesis During Extreme Heat

The research team identified a protective mechanism within chloroplasts. SPA
The research team identified a protective mechanism within chloroplasts. SPA

King Abdullah University of Science and Technology (KAUST) has completed a research study identifying how plants protect photosynthesis under high temperatures, an outcome that could support the development of more resilient crops in desert climates.

The research team identified a protective mechanism within chloroplasts, lead researcher Professor Monika Chodasiewicz said, noting that it helps preserve and restore the plant’s ability to convert sunlight into chemical energy.

The findings are particularly significant, as heat is one of the main threats to plant productivity, and protecting photosynthesis is essential for sustaining plant growth and crop yields, Chodasiewicz added.

She explained that the chlorophyll protein forms protective granules, revealing their previously unclear functional significance. The findings provide new insights that could be applied for future crop breeding and biotechnology, Chodasiewicz said.

The results also contribute to the emerging field of phase-separated biomolecular condensates in plant biology, while supporting broader priorities related to sustainable agriculture, climate adaptation, and food security.