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Next Generation of Scientific Leaders Awarded More Than $7 Million at the 2026 Regeneron International Science and Engineering Fair

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Regeneron (NASDAQ:REGN) and Society for Science announced winners of the 2026 Regeneron International Science and Engineering Fair, the world’s largest pre-college STEM competition.

More than 1,700 students from over 67 countries received over $7 million in awards, with top prizes from $10,000 to $100,000 supporting education and continued research.

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News Market Reaction – REGN

-2.05%
-2.05% Session close to close

In the May 15 session, REGN declined 2.05%, reflecting a moderate negative market reaction.

Data tracked by StockTitan Argus on the day of publication.

Market Context

This announcement underscores Regeneron’s emphasis on cultivating future scientific talent, with mor...
Analysis

This announcement underscores Regeneron’s emphasis on cultivating future scientific talent, with more than $7 million in 2026 ISEF awards and over 1,700 finalists from more than 67 regions. It complements the company’s broader pledge of over $300 million to STEM competitions from 2017 to 2036. Investors tracking the story may watch how these long-term education and ESG initiatives interact with recent clinical, regulatory and earnings developments when assessing the company’s overall trajectory.

Key Figures

Top Innovator Award: $100,000 Total ISEF awards: More than $7 million Young Scientist Awards: $75,000 each +5 more
8 metrics
Top Innovator Award $100,000 George D. Yancopoulos Innovator Award at Regeneron ISEF 2026
Total ISEF awards More than $7 million Awards and scholarships for 2026 finalists
Young Scientist Awards $75,000 each Regeneron Young Scientist Awards for two finalists
STEM program support More than $300 million Regeneron support for ISEF and STS from 2017 to 2036
Finalists More than 1,700 students Young STEM students participating in Regeneron ISEF 2026
Pollutant removal Up to 80% Laboratory removal of 6PPD-quinone by jute-based filters
Energy reduction 85% less energy Energy needed to produce pollutant-removing filters vs alternatives
Seizure recurrence reduction 70.1% Reduction in seizure recurrence in worm model system

Historical Context

5 past events · Latest: May 08 (Positive)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
May 08 ESG index recognition Positive +0.8% Inclusion in Dow Jones Best-in-Class responsibility indices and new 2030 ESG goals.
May 05 Clinical trial update Positive -1.0% Dupixent Phase 4 EoE data showing improved esophageal function versus placebo.
Apr 29 Quarterly earnings Positive -6.2% Q1 2026 revenue and EPS growth with key product strength and new buyback authorization.
Apr 23 Drug pricing agreement Positive +2.6% U.S. government agreement to lower certain drug costs and expand access, plus investment plan.
Apr 23 FDA gene therapy approval Positive +2.6% FDA accelerated approval of Otarmeni gene therapy for genetic hearing loss, provided free in U.S.

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

Recent REGN news often skews positive, but reactions have been mixed, with some strong fundamentals and clinical wins met by both gains and selloffs.

Recent Company History

Over the past few months, Regeneron has highlighted ESG leadership, clinical progress, earnings growth and major regulatory milestones. On Apr 23, FDA accelerated approval for Otarmeni and a U.S. drug-pricing agreement both saw shares rise about 2.6%. Q1 2026 results on Apr 29 showed strong revenue and product performance but the stock fell 6.21%. A positive Dupixent Phase 4 update on May 5 coincided with a -0.98% move. Today’s STEM-focused philanthropy release fits the broader theme of long-term ESG and science investment, similar to the May 8 responsibility index recognition.

Key Terms

markov chain monte carlo, topology, galois theory, radio frequency tag, +4 more
8 terms
markov chain monte carlo technical
"Hikaru's simulation software uses a statistical method called Markov Chain Monte Carlo."
A Markov Chain Monte Carlo (MCMC) method is a way to simulate many possible outcomes from a complex probability model by taking a sequence of random steps that gradually explores the most likely scenarios, like a hiker using many short, guided walks to map an unexplored landscape. For investors it matters because MCMC helps quantify uncertainty and estimate probabilities for pricing, risk, and forecasts when formulas are too complex to solve directly, improving decisions under uncertainty.
topology technical
"He combined ideas from topology, symmetry and Galois theory."
The arrangement or pattern of how components are connected or organized, such as systems, networks, supply chains, or data flows. Investors care because the way parts are linked affects reliability, risk and resilience—like how a neighborhood’s roads determine traffic flow, a company’s topology determines how quickly information travels, where failures may concentrate and how disruptions can ripple through value chains.
galois theory technical
"He combined ideas from topology, symmetry and Galois theory."
Galois theory is a branch of mathematics that studies the hidden symmetries and relationships among the solutions of polynomial equations, like mapping how changing one piece forces changes in others. For investors it matters because those same ideas underpin cryptography, error-correcting codes, and some advanced algorithms used in trading and risk models—think of it as the abstract blueprint that helps secure data and ensure complex financial computations behave as expected.
radio frequency tag technical
"Kevin printed a radio frequency tag on plastic materials."
A radio frequency tag is a small electronic label that communicates wirelessly with a reader to identify and track an item, like a wireless name tag that can be scanned without line-of-sight. For investors, these tags matter because they improve inventory accuracy, speed up logistics, reduce shrinkage and manual labor, and enable better data-driven decisions about sales, supply chains and asset utilization—factors that can lower costs and boost margins.
mxene technical
"He made the tag from a conductive material called MXene that can transmit radio frequency signals."
Mxenes are a family of extremely thin, sheet-like materials made from layers of metal combined with carbon or nitrogen, similar in feel to graphene but with metallic conductivity and flexible chemistry. They matter to investors because their unique electrical, thermal and surface properties could improve batteries, sensors, coatings and electronic components, potentially lowering costs or enabling new products—think of them as tunable, high-performance metal “sheets” that companies can fold into many commercially valuable uses.
astrocytes medical
"Nervous system diseases can disrupt calcium signaling in brain cells called astrocytes."
Star-shaped brain cells that support and maintain neurons by cleaning up waste, regulating chemical balance, and helping control blood flow; think of them as the brain’s support staff and maintenance crew. They matter to investors because drugs or diagnostics that target these cells can change the development path and commercial potential of treatments for neurological and psychiatric disorders, affecting the valuation and risk of biotech and pharmaceutical companies.
trpv4 medical
"She confirmed that a channel in the astrocytes called TRPV4 was responsible for the changes."
TRPV4 is a protein in cell membranes that works like a tiny gate controlling the flow of calcium and other charged particles into cells; it helps cells sense pressure, temperature and fluid balance. Investors care because drugs or diagnostics that target TRPV4 can change disease outcomes for conditions like pain, lung or vascular disorders, so it is a potential source of therapeutic value, clinical trial risk, safety signals and regulatory scrutiny.
gene editing medical
"Evan used gene editing to add an ultrasound-sensitive channel into the brain cells of a worm."
Gene editing is a set of laboratory techniques that change the DNA inside living cells to add, remove, or alter specific genes, like using precise 'cut-and-paste' tools to edit an instruction manual for a living organism. It matters to investors because successful edits can produce new therapies, improve agricultural products, or create commercial advantages; progress, safety, regulatory approvals, and patent control all affect a company’s value and risk profile.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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Hikaru Kuribayashi, 17, receives $100,000 Top Award for his creation of a simulation program to understand complex folding at the world’s largest pre-college STEM competition.

TARRYTOWN, N.Y. and WASHINGTON, May 15, 2026 (GLOBE NEWSWIRE) -- Regeneron Pharmaceuticals, Inc. (NASDAQ: REGN) and Society for Science (the Society) announced that Hikaru Kuribayashi, 17, of Sapporo, Japan won the $100,000 George D. Yancopoulos Innovator Award at the Regeneron International Science and Engineering Fair 2026 (Regeneron ISEF), the world’s largest precollege science and engineering competition.

Key Takeaways:

  • This year’s finalists received more than $7 million in awards based on their projects’ creativity, innovation, and depth of scientific inquiry.
  • The top winners were honored at the Phoenix Convention Center in Phoenix, Arizona during two award ceremonies: the Special Awards Ceremony on May 14, and the Grand Awards Ceremony on May 15.
  • Top prizes ranged from $10,000 to $100,000 and were awarded to support students’ education and continued research, investing in the next generation of scientific leaders.
  • The competition featured more than 1,700 young STEM students, representing more than 67 countries, regions, and territories.
  • Hikaru Kuribayashi, 17, of Sapporo, Japan won first place and received the $100,000 George D. Yancopoulos Innovator Award for his creation of a simulation program to understand complex folding, like in origami. The award is named in honor of George D. Yancopoulos, the pioneering drug researcher and Regeneron co-Founder, Board co-Chair, President and Chief Scientific Officer.
  • Lakshmi Agrawal, 18, of Bellevue, Washington, and Nikola Veselinov, 17, of Sofia, Bulgaria each received the Regeneron Young Scientist Awards of $75,000, Agrawal for a sponge that removes salmon-killing pollutants from water, and Veselinov for describing a new theorem in mathematics that describes the conditions under which certain equations cannot be solved using basic math functions.
  • Other top prizes went to projects in Environmental Engineering, Technology Enhances the Arts, and Materials Science.

"Congratulations to the winners of this year’s Regeneron International Science and Engineering Fair," said Maya Ajmera, President and CEO of Society for Science and Executive Publisher of Science News. “These students never fail to inspire me. They come from different backgrounds, different disciplines, and different corners of the world, and they are taking on some of our most urgent challenges with rigor, imagination, and determination. At a moment when bold thinking is needed most, they are proof of what’s possible. I couldn’t be more optimistic about the future."

Regeneron ISEF brings together the world’s most promising young scientists and engineers to showcase research with real-world impact. Through this competition, Regeneron and the Society are fostering the next generation of STEM leaders who are helping to solve real-world challenges to improve our world.

“Congratulations to the extraordinary young scientists of Regeneron ISEF 2026. My own scientific journey began in high school, supported by great teachers, driven by a fearless youthful belief that I could cure my grandmother's disease, and inspired by the excitement and challenge of science competitions,” said George D. Yancopoulos, M.D., Ph.D., co-Founder, co-Chairman, President and Chief Scientific Officer of Regeneron. “I continue to believe that the best hope for overcoming the greatest threats facing humanity lies in inspiring brilliant young minds to take on these challenges. That's why Regeneron proudly invests hundreds of millions of dollars in programs like ISEF and the Science Talent Search. We’re celebrating not only what these students have already achieved, but the extraordinary impact we know they’ll have next."

  • Hikaru Kuribayashi, 17, of Sapporo, Japan, won first place and received the George D. Yancopoulos Innovator Award of $100,000 for his work to predict how materials can fold in complex ways. He created a simulation program to understand complex folding, like in origami. Current methods for predicting folding can either only trace one path at a time or fail to test all the possibilities. Hikaru's simulation software uses a statistical method called Markov Chain Monte Carlo. This method samples many possible scenarios and uses those patterns to estimate the most probable answers. It allows the simulation to examine all possibilities at once in a single run. Hikaru's software predicted known solutions, such as the folding of a ladybug wing. This program could help design devices that need to be packed into small spaces and unfolded later, such as solar sails for satellites, medical devices or emergency pop-up shelters.
  • Lakshmi Agrawal, 18, of Bellevue, Washington, received the Regeneron Young Scientist Award of $75,000 for a sponge that removes salmon-killing pollutants from water. When adult coho salmon spawn, they return to the urban streams of Washington’s Puget Sound region. In some streams, up to 80% of these fish die before spawning. These streams are polluted with a chemical from tires called 6PPD-quinone. Previous work found that 6PPD-quinone was a primary cause of these salmon deaths. To remove the pollutant from water, Lakshmi created sponge-like filters from jute plant waste. In laboratory tests of water with tire particles, she showed the filters removed up to 80% of the pollutant. It can also remove other heavy metals and particles. It also naturally breaks down in the environment. Compared with current alternatives, Lakshmi’s solution required 85% less energy to produce and reduced costs by about 98%. Her work may lead to a scalable way to protect aquatic ecosystems and drinking water from tire-related contaminants.
  • Nikola Veselinov, 17, of Sofia, Bulgaria, received the Regeneron Young Scientist Award of $75,000 for describing a new theorem in mathematics. Mathematicians have found that equations that follow f(x) = a can be solved with basic math functions, except in a few specific cases. Nikola analyzed those isolated cases of unsolvability to find a common thread. He combined several advanced mathematical concepts. He combined ideas from topology, symmetry and Galois theory. He used these approaches to analyze when equations become impossible to solve exactly. By doing this, he described the conditions under which the equation f(x) = a cannot be solved using basic math functions. His work may impact equations used in physics and in describing how objects move through space. 

Other Regeneron ISEF top honors include:

  • Evan Budz, 15, of Ontario, Canada, received the Gordon E. Moore Award for Positive Outcomes for Future Generations of $50,000 for making an AI-powered imaging robot to find and measure tiny pieces of plastic in water. Microplastics threaten animals and aquatic ecosystems worldwide. Current ways to measure microplastics are costly and hard to implement. To create a faster and more practical solution, Evan designed and built an underwater 3D holographic camera. The camera is mounted on a self-propelled robot that swims through the water like a sea turtle. He also trained AI models to find pieces of plastic smaller than a red blood cell in the underwater images. His models were 94% accurate at telling microplastics apart from other particles. He tested it in 10 bodies of water, scanning more than 80,000 3D images for plastic particles and microorganisms. His work could make it easier and faster to monitor water sources for microplastics.
  • Anusha Arora, 15, of Bellevue, Washington, received the F. Thomson Leighton and Bonnie Berger Family Prize for STEM Excellence of $50,000 for her music therapy device. Although music therapy is a recognized approach for supporting mental health, access is limited. Cost, provider shortages and lack of insurance coverage make music therapy inaccessible. To combat this, Anusha created a portable music therapy device. Her platform delivers tailored, adaptive music based on input from finger sensors. The platform combines 11 AI programs to detect emotions and generate music in real time. Across several experiments, people using the device showed reductions in stress and anxiety. Users also stayed more engaged with the therapy sessions. The platform could make it easier for people to access music therapy, which can help reduce stress, anxiety and depression.
  • Kevin Sun, 17, of Andover, Massachusetts, received the Craig R. Barrett Award for Innovation of $10,000 for developing a new way to sort plastic recyclables using a dissolvable tag. One of the major challenges with plastic recycling is inaccurate sorting of the different plastic types. Colored plastic can also be hard to sort for proper recycling. To improve sorting accuracy, Kevin printed a radio frequency tag on plastic materials. These materials are similar to those used in plastic manufacturing. The tag acts like a wireless barcode, identifying the plastic type for sorting purposes. He made the tag from a conductive material called MXene that can transmit radio frequency signals. The tag is covered by a thin protective coating that dissolves in alkaline water. Experiments showed that both materials quickly break down during the hot washing step already used in recycling plants. Because they wash away, the plastic can be recycled without contamination. Kevin’s experiments showed the printed tag remained readable for at least six weeks. This practical approach offers a potential way to improve plastic recycling.
  • Illaria Liedtke, 17, of Rye, New York, received the H. Robert Horvitz Prize for Fundamental Research of $10,000 for studying brain cells using magnets. Nervous system diseases can disrupt calcium signaling in brain cells called astrocytes. Researchers increasingly believe astrocytes play an important role in brain disease, but there are few ways to precisely control them remotely. Inspired by the physics of magnetic levitation, Illaria trialed a way to use magnets to modify signals sent from astrocyte cells. To do this, she first created a material that responds to magnetic fields. In the lab, she added the material to astrocyte cells. When she exposed the cells to magnets, their calcium signaling, which the cells use to communicate, changed. Different magnetic conditions made different patterns. Illaria also studied the biology of the system. She confirmed that a channel in the astrocytes called TRPV4 was responsible for the changes in calcium signaling. Under conditions that mimic a brain injury, she was able to use the system to reduce signs of cellular stress. Her research could help lead to new therapies that regulate brain activity without implanted electrical devices.
  • Aakash Manaswi, 17, of Orlando, Florida, received the Peggy Scripps Award for Science Communication of $10,000 for creating a carbon dioxide (CO2)-based system that kills honey bee pests. Honey bees are important pollinators that support many global food crops, but up to half of all colonies die off each year. A common pest is the varroa mite. Current treatments for these mites leave chemical residues in honey and beeswax and can harm bees. Aakash’s earlier work showed that CO2 is an effective way to control the mites while minimizing harm to the bees. For this year’s project, he tested the long-term safety and real-world performance of his “Mite Blower” CO2 treatment prototype. His system was as good or better at getting rid of the mites as existing pesticides. It also avoided many of their harmful side effects. In a 10-week field trial of 60 hives, the CO2-treated bees were healthier and made more honey than hives treated with pesticides. Aakash’s Mite Blower may be a cheaper and safer alternative to treating varroa mite infestations, potentially reducing the loss of hives.
  • Evan Morris, 18, of Saint Paul, Minnesota, received the Mary Sue Coleman Award for Life Science Innovation & Impact of $10,000 for his low-cost system to detect and interrupt seizure-like behavior in a worm model. Some people with epilepsy get brain stimulation to help control seizures. Finding the right stimulation settings often takes months of trial and error. This can be expensive and frustrating for patients. To study brain stimulation methods, Evan used gene editing to add an ultrasound-sensitive channel into the brain cells of a worm. He then built a computer controller to detect seizure-like activity. When it detected a seizure, the program would trigger an ultrasound to activate the channel and stop the behavior. Using the system, Evan tested different stimulation settings to find which reduced seizures the most. He reduced seizure recurrence by 70.1% and lowered overall seizure activity by nearly 30%. His work may lead to faster, lower-cost ways to study brain stimulation in living systems. 
  • Benedikt Kienle, 19, of Lancaster, Pennsylvania, and Filip Lajciak, 18, of Dubnica nad Vahom, Slovakia, received the Dudley R. Herschbach SIYSS Award.
  • Moitri Santra, 17, of Oviedo, Florida, along with Bennett Huang, 17, and Jason Pan, 17, of Mclean, Virginia, received the EU Contest for Young Scientists Award. Their projects will represent Regeneron ISEF at the EU Contest for Young Scientists to be held this September in Kiel, Germany.

In addition to the Top Award winners, more than 540 projects received awards and prizes for their innovative research, including “First Award” winners, who each received a $6,000 prize.

Category Winners (22):

  • Animal Sciences, sponsored by Jane Street 
  • Behavioral and Social Sciences, sponsored by Jane Street 
  • Biochemistry, sponsored by Regeneron 
  • Biomedical and Health Sciences, sponsored by Regeneron
  • Biomedical Engineering, sponsored by Regeneron 
  • Cellular and Molecular Biology, sponsored by Regeneron
  • Chemistry, sponsored by Scripps Research
  • Computational Biology and Bioinformatics, sponsored by Regeneron
  • Earth and Environmental Sciences, sponsored by Natural Resources Defense Council
  • Embedded Systems, sponsored by Jane Street
  • Energy: Sustainable Materials and Design, sponsored by Siemens Energy
  • Engineering Technology: Statics and Dynamics, sponsored by Google.org
  • Environmental Engineering, sponsored by Jacobs
  • Materials Science, sponsored by Howmet Aerospace Foundation
  • Mathematics, sponsored by Akamai Foundation
  • Microbiology, sponsored by Schattner Foundation
  • Physics and Astronomy, sponsored by Jane Street
  • Plant Sciences, sponsored by Society for Science
  • Robotics and Intelligent Machines, sponsored Zoox
  • Software Design, sponsored by Microsoft
  • Technology Enhances the Arts, sponsored by Midjourney
  • Translational Medical Science, sponsored by Regeneron

Resources: 

What is the Regeneron International Science and Engineering Fair (Regeneron ISEF)?
Established in 1950, Regeneron ISEF, a program of Society for Science, is the world’s largest global STEM competition for high school students. Through a global network of local, regional, and national science fairs, millions of students are encouraged to explore their passion for scientific inquiry. Top winners earn the right to compete at Regeneron ISEF where more than 1,700 finalists are judged across 22 different categories, competing for more than $7 million in awards and scholarships.

Who is sponsoring Regeneron ISEF?  
In 2019, Regeneron became the title sponsor of ISEF to help reward and celebrate the best and brightest young minds globally and encourage them to pursue careers in STEM to positively impact the world. Regeneron is also the title sponsor of the Regeneron Science Talent Search (STS), a program of the Society for Science. Regeneron’s support for these two premier programs will total more than $300 million from 2017 to 2036. Regeneron ISEF is supported by a community of additional sponsors, including entrepreneurs and organizations across a wide range of industries such as Adam R. Scripps Foundation, Akamai Foundation, Aramco, Arizona Science Center, Arizona State University, Burton Family Foundation, Caltech, Catalyzer Venture Partners, Central Arizona Project, Cesco Linguistic Services, Google.org, Gordon and Betty Moore Foundation, Howmet Aerospace Foundation, Insaco, Intel, Jacobs, Jane Street, Microsoft, Midjourney, Musical Instrument Museum, National Bank of Arizona, Natural Resources Defense Council, Pivotal Foundation, Schattner Foundation, Scripps Research, Siemens Energy, and Zoox.

Learn more at https://www.societyforscience.org/isef/.

What is Society for Science? 
Society for Science is a champion for science, dedicated to promoting the understanding and appreciation of science and the vital role it plays in human advancement. Established in 1921, Society for Science is best known for its award-winning journalism through Science News and Science News Explores, its world-class science research competitions for students, including the Regeneron Science Talent Search, the Regeneron International Science and Engineering Fair and the Thermo Fisher Scientific Junior Innovators Challenge, and its STEM Outreach programming that seeks to ensure that all students have an opportunity to pursue a career in STEM. A 501(c)(3) membership organization, Society for Science is committed to inform, educate, and inspire.  

Learn more at www.societyforscience.org and follow us on FacebookXInstagram, and LinkedIn

What is Regeneron? 
Regeneron (NASDAQ: REGN) is a leading biotechnology company that invents, develops, and commercializes potentially life-transforming medicines for people with serious diseases. Founded and led by physician-scientists, our unique ability to repeatedly and consistently translate science into medicine has led to numerous approved treatments and product candidates in development, most of which were homegrown in our laboratories. Our medicines and pipeline are designed to help patients with eye diseases, allergic and inflammatory diseases, cancer, cardiovascular and metabolic diseases, hematologic conditions, infectious diseases, and rare diseases. 

At Regeneron, science and responsible business practices go hand in hand. This conviction guides our 2030 responsibility goals, focused on delivering life-transforming medicines, expanding access to care, and supporting colleagues, communities and the ecosystems essential to human health. Through STEM-Fueled™ programming, including the Regeneron Science Talent Search, the Regeneron International Science and Engineering Fair and numerous STEM initiatives, Regeneron supports science research pathways and ecosystems, helping cultivate the next generation of STEM innovators. In addition, Together for CHANGE™ is an initiative founded by Regeneron Genetics Center®, Meharry Medical College, and other biopharmaceutical partners to help address inequities in STEM careers and research. Regeneron has been repeatedly recognized for these efforts by the Dow Jones Best-in-Class Indices and the Civic 50 list of America’s most community-minded companies.

For more information, please visit www.Regeneron.com or follow Regeneron on LinkedInInstagramFacebook, and X

Media Contacts
Tina Parisi Tuttle, Regeneron
tina.parisituttle@regeneron.com

Gayle Kansagor, Society for Science 
703-489-1131, gkansagor@societyforscience.org


FAQ

What is the Regeneron International Science and Engineering Fair 2026 and who organizes it?

Regeneron ISEF 2026 is described as the world’s largest pre-college science and engineering competition. According to Regeneron and Society for Science, it brings together more than 1,700 high school STEM finalists from over 67 countries, regions and territories to showcase research with real-world impact.

How much prize money was awarded at Regeneron ISEF 2026 and how were awards structured?

According to Regeneron, Regeneron ISEF 2026 finalists received more than $7 million in awards. Top prizes ranged from $10,000 to $100,000, including multiple special named awards, and more than 540 projects received monetary prizes such as $6,000 First Awards across 22 scientific and engineering categories.

Who won the top $100,000 Innovator Award at Regeneron ISEF 2026 (REGN)?

Hikaru Kuribayashi, 17, of Sapporo, Japan, won the $100,000 George D. Yancopoulos Innovator Award. According to Regeneron, he created simulation software using Markov Chain Monte Carlo methods to predict complex folding, potentially aiding designs like satellite solar sails, medical devices and emergency pop-up shelters.

Who received the $75,000 Regeneron Young Scientist Awards at Regeneron ISEF 2026?

According to Regeneron, Lakshmi Agrawal and Nikola Veselinov each received a $75,000 Regeneron Young Scientist Award. Agrawal developed low-cost jute-based filters removing up to 80% of tire-derived pollutants, while Veselinov described a new mathematical theorem on when equations of the form f(x)=a cannot be solved using basic functions.

How does Regeneron ISEF 2026 relate to Regeneron (REGN) and its STEM investment?

Regeneron sponsors ISEF as part of its long-term STEM education commitment. According to Regeneron President George D. Yancopoulos, the company invests hundreds of millions of dollars in programs like ISEF and the Science Talent Search to inspire future scientists addressing major global challenges.

What range of scientific disciplines were recognized at Regeneron ISEF 2026?

According to Society for Science, 22 categories received top awards, including Animal Sciences, Biochemistry, Biomedical Engineering, Environmental Engineering, Materials Science, Mathematics, Physics and Astronomy, Robotics and Intelligent Machines, and Software Design. More than 540 projects earned awards, reflecting broad coverage across life sciences, physical sciences, computing and engineering.