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Nanoscale drug factory helps cells make medicine from within

KAUST ·

Scientists at King Abdullah University of Science and Technology (KAUST) have engineered tiny metal-organic frameworks (MOFs) to deliver a team of six proteins into living cells. Inside the cells, these proteins formed a nanoscale factory that successfully produced violacein, a natural bioactive compound with therapeutic potential. This breakthrough represents the most complex multiprotein system delivered into living cells to date and the first example of a 'protein pathway transplant'. Why it matters: This research offers an early demonstration of how future therapies might generate treatment molecules directly inside the body at disease sites, potentially leading to more precise and less toxic medical interventions.

Technology Innovation Institute’s Directed Energy Research Center Unveils First-in-GCC Region Laser-Matter Interaction Laboratory

TII ·

Technology Innovation Institute's (TII) Directed Energy Research Center (DERC) in Abu Dhabi has launched the GCC region's first Laser-Matter Interaction (LMI) Laboratory. The LMI Lab, part of DERC's Laser, Photonics, and Optoelectronics Division, will investigate laser interactions with matter. This lab will enable local research and development in laser materials processing, plasma physics, and nanotechnology, reducing reliance on foreign outsourcing. Why it matters: This regional first enhances the UAE's position in advanced technology research and expands the application of lasers across diverse industries in the GCC.

The future of sustainable cooling is being built in the Saudi Desert

KAUST ·

KAUST researchers are developing passive cooling solutions that use no electricity to address Saudi Arabia's high air conditioning electricity consumption. The technologies leverage nanotechnology, reflective materials, water evaporation, and advanced sensors to cool urban spaces, greenhouses, and buildings. One innovation involves nanotechnology that absorbs water from the air to cool electronics. Why it matters: These advancements are crucial for sustainable growth in hot climates, particularly for protecting solar panel efficiency and addressing rising global energy demands for cooling.

KAUST develops nanotechnology that improves crop yields

KAUST ·

KAUST researchers have developed a hybrid cooling technology combining nanotech plastic and biodegradable mulch that significantly enhances crop yields in arid regions. The technology lowers greenhouse temperatures by 25 degrees Celsius and doubles crop yields in tests with Chinese cabbage. The nanotech plastic coating absorbs infrared light, while the biodegradable mulch reflects sunlight to keep the soil cooler. Why it matters: This innovation promises to improve food security in arid regions like Saudi Arabia while reducing energy consumption and plastic waste associated with traditional greenhouse cooling methods.

KAUST scientists see the first steps of life in DNA unwinding

KAUST ·

KAUST researchers have captured the initial unwinding of DNA using cryo-electron microscopy and deep learning. The study details 15 atomic states describing how the Simian Virus 40 Large Tumor Antigen helicase unwinds DNA, revealing the coordinated roles of DNA, helicases, and ATP. The research elucidates the fundamental mechanisms of DNA replication, a cornerstone of growth and reproduction. Why it matters: This detailed understanding of helicase function could lead to advances in nanotechnology and our understanding of genetic processes.

Quantum Research Center’s Dr. Giampiero Marchegiani Co-authors Research Paper on Bipolar Thermoelectricity

TII ·

Dr. Giampiero Marchegiani from the Quantum Research Center (QRC) co-authored a paper in Nature Nanotechnology on bipolar thermoelectricity in Josephson junctions. The research demonstrates the generation of electrical current using heat, observing bipolar thermoelectricity where the device generates either positive or negative electrical signals without extra control. Integrating these junctions into a bipolar thermoelectric Josephson engine (BTJE) allowed the generation of up to ~140nW/mm2 of electric power at subkelvin temperatures. Why it matters: This BTJE engine may have applications in superconducting technology, potentially strengthening the UAE's position in quantum technologies.

KAUST collaboration to benefit life sciences and nanotechnology research

KAUST ·

KAUST and the Italian Institute of Technology (IIT) have signed an agreement to collaborate on research in life sciences, AI, robotics, rehabilitation technologies, and nanotechnologies. The partnership will involve joint research projects, academic exchanges, and scientific events. KAUST aims to accelerate innovation and address global challenges by integrating advanced technology and scientific expertise with IIT. Why it matters: This collaboration strengthens KAUST's international research network and supports the development of advanced technologies with potential benefits for Saudi Arabia and the global community.

Niveen Khashab named inaugural Great Arab Mind in natural sciences

KAUST ·

KAUST professor Niveen Khashab was named the first Great Arab Mind in natural sciences. The Great Arab Minds award was conceived by Sheikh Mohammed Bin Rashid al Maktoum to recognize Arabs for achievements in science, architecture, engineering, economics, literature, and medicine. Khashab, an organic chemist, was selected for contributions to nanomaterials development, synthesis, and application in medicine, industry, and agriculture. Why it matters: The award highlights KAUST's role in fostering scientific talent and contributing to advancements in nanotechnology and related fields within the Arab world.