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Yann LeCun, Bob Langer, Jens Nielsen and Fabian Theis Join Cellular Intelligence Scientific Advisory Board

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Turing Award Laureate, Moderna Co-Founder, BioInnovation Institute CEO and Helmholtz Munich Computational Health Director to Advise on Decoding the Logic that Governs How Cells Change and Carrying That Knowledge Into Medicine

BOSTON, Sept. 21, 2026 /PRNewswire/ — Cellular Intelligence, the AI company building a universal foundation model of cell signaling, today announced that Yann LeCun, Robert “Bob” Langer, Jens Nielsen and Fabian Theis have joined its Scientific Advisory Board. Langer joins the company’s Board of Directors as an observer.

Between them, the four hold a Turing Award, more than 1,500 patents, the founding of Moderna, the leadership of the Novo Nordisk Foundation’s BioInnovation Institute and Germany’s highest research honor. Their work and expertise tie directly to the key problems Cellular Intelligence was founded to solve: learning predictive models from complex systems, and turning that understanding into therapeutic applications.

“We are bringing together people who have changed what is possible in AI, biology and medicine to tackle a shared question: can we learn the rules that govern how cells change, and use that knowledge to help patients? Yann, Bob, Jens and Fabian bring the scientific imagination and rigor this challenge demands. Their perspectives will be invaluable as we connect predictive models to experiments and, ultimately, to therapeutic development,” said Micha Breakstone, Ph.D., Co-founder and Chief Executive Officer, Cellular Intelligence.

Yann LeCun received the 2018 ACM A.M. Turing Award for foundational work in deep learning, founded Meta’s Fundamental AI Research lab (FAIR) and served as the company’s Chief AI Scientist from 2013 to 2025. He is Executive Chairman of AMI Labs, the world-model company he co-founded, and Silver Professor at New York University. His research centers on AI systems that learn how the world works and predict what happens when they act on it.

“The models that interest me learn how the world works from data and predict what happens when we act on it. Living cells present an extraordinarily rich version of that challenge. What excites me about Cellular Intelligence is the combination of new methods for large-scale cellular data collection, new phenomenological and causal models of cellular dynamics trained from this data, and a team with the ambition to connect the two. The possibility of learning principles that transfer across biological contexts is especially compelling,” said Yann LeCun, Scientific Advisory Board member.

Robert “Bob” Langer is an Institute Professor at MIT, the institution’s highest faculty rank, and the most cited engineer in history. He holds more than 1,500 issued and pending patents, and as a co-founder of Moderna and some 40 other companies, he has received the National Medal of Science, the National Medal of Technology and Innovation and the Queen Elizabeth Prize for Engineering for work that turned drug delivery and tissue engineering into medicines that reach patients.

“I have been deeply impressed by the team Cellular Intelligence has brought together. What draws me to this company is the opportunity to connect a fundamental understanding of cell behavior with the practical work of developing medicines. If we can better predict how cells respond to an intervention, we can ask more precise questions, design better experiments and open new possibilities for patients. I am excited to help the team pursue that potential,” said Robert “Bob” Langer, Scientific Advisory Board member and Board Observer.

Jens Nielsen is Chief Executive Officer of the BioInnovation Institute, the Novo Nordisk Foundation’s DKK 3 billion-plus engine for founding and scaling life-science companies in Copenhagen, and Professor of Systems Biology at Chalmers University of Technology. Author of more than 900 scientific publications and founder of several biotech companies, he was knighted by Her Majesty Queen Margrethe II of Denmark in 2019 and is a member of the U.S. National Academies of Sciences and Engineering, the Royal Swedish Academy of Sciences and the Royal Danish Academy of Sciences and Letters.

“Understanding a cell means understanding how its many systems work together. Cellular Intelligence is bringing quantitative models and carefully designed experiments to that problem at an ambitious scale. I am excited by the opportunity to help turn that understanding into more predictable cell engineering and new therapeutic possibilities,” said Jens Nielsen, Scientific Advisory Board member.

Fabian Theis is Director of the Computational Health Center at Helmholtz Munich, Scientific Director of Helmholtz AI and Professor of Mathematical Modeling of Biological Systems at the Technical University of Munich. A co-founder of the Human Cell Atlas and a member of its Board of Directors, he received the 2023 Gottfried Wilhelm Leibniz Prize, Germany’s highest research honor, for machine-learning methods that predict how cells develop and respond to drugs, and is a member of the Leopoldina, the German National Academy of Sciences, and EMBO.

“Progress in modeling cells depends on the quality of the questions our data allow us to ask. What excites me about Cellular Intelligence is its ambition to build rich experimental data and predictive models together. That combination creates an opportunity to test how well models generalize across biological contexts and to learn systematically from where they fall short,” said Fabian Theis, Scientific Advisory Board member.

The appointments follow Arjun Raj’s arrival as Chief Scientific Officer and scientific co-founder, and the company’s acquisition of STEM-PD, an investigational Parkinson’s disease cell therapy with FDA Fast Track designation, from Novo Nordisk in May 2026. Manufacturing and clinical data from the program flow back into the company’s models. The company’s investors include Khosla Ventures, the Chan Zuckerberg Initiative and Novo Nordisk.

About Cellular Intelligence

Cellular Intelligence is a clinical-stage AI company building a universal foundation model of cell signaling to understand, predict and ultimately control cellular behavior. Based in Boston, the company runs experimental biology, machine learning and therapeutic development as a single program, with regenerative medicine at its core. Learn more at www.cellularintelligence.com.

STEM-PD is an investigational therapy. Its safety and efficacy have not been established.

Media contact: Media-Relations@CellularIntelligence.com 

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SOURCE Cellular Intelligence

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Green Security Partners with CLEAR®; Expanding Trusted Identity Network to Healthcare Vendor Credentialing

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Bringing trusted identity assurance to healthcare facilities by linking vendor identities directly to their access credentials

CLEARWATER, Fla., Sept. 21, 2026 /PRNewswire-PRWeb/ — Green Security, a leader in healthcare vendor operations and intelligence, today announced a partnership with CLEAR1, CLEAR’s secure identity platform, to strengthen identity verification for vendors entering healthcare facilities. Together, CLEAR and Green Security will help organizations elevate security across the entire workplace ecosystem. By addressing the entirety of stakeholders entering and operating within a facility, the partnership enables a more comprehensive, end-to-end approach to identity, access, and trust.

The solution is designed to elevate healthcare safety and trust by authenticating credentialed vendors with advanced biometric technology, helping protect healthcare staff and patients while prioritizing privacy and security.

Green Security supports more than 8 million healthcare vendor interactions annually, making trusted identity verification a growing priority for hospitals seeking stronger access controls. CLEAR1 and Green Security have entered into a preferred partnership to extend proven identity measures to health systems designed to strengthen their physical security. Traditional printed badges can be copied, borrowed or transferred, creating a potential gap between the person wearing a badge, the identity recorded in a credentialing system and the facility access associated with that identity. Green Security’s new identity-verified Smart Badge experience will be built with CLEAR1, and is designed to address that gap by connecting a vendor’s verified identity with their Green Security mobile app, Smart Badge and credentials. Vendors simply upload a selfie to verify their identity with CLEAR in seconds to complete Green Security registration. CLEAR1 analyzes hundreds of signals—from biometrics, documents, and devices—and cross-checks them against verified data sources to confirm identity.

“Vendors are checking in roughly every 14 seconds around the clock, and hospitals shouldn’t have to wonder whether the person wearing a badge is the person who completed credentialing,” said Mickey Meehan, CEO, Green Security. “Our exclusive partnership with CLEAR sets a newer, higher standard for healthcare vendor access. It’s a simple experience for vendors, but a major leap forward in trust and accountability for the healthcare user.”

The partnership is expected to give health systems stronger assurance that:

The person entering the facility is the same individual who completed credentialing requirementsVendor badges cannot be casually shared, transferred, or re-used by unauthorized individualsIdentity verification occurs during check-in process and before a smart badge is activated, creating stronger accountability

“For more than a decade, CLEAR has helped people prove who they are in moments that matter,” said David Bardan, SVP, GM, Head of Healthcare and Govtech at CLEAR. “We’re bringing that same trusted identity experience to healthcare. Together with Green Security, we will be helping hospitals move beyond credentials alone to gain greater confidence that the right person is accessing the right place.”

The companies see this integration as a further step toward a broader identity-first approach to healthcare facility access, where verified identity can help support compliance, security, and operational efficiency across the vendor ecosystem.

The partnership is expected to enhance security and support compliance without adding unnecessary friction for supplier representatives. Hospitals will gain greater confidence in vendor access, while representatives will benefit from a streamlined activation process designed around their mobile devices. The integration is expected to be live later this year.

Additional resources:

Learn more about Green Security’s Smart Badge platformExplore additional insights on the Green Security blogFollow Green Security on LinkedIn

About Green Security

Green Security is the leading provider of healthcare vendor operations and intelligence solutions, trusted by more than 330,000 vendors at 2,000 facilities across 275+ health systems. The platform streamlines and secures every stage of vendor engagement, from onboarding and credentialing to value analysis, to OR case readiness and visitor management. By combining credentialing, access management, and real-time vendor intelligence, Green Security helps healthcare organizations verify requirements, manage facility access, and make more informed decisions about vendor engagement. Learn more at gogreensecurity.com.

Media Contact

Jennifer Usher, PR for Green Security, 1 4154120181, jennifer@usherconsultancy.com

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SOURCE PR for Green Security

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China Daily: Chinese farming model offers practical lessons for Global South

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QUZHOU, China, Sept. 21, 2026 /PRNewswire/ — In the sun-drenched fields of Quzhou county, Hebei province, African students are learning about farming not from a classroom, but with their hands in the soil.

They drive tractors, take soil samples, test planting techniques and work alongside Chinese researchers and local farmers. The experience is part of the Science and Technology Backyard (STB) program, a model pioneered by China Agricultural University that is now being adapted to agricultural challenges across the Global South.

Established in Quzhou in 2009, the STB model brings university researchers and graduate students into farming communities to conduct research, test technologies and provide services directly to farmers. Since 2019, the university has established 14 STBs in 10 countries, including Malawi and Kenya, working with farmers in more than a dozen villages.

The overseas expansion reflects a shift from simply transferring agricultural technologies to building local capacity, said Zhang Fusuo, an academician of the Chinese Academy of Engineering and initiator of the STB program.

“Our core strategy for the next decade is to take the Science and Technology Backyards overseas,” Zhang said.

Rather than replicating Chinese farming practices, the model emphasizes adapting technologies to local soil, climate, crops and economic conditions.

In Malawi, for example, STBs focus on maize, a staple crop and major source of rural livelihoods. Malawian agricultural expert Samson Mofolo, who studied at China Agricultural University, is now working with farmers on techniques including cereal-legume intercropping, improved varieties and more targeted fertilizer use.

The approach has brought tangible changes for farmers. In Kasungu, central Malawi, farmer Esnart Mwera said her family began producing more maize from a small plot after adopting improved planting practices.

“We don’t have hunger in our family,” she said, adding that higher harvests have also helped the family pay school fees and buy livestock.

Jiao Xiaoqiang, head of the China-Africa STB program, said young agricultural professionals are trained to become a bridge between scientific research and farmers. “Technology is very important for smallholder farmers, but technology alone is not enough. If we want farmers to adopt new technologies, education must come first,” he said.

Students from Ethiopia and Kenya say the training has given them ideas they can adapt at home, from safer pesticide use and mechanization to soil testing and organic fertilizer.

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Rainmaker Raises $100M Series B to Scale Low-Cost Water Production and Weather Modification

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Funding will expand the research organization behind the first validated proof of manmade precipitation.

EL SEGUNDO, Calif., Sept. 21, 2026 /PRNewswire/ — Today, Rainmaker Technology Corporation announces a $100 million Series B fundraise to grow its atmospheric research organization and drive down the cost of producing new freshwater via cloud seeding. The round includes investments from NOA VC, Upfront Ventures, DCVC, Lowercarbon Capital and Dream Ventures. Rainmaker Founder and CEO Augustus Doricko issued the following statement:

“The future of water is the future of everything. With this historic investment in weather modification technology, Rainmaker will continue to conduct frontier atmospheric research, cloud seed to end drought in the American west, and develop the tech stack that will make the earth more habitable for generations to come.”

Background

Rainmaker Technology Corporation is a next-generation cloud seeding company based in El Segundo, Calif. The company flies weather-resistant drones into winter storm clouds and releases a small amount of silver iodide, a particle that ice crystals form around. Those crystals grow heavy enough to fall as rain or snow. Rainmaker’s own radar and validation systems then measures how much additional precipitation each operation produced — the step that has historically been missing from cloud seeding.

Earlier this year, Rainmaker became the first private company in history to physically validate the results of cloud seeding operations. Over four months, the company recorded 82 unambiguous seeding signatures, distinct radar patterns that tie precipitation directly to a seeding flight. Together they account for more than 145 million verified gallons of freshwater, nearly the annual water use of 1,800 American households. In August, Rainmaker produced 19 million gallons in about three hours near Homer, Alaska, marking a significant improvement in the efficiency of the technology.

This new round of funding will support a rapid expansion of Rainmaker’s research team, which today includes atmospheric scientists, radar and satellite specialists, and material scientists. Their work is aimed at answering the questions that determine how much water an operation yields: which clouds to seed and when, how much material to release, and where precipitation should fall to do a watershed the most good for farms, ecosystems, and industry. Rainmaker will also support research at national laboratories and fund weather modification research at American universities.

Rainmaker’s cost per acre-foot of water falls sharply as the company produces more of it, and additional drone teams can operate in parallel to increase production. By the November 2026–April 2027 season, Rainmaker expects its water to cost less than most other sources of new supply, including desalination and paying farmers to leave fields unplanted. 

Water is Rainmaker’s first focus, not its last. The company intends to apply the same approach to other limits on productive land, including hail damage, and poor soil.

This announcement comes as major drought in the American west continues to dominate front page news. Snowpack after the winter of 2025-2026 was the lowest on record, and reservoirs along the Colorado River are hitting historic lows. Cloud seeding provides the most cost-effective method of delivering net new water to the interior of the United States. 

Rainmaker currently operates in Utah, Idaho, Oregon, California and Colorado and is working to expand operations throughout the American West and globally.

To learn more, visit rainmaker.com

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SOURCE Rainmaker Technology Corporation

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