King Abdullah University of Science and Technology (KAUST) has launched namya, a new venture established in collaboration with SEQUENCIVE, a Riyadh-based venture builder. namya will commercialize KAUST's MiZax technology, which delivers advanced bioactive products to farmers to enhance crop yield and resilience while reducing input requirements. MiZax is the result of over a decade of plant science research at KAUST, focusing on natural metabolites that regulate plant growth, and has shown promise in reducing fertilizer needs in trials. Why it matters: This venture represents a significant step in translating Saudi Arabian scientific research into practical agricultural solutions, directly addressing national food security challenges and promoting sustainable farming practices.
Researchers at King Abdullah University of Science and Technology (KAUST) have developed a novel genome engineering method for precisely inserting large pieces of genetic information into plants. Published in Nature Biotechnology, this approach allows for targeted placement of large genes into plant genomes without creating DNA breaks, overcoming a long-standing challenge in the field. The method was successfully demonstrated in both tobacco and rice, opening new possibilities for agricultural biotechnology and synthetic biology. Why it matters: This advance could enable the development of more complex traits in crops for improved resilience and sustainable agriculture, and facilitate the use of plants as scalable platforms for producing therapeutics and other valuable compounds.
Researchers at King Abdullah University of Science and Technology (KAUST) have developed a wearable microneedle patch capable of continuously measuring drug levels beneath the skin. The device wirelessly transmits real-time data to a smartphone, using tiny microneedles to access interstitial fluid and electrochemical biosensors. The technology was successfully demonstrated by tracking vancomycin concentrations in preclinical studies. Why it matters: This innovation could enable more precise and personalized medicine dosing by providing continuous insight into drug pharmacokinetics, improving safety and efficacy compared to current periodic blood tests.
Researchers at King Abdullah University of Science and Technology (KAUST) have developed a new technology allowing digital devices to verify their identity using unique physical characteristics. Published in Nature Electronics, the system employs tiny laser devices to generate distinct digital fingerprints, combined with artificial intelligence for instant recognition and authentication. This approach aims to offer a faster, more secure, and energy-efficient alternative to conventional passwords and security keys. Why it matters: This research provides a novel method for securing large digital networks, cloud computing platforms, and AI infrastructure, addressing a critical challenge in an expanding digital ecosystem.
Researchers at King Abdullah University of Science and Technology (KAUST) have developed new methods to engineer porous materials, specifically Metal-Organic Frameworks (MOFs), for enhanced gas storage and energy-efficient gas separations. Published in Nature Chemistry, their approach involves the controlled removal of temporary structural components within MOFs, leading to larger, more uniform pores and significantly increased storage capacity. This method resulted in materials with some of the highest reported gravimetric methane storage capacities to date. Why it matters: This advancement could lead to more efficient materials for industrial gas storage and processing, supporting Saudi Arabia's and global transitions to cleaner energy systems.
Terraxy, a startup spun out of King Abdullah University of Science and Technology (KAUST), has secured $3 million in a Seed-2 funding round led by Wa’ed Ventures, the venture capital arm of Aramco, with participation from KAUST. This funding will support the scaling of Terraxy's proprietary soil enhancer, Carbosoil, from pilot to industrial production and enable the establishment of a 30,000-square-meter commercial facility in Al Zulfi, Saudi Arabia. Carbosoil improves plant growth and yield by up to 70% while enhancing water and nutrient retention in sandy soils for landscaping and carbon capture. Why it matters: This investment highlights Saudi Arabia's strategy to commercialize deep-tech research from local institutions to achieve national sustainability, food security, and desert greening objectives.
Scientists at King Abdullah University of Science and Technology (KAUST) have developed a new stain-free imaging platform using engineered silicon slides to analyze tissue samples, aiming for quicker and more consistent cancer diagnostics. This platform removes the need for conventional chemical staining, reducing preparation time by approximately 40-50% and improving consistency. In validation tests with 120 colorectal tissue samples, the technology achieved a 99% agreement rate with traditional pathology assessments. Why it matters: This innovation could significantly streamline cancer diagnosis workflows, reduce variability, and generate standardized data crucial for the advancement of AI-assisted diagnostic tools in healthcare.
Researchers at King Abdullah University of Science and Technology (KAUST) have developed a nanostructured solar panel coating designed to maintain performance in dusty, arid environments while capturing atmospheric moisture. Outdoor tests at KAUST over six months demonstrated minimal performance loss on treated panels, contrasting with significant declines in uncoated panels. The coating also condenses water vapor at night, which then rolls off, cleaning the panel and providing collected water sufficient for small-scale irrigation. Why it matters: This innovation offers a sustainable solution for improving solar energy efficiency and providing a supplementary water source in water-scarce regions, addressing critical challenges for renewable energy deployment in the Middle East.