From Colossal to Chickens: The Scientists Behind Neion Bio’s Biologics Platform

Twenty years ago, Sven Bocklandt, PhD, sought to create a hypoallergenic cat. He had the genetic engineering chops to do it, but the embryology was beyond his capabilities. At a small animal genetic engineering conference, known as TARC (Transgenic Animal Research Conference), held near Lake Tahoe, he met James Kehler, VMD, PhD, whose research at that time was to make transgenic and knockout cats as models of human disease.  

The two men bonded, agreed the hypoallergenic cat idea was “crazy enough,” and decided to move forward with it. They worked together, completely unfunded, for years—FedEx’ing samples back and forth as Bocklandt was on the west coast and Kehler on the east coast—trying to make their “garage cat” while each one worked different day jobs.  

Bocklandt, passionate about animal genome engineering, continued to develop different ideas for genome engineering in animals. Around the same time that he started sharing his ideas with scientists like George Church, PhD, a start-up focused on animal genome engineering was taking shape—Colossal Biosciences, co-founded by Church. Introductions were made, and Bocklandt joined in 2022 as species director to work on the dire wolf project. Kehler joined a short time later as VP. And everyone knows the rest of that story (there was no shortage of media coverage).  

The pair eventually succeeded with the cat project: his name is Archie, and he is, Kehler noted, only partially hypoallergenic. But the generation of Archie and the dire wolves may not be the successes of this story. The real success may be what Bocklandt and Kehler learned along the way—and what they are going to do next.  

Chickens as the next biologic factory

Neion Bio, co-founded by Dimi Kellari and Sam Levin, PhD, and located on the Rockefeller University campus on the east side of Manhattan, is aiming to re-engineer eggs to produce drugs in chickens. The team uses genetic engineering to integrate therapeutic proteins into native egg proteins, creating a new manufacturing platform for drugs that runs on grain and water.  

Bocklandt joined the team at Neion Bio as CSO after leaving Colossal in 2024; Kehler joined more recently, as head of avian sciences. 

When thinking about producing complex proteins, using the chicken “makes a lot of sense,” Bocklandt told GEN. Breeding and genetic engineering are all established in the chicken. And the vaccine industry has established an existing infrastructure to grow eggs under disease-free conditions. Purifying proteins out of an egg, Bocklandt added, is easier than purifying them out of a Chinese hamster ovary (CHO) culture (the traditional cell choice for drug production) because there are fewer host proteins.  

Sven Bocklandt, PhD [Marco Figueroa]

It makes “far more sense” than what we’re doing right now, Bocklandt noted, which is using CHO cells. “Everyone is doing that because everyone has been doing it that way,” he asserted.  

“The fact that we’re now seriously questioning whether CHO cells should remain the default manufacturing platform for biologics is long overdue,” noted Ola Wlodek, PhD, CEO of Constructive Bio. “Any credible new approach that breaks this decades-old lock-in is ultimately good for patients and for the field.”  

For Kehler, who did his graduate work in the lab of stem cell pioneer Hans Schöler, PhD, the chicken is a clear choice because it is the only species, besides the mouse, where the primordial germ cells have been used to transmit genetically modified gametes to the next generation.  

Mike McGrew, PhD, group leader at the Roslin Institute in the U.K., and an advisor to Neion Bio, demonstrated years ago that modifying chicken primordial germ cells is a reliable way of making gene-edited chickens. This background is comforting to Kehler, who noted that, “unlike at Colossal, where everything was bleeding edge, we are able to focus on a single species and capitalize on some pretty tried and true technology.”  

Drugs in eggs meet biomanufacturing reality

The lab space on the Rockefeller University campus can support research and even house chickens. But it cannot support the production of a drug. When asked about turning their egg-borne proteins into drugs, the company leans on the existing infrastructure that supports vaccines in specific pathogen free (SPF) eggs. The idea is that the egg whites will be frozen in giant batches and then processed in a CDMO.  

When asked about potential challenges, Bocklandt noted that, “technically, there’s not much to worry about. I have no concerns about Neion Bio being able to do what we want to do or what we need to do.”  

But there may be hurdles ahead. Rahul Dhanda, co-founder, president, and CEO of Syntis Bio, told GEN that “at the beginning, everything can look like it has infinite potential—it’s when you actually build and operate the system that the real challenges show up.”  

More specifically, Dhanda pointed out that biomanufacturing “ultimately comes down to reliable, consistent, and cost-efficient production.” Leveraging animal biology for drug manufacturing is exciting, he noted, “but scalability and cost are still open questions, especially at this early stage. Biological variability between animals and individual outputs, like eggs, introduces additional risk compared to more controlled cell-based systems,” Dhanda added.  

Wlodek agreed: “because egg-based production is inherently a biological supply chain, it will face avian flu risks, batch-to-batch variability from seasonal and flock effects, animal-welfare/regulatory overhead, and practical limits on how fast you can expand output compared with stainless-steel or single-use fermenters.” 

Microbial and yeast systems still “win decisively on GMP containment, land/water footprint,” she noted, and “the ability to go from a few liters to tens of thousands of liters in weeks rather than months.” 

Dhanda agreed that “getting it to work in principle is far different from getting it to work at scale, and that seems far off.” 

If these challenges can be addressed at scale, safely and humanely, Dhanda noted, the approach could deliver meaningful health benefits—”but there are still significant logistical and technical hurdles to work through.”  

Engineering the chicken genome

Creating dire wolves at Colossal started with deriving wolf cells, editing them, and cloning them back into a live animal. But cloning doesn’t exist in birds. To genetically engineer chickens, the Neion Bio team edits the germline, starting the process with a fertilized egg.  

Neion Bio
Neion Bio [Marco Figueroa]

The egg is incubated for 65 hours, at which point germ cells float in the blood because the ovaries and testes don’t exist yet. A microliter of the blood is removed, put into cell culture media, and the germ cells grow out. The transgene that codes for the therapeutic protein is inserted using CRISPR-Cas enzymes, in the coding region of a gene that codes for Ovalbumin—which makes up a bit over 50% of the egg white protein. This protein is made “on a massive scale” by the oviduct, the company noted.  

The genome is screened for correct integration and potential off-target edits. Once the clone is approved, several thousand cells are injected back into another embryo (also at 65 days old). After incubation, the egg hatches and becomes a chicken. 

Kanuma set the precedent—but not the scale

In 2015, the U.S. Food and Drug Administration approved Kanuma (sebelipase alfa) to treat Lysosomal Acid Lipase (LAL) deficiency, also known as Wolman disease. The drug, an enzyme replacement therapy, was the first treatment for patients with the rare disease and the first drug to be made in chickens. Kanuma is produced by Alexion Pharmaceuticals, which was acquired by AstraZeneca in 2021.  

This historical precedent may provide a proof of concept for Neion Bio. That said, “the scale required for Kanuma is very different from what would be needed for large biosimilars,” explained Wlodek.  

An Odyssean journey

For both Bocklandt and Kehler, the move to Neion Bio feels like their careers are coming full circle. When Bocklandt first left Colossal, he was not sure how he would surpass that level of excitement. But the move came at an interesting time for him; the call to join Neion Bio came just weeks after he learned that his sister had been diagnosed with leukemia.  

He thought, “Well, maybe this is not such a bad use of my skills.”  

Earlier in his career, he didn’t think that he had anything special to add to a field like cancer research. But now Bocklandt sees it differently: throughout his career, he has pushed the state-of-the-art of genetic engineering. Now, he said, “I bring something to the field. And the fact that I can do my passion, animal genetic engineering, and apply that to make drugs better, cheaper, and more accessible, is really exciting.”  

As for Kehler, Neion’s goal was his goal all along. He went to the University of Pennsylvania to make better animal models to test drugs for humans. “It never really dawned on me that we could use animals to make the drugs for humans. But taking everything I know about stem cell biology, germ cell biology, and gene editing, and bringing that to bear to make what should be a disruptive, transformational approach to making drugs—it feels like the culmination of my career.” 

Neion (pronounced Neon) Bio is named after the birthplace of Odysseus; Mount Neion is a mountain mentioned in Homer’s The Odyssey as a landmark on Ithaca—Odysseus’ island home. As described by the company, the name is a testament to the shared qualities between the Greek hero and the company’s goals: relying on intelligence and resourcefulness over strength. And yes, Odysseus was successful in his return home to reclaim his throne. But it was a bittersweet success given the enormous cost and hardship.

Neion Bio’s name may mirror the resilience and ingenuity required to undertake the journey, but time will tell how long the similarities in the namesake are shared between the two.

The post From Colossal to Chickens: The Scientists Behind Neion Bio’s Biologics Platform appeared first on GEN – Genetic Engineering and Biotechnology News.

STAT+: Pharmalittle: We’re reading about an FDA push for trial transparency, a Novo-OpenAI deal, and more

Rise and shine, everyone, another busy day is on the way. And it is getting off to a good start here on the Pharmalot campus, where clear blue skies and unusually balmy breezes are greeting us. Who could ask for anything more? Actually, we could — it is time to reheat the kettle for another cuppa stimulation. Our choice today is elderberry-infused green tea. And here is a helpful tip — a teaspoon of honey enhances the flavors splendidly. Of course, you are invited to join us. For the full experience, we are now hawking replicas — take a look. Meanwhile, here are a few tidbits to help you along. As always, do keep in touch. We appreciate feedback, suggestions, criticism, and tips. …

In a bid toward greater transparency, the U.S. Food and Drug Administration sent reminder letters to more than 2,200 companies and researchers that they are required to report clinical trial results to a federal government database or they may face fines, STAT says. FDA officials disclosed that an internal analysis found results were not submitted for nearly 30% of studies that were “highly likely” to fall under mandatory reporting requirements. The agency also noted that the letters were sent to companies and researchers associated with more than 3,000 registered trials, some of which were publicly funded. In explaining its move, the regulator acknowledged a long-standing complaint from researchers who have argued that without access to specific data, trial results cannot be easily duplicated, which inhibits greater understanding of how medicines might work.

Novo Nordisk and ChatGPT maker OpenAI agreed to work together on how to leverage artificial intelligence to discover new drugs, the latest AI partnership in the medical field as health care companies seek to harness the technology to get ahead of the competition, The Wall Street Journal tells us. The drugmaker said it would integrate OpenAI’s models across its operations to help its workforce analyze complex datasets and reduce the time it takes to move from research to delivering treatments to patients. The group said the partnership would boost efficiency across the organization, with pilot programs initially launching in research and development, manufacturing, and commercial operations ahead of a full AI integration by the end of the year.

Continue to STAT+ to read the full story…

The Download: the state of AI, and protecting bears with drones

This is today’s edition of The Download, our weekday newsletter that provides a daily dose of what’s going on in the world of technology.

Want to understand the current state of AI? Check out these charts. 

If you’re following AI news, you’re probably getting whiplash. AI is a gold rush. AI is a bubble. AI is taking your job. AI can’t even read a clock. Stanford’s 2026 AI Index—the field’s annual report card—cuts through the noise.  

The data reveals a technology evolving faster than we can manage. From the China-US rivalry and model breakthroughs to public sentiment and the impact on jobs, here are the index’s key findings on the state of AI today

—Michelle Kim 

Why opinion on AI is so divided 

Stanford’s 2026 AI Index is full of striking stats. It also reveals a field riddled with inconsistencies, most notably in the gap between experts and non-experts.  

On jobs, 73% of US experts view AI’s impact positively, compared to just 23% of the public. Similar divides emerged on the economy and healthcare. What’s driving this disconnect? 

Part of the answer may lie in their diverging experiences. Those using AI for coding and technical work see it at its best, while everyone else gets a more mixed bag. The result is two very different realities. Read the full story on what they are—and why they matter

This story is from The Algorithm, our weekly newsletter on AI. Sign up to receive it in your inbox every Monday. 

—Will Douglas Heaven 

Job titles of the future: Wildlife first responder 

Grizzly bears have made such a comeback across eastern Montana that in 2017, the state hired its first-ever prairie-based grizzly manager: wildlife biologist Wesley Sarmento.  

For seven years, Sarmento worked to keep both bears and humans out of trouble. He acted like a first responder, trying to defuse potentially dangerous situations. He even got caught in some himself, which led him to a new wildlife safety tool: drones. Find out the results of his experiments in digital ecology
 
 —Emily Senkosky 

This article is from the next issue of our print magazine, which is all about nature. Subscribe now to read it when it lands on Wednesday, April 22.  

The must-reads 

I’ve combed the internet to find you today’s most fun/important/scary/fascinating stories about technology. 

1 Human scientists still trounce the top AI agents at complex tasks  
The best agents perform only half as well as experts with PhDs. (Nature
+ Can AI really help us discover new materials? (MIT Technology Review
 
2 OpenAI is escalating its fight with Anthropic while pulling away from Microsoft 
A leaked memo exposes plans to attack Anthropic. (Axios
+ And says Microsoft “limited our ability” to reach clients. (The Information $) 
+ While touting a budding alliance with Amazon. (CNBC

3 Carbon removal technology is stalling—and that may be good news 
Better solutions could now emerge. (New Scientist
+ Here are three that are set to break through. (MIT Technology Review
 
4 AI is finding bugs faster than we can fix them—and hackers will benefit 
Welcome to the bug armageddon. (WSJ $)  
+ AI may soon be capable of fully automated attacks. (MIT Technology Review
 
5 A Texas man has been charged with the attempted murder of Sam Altman 
He allegedly threw a Molotov cocktail at the OpenAI CEO’s home last Friday. (NPR
+ The suspect reportedly had a list of other AI leaders. (NYT $) 
 
6 AI is beginning to transform mathematics 
It’s proving new results at a rapid pace. (Quanta
+ One AI startup plans to unearth new mathematical patterns. (MIT Technology Review
 
7 Students are turning away from computer science 
It’s had a massive drop in enrollments. (WP $) 
+ AI coding tools have diminished the degree’s value. (NYT $)  
 
8 India’s bid to become a data center hub is sparking a fierce backlash 
Farmers are protesting Delhi’s courtship of hyperscalers. (Rest of World
 
9 Meta is set to overtake Google in advertising revenue this year 
And become the world’s largest digital ad platform for the first time. (WSJ
 
10 AI influencers are taking over Coachella  
Synthetic content creators are “everywhere” at the festival. (The Verge

Quote of the day 

“These people are almost nothing like you. They are most likely sociopathic/psychopathic and, in the case of Altman, consistently reported to be a pathological liar.” 

—The alleged firebomber of Sam Altman’s home shares his distrust of AI leaders in a blog post. 

One More Thing 

We’ve never understood how hunger works. That might be about to change. 

A few years ago, Brad Lowell, a Harvard University neuro­scientist, figured out how to crank the food drive to the maximum. He did it by stimulating neurons in mice. Now, he’s following known parts of the neural hunger circuits into uncharted parts of the brain. 

The work could have important implications for public health. More than 1.9 billion adults worldwide are overweight, and more than 650 million are obese. Understanding the circuits involved could shed new light on why these numbers are skyrocketing. 

Read the full story

—Adam Piore 

We can still have nice things 

A place for comfort, fun and distraction to brighten up your day. (Got any ideas? Drop me a line.) 

Top image credit: Stephanie Arnett/MIT Technology Review | Getty Images 

+ Someone built a mechanical version of Tony Hawk’s Pro Skater from Lego. 
+ Enjoy this wholesome clip of toddlers discovering the existence of hugs. 
+ This interactive body map shows exactly which exercises you need. 
+ Jon McCormack’s photos of nature’s patterns are breathtaking. 

A top WHO official confronts Iran war fallout, and weighs bid for an even bigger role

Hanan Balkhy has a lot on her plate these days.

Balkhy is the director of the World Health Organization’s Eastern Mediterranean region, an entity that includes several of the countries caught up in the conflict between the United States, Israel, and Iran. The problems it has been posing — not just to individuals’ health and safety but to entire health care systems — are robbing her of sleep.

Read the rest…

For Ben Sasse, Revolution Medicines’ pancreatic cancer trial felt like his best, only option

When Ben Sasse, a former U.S. senator (R-Neb.), learned he had metastatic pancreatic cancer, he quickly chose action over comfort. Whatever he could do to save his life, for as long as he could, he wanted to try it. Perhaps his only option, doctors told him, was to enroll in a clinical trial.

“If we were to have much of a chance of living longer than the three to four months they were giving us at that point, we were going to need to get into an aggressive trial,” Sasse told STAT last month.

Read the rest…

Parent-mediated early intervention in infants and toddlers at elevated likelihood for autism: a systematic review of randomized controlled trials

The current prevalence of Autism Spectrum Disorder (ASD) has risen to 1 in 31, according to a recent report of the USA Centers for Disease Control and Prevention. While prodromal signs of ASD can be observed during the first months of life, most care approaches usually require a diagnosis before children can receive autism-specialized intervention services. A novel approach consists in providing parent-mediated intervention to infants higher likelihood for autism with the aim to decrease disability and perhaps impacting on developmental trajectory. The aim of this review is to summarize evidence on outcomes from Randomized Control Trials (RCTs) of parent-mediated early interventions in infants with very early ASD signs and/or with an elevated likelihood for ASD, in order to inform clinical practice. A systematic literature search was performed by using the following databases from 2014 until 17 February 2025: Pubmed, EMBASE, Scopus, Web of Science, OVID (PsycInfo). Papers were selected based on the following inclusion criteria: i) RCT studies; ii) Mean age of children enrolled in RCT studies ≤ 18 months; iii) English language published studies; iv) Infants presenting autistic signs or infants at elevated likelihood for ASD. Eleven studies were included and analyzed in regard to sample characteristics, enrollment strategies, outcome measures and intervention types.

STAT+: Federal judge tosses California No Surprises Act lawsuit against HaloMD

A federal judge has tossed one of the four pending civil lawsuits against HaloMD, a company that represents providers in No Surprises Act arbitration cases. 

The ruling, which grants HaloMD’s motion to dismiss, represents a major win for the Texas-based middleman, which quickly rose to become the number one user of the federal arbitration process in the first half of 2025. The judge found that Anthem Blue Cross of California’s lawsuit failed to establish a legal basis for invalidating HaloMD’s arbitration wins against the company. 

Lawsuits from four Blue Cross Blue Shield plans alleged that many of the disputes in which HaloMD prevailed weren’t actually eligible for arbitration. The lawsuits claimed to reveal a costly side effect of the process: Providers could potentially game the system to extract more money from health insurers for out-of-network services than they got before the surprise billing law passed. 

Continue to STAT+ to read the full story…

Salk to Lead $41.3M ARPA-H Effort to Advance Sonogenetics Therapies

The scientists responsible for developing sonogenetics, which refers to the application of low-intensity ultrasound to noninvasively achieve precise control of cellular proteins, have secured an influx of federal funding that will allow them and their collaborators transform the technology into a potential therapy for various conditions starting with peripheral neuropathies.

Late last week, Salk Institute for Biological Studies announced that Sreekanth Chalasani, PhD, an associate professor in Salk’s molecular neurobiology laboratory, and his partners in collaborating laboratories elsewhere, were awarded $41.3 million from the Advanced Research Projects Agency for Health (ARPA-H), an agency within the United States Department of Health and Human Services. Working on multiple fronts over the next five years, the partners will develop core biological tools and ultrasound delivery systems while generating the preclinical evidence needed to move sonogenetics into human clinical trials. 

“This award is a major step toward a long-held goal—a drug-free way to deliver therapy exactly where it’s needed and only when it’s needed,” said Chalasani, who serves as the principal investigator for the grant and is also the co-founder of SonoNeu, a startup launched to commercialize therapies based on the technology. Key to accomplishing that goal is “a platform that pairs engineered ultrasound-sensitive proteins with wearable ultrasound technology, which, unlike conventional pharmaceutical treatments, could let us treat conditions with cellular and temporal control.” 

Reaching cells through sound

In 2011, armed with support from Salk’s Innovation and Collaboration Grants program, Chalasani and his team pioneered sonogenetics, a technique for sensitizing specific cell types to ultrasound by equipping them with ultrasound-responsive proteins. In 2015, his group first identified a particular protein in the roundworm Caenorhabditis elegans (C. elegans) that makes cells sensitive to low-frequency ultrasound. When they added this protein to C. elegans neurons that did not usually have it, they were able to activate these cells using ultrasound waves. 

Since that initial discovery, Chalasani’s team and others have shown that they can use sonogenetics to manipulate mammalian cells. Some of their work was published in a 2022 Nature Communications paper which describes efforts to engineer a human channel protein in cultured mammalian cells and living animal models to confer cell-specific sensitivity to ultrasound stimulation.

Chalasani noted in an interview with GEN that the pace of their progress from an idea to potential clinical translation in the span of about 15 years is remarkable, compared to the typical multi-decade timeline for most new therapies. “In terms of how quickly this has gone from a [research] idea to what patients should we look at [and] how are we going to help them? The pace has been overwhelming,” he said. He attributed much of that progress to the work of the trainees, post-doctoral students, and collaborators through the years who were willing to take on “this crazy idea and work on this project, even though there was no guarantee it would get anywhere.” He also highlighted the early investment from Salk and other entities including the National Institutes of Health’s Brain Initiative as key to project’s success.  

Though Chalasani and his lab pioneered sonogenetics, the next phase of its development is not a solo effort. It involves a multiple institutions and teams all of whom are contributing essential and specialized expertise. The list of collaborators includes Scripps Research, where a team led by 2021 Nobel Laureate Ardem Patapoutian, PhD, will support the discovery and engineering of ultrasound-sensitive proteins. Then a team at St. Boniface Hospital Research and the University of Manitoba led by Paul Fernyhough, PhD, will help define how ultrasound-triggered signals move through cellular machinery and drive nerve repair pathways.

Another team, led by Aravind Asokan, PhD, at Duke University will work on targeted vectors for delivering ultrasound-sensitive proteins to specific cell types. Separately, a team led by Xuanhe Zhao, PhD, at Massachusetts Institute of Technology will work on targeted mechanisms for delivering ultrasound to animal and human targets. Then scientists at the University of California, San Diego, led by Nigel Calcutt, PhD, will validate the efficacy of sonogenetics across established paradigms and in mammalian systems. Finally, Ghassan Kassab, PhD, and his team at California Medical Innovations Institute, will support advanced translational validation and clinically relevant assessment in preclinical systems. 

For their part, Chalasani and his team at Salk will work on finding additional actuators or sensors for ultrasound that will be optimized for targeted delivery. “What we have are proteins that can respond to that small amount of mechanical deflection that ultrasound can cause,” Chalasani explained. “These proteins are channels [that] sit on the membrane of the cell and when the cell experiences ultrasound, the protein gets activated, it opens up, and allows calcium [for example] into the cell. Because these proteins can actuate an effect, they are called ultrasound actuators.” 

Currently, the group has identified proteins that can move things like calcium and chloride into cells in response to ultrasound but they are hunting for other proteins that can activate various signaling pathways. Besides new actuators, the Salk scientists will work on validation studies in mouse models, and lay the groundwork for experiments in larger animal models, specifically pigs, Chalasani told GEN

There is a plan in place to commercialize therapies developed using sonogenetics technology. Salk spinout SonoNeu will receive a portion of the ARPA-H funding to help  move potential therapies through the regulatory process and commercialization. Chalasani is listed as a co-founder as is Venkat Reddy, chief scientific officer of General Inception, a firm that partners with scientific founders to build their companies. The target, Chalasani said, is to have something ready for the U.S. Food and Drug Administration in the next five years. 

The initial treatment target condition is peripheral neuropathies and in that context, “there are a lot of interesting places for us to evaluate,” he said. “But I think the real question is going to be what pathway are we targeting? We can do calcium and chloride [but] is that enough to get a therapeutic benefit in a patient or should we have to activate something else other than that? Do we have to activate an enzyme [or] a kinase? And how would we do that? Can we link these proteins to those signals? So there are some unknowns here.”  

If all goes well, other patient populations could benefit from sonogenetics-based therapies besides peripheral neuropathies including people with diabetes, heart conditions or it could help with bladder control, Chalasani said. There are even possible applications in the context of brain-computer interfaces. 

The post Salk to Lead $41.3M ARPA-H Effort to Advance Sonogenetics Therapies appeared first on GEN – Genetic Engineering and Biotechnology News.

AACR 2026: Professional Awards Acknowledge Community’s Contributions to Cancer Research

The American Association for Cancer Research (AACR) has released the names of the recipients of several annual professional awards. These awards recognize outstanding accomplishments and achievements in cancer research, therapy development, education, mentorship, and more. The honorees, listed below, will give lectures during this year’s meeting, which is being held in San Diego, CA. This year’s meeting runs from April 17-22.

 

AACR Lifetime Achievement in Cancer Research Award 

James P. Allison, PhD, FAACR

This award honors individuals who have made fundamental contributions to cancer research through a single scientific discovery or a body of work. Allison is being recognized for his contributions to cancer research and patient care. Most notably, he is being celebrated for his identification of CTLA-4 as a negative regulator of T-cell activation, an insight that has since been translated into a first-in-class therapy that revitalized the field of cancer immunology and led to a revolution in cancer immunotherapies. Allison is a fellow of the AACR Academy, a professor and chair of the department of immunology, vice president for immunobiology, and the founding director of the James P. Allison Institute at the University of Texas MD Anderson Cancer Center.

 

AACR Outstanding Achievement in Basic Cancer Research Award 

Housheng Hansen He, PhD

This award recognizes early-career investigators for meritorious achievements in basic cancer research. He is a professor in the department of medical biophysics at the University of Toronto and a senior scientist in the Princess Margaret Cancer Center. He is recognized for contributions to cancer epigenetics and RNA medicine, particularly in revealing how chromatin accessibility and epigenomic landscapes govern oncogenic transcription. His studies of FOXA1-androgen receptor networks, noncoding RNAs, and RNA modifications have improved scientists’ understanding of tumor progression, plasticity, and therapeutic resistance.  

 

AACR Outstanding Achievement in Blood Cancer Research Award 

John F. DiPersio, MD, PhD

This award recognizes individuals with meritorious achievements and contributions to blood cancer research. DiPersio is this year’s recipient for his work in leukemia and stem cell biology, including essential contributions to the development of the hematopoietic stem cell mobilizing agents plerixafor and motixafortide. DiPersio identified AK1/2 signaling in graft-versus-host disease, which led to the identification and approval of JAK inhibitors, including ruxolitinib (Jakafi). DiPersio is the Virginia E. and Sam J. Golman professor of medicine and a professor of medicine, immunology, and pathology at Washington University School of Medicine in St. Louis. He is also director of the Center for Gene and Cellular Immunotherapy at Siteman Cancer Center at Barnes-Jewish Hospital and WashU Medicine.

 

AACR Outstanding Achievement in Chemistry in Cancer Research Award 

Cheryl H. Arrowsmith, PhD

This award honors individuals who have done novel and significant chemistry research that has led to important contributions in basic and translational cancer research, cancer diagnosis, prevention, and treatment. Arrowsmith is being recognized for foundational studies defining the structure and function of chromatin-associated proteins that regulate gene expression in cancer. Her work enabled the development of chemical probes that target epigenetic regulators. She is a senior scientist at the Princess Margaret Cancer Centre, University Health Network and chief scientist of the Structural Genomics Consortium. She is also a professor in the department of medical biophysics at the University of Toronto.

 

AACR Daniel D. Von Hoff Award for Outstanding Contributions to Education and Training in Cancer Research

Charles W.M. Roberts, MD, PhD, FAACR

This award recognizes significant contributions to education and training for cancer scientists and physicians at any career level. Roberts is a fellow of the AACR Academy and the executive vice president and director of the St. Jude Comprehensive Cancer Center. He is also a member in the department of oncology and the Lillian R. Cannon Comprehensive Cancer Center Director Endowed Chair at the St. Jude Children’s Research Hospital. This award recognizes his leadership and dedication to the education and training of cancer researchers across the spectrum of childhood cancer research, including basic, translational, clinical, and population science. 

 

AACR James S. Ewing-Thelma B. Dunn Award for Outstanding Achievement in Pathology in Cancer Research 

David L. Rimm, MD, PhD

The award celebrates pathologists who have contributed to advancing cancer research, diagnosis, treatment, and prevention. Rimm is recognized this year for innovations in quantitative biomarker science that transformed cancer diagnostics and treatment. His invention of the fluorescence-based Automated Quantitative Analysis platform improved immunohistochemistry by enabling precise, reproducible protein quantification in tissue specimens. Rimm is the Anthony N. Brady professor of pathology, a professor of medicine in oncology, director of quantitative diagnostics in the anatomic pathology lab, director of Yale Pathology Tissues Services, and director of the physician scientist training program in pathology at Yale University School of Medicine. He is also a member of Yale Cancer Center and director of the Yale Cancer Center Tissue Microarray Facility.

 

AACR Margaret Foti Award for Leadership and Extraordinary Achievements in Cancer Research

Antoni Ribas, MD, PhD, FAACR

This award recognizes individuals whose leadership and achievements contributed to the acceleration of progress against cancer, raising national or international awareness of the importance of cancer research, among other achievements. Ribas is being recognized for contributions to melanoma biology and cancer immunotherapy that were instrumental to the clinical development of pembrolizumab (Keytruda) and other transformative therapies. His research helped define mechanisms of immunotherapy response and resistance, which guided the design of innovative combination therapy approaches. Ribas is a fellow of the AACR Academy and AACR Past President. He is also a professor of medicine, surgery, and molecular and medical pharmacology at the University of California Los Angeles (UCLA), as well as director of the tumor immunology program at the UCLA Jonsson Comprehensive Cancer Center. He also serves as the director of the Parker Institute for Cancer Immunotherapy Center at UCLA. 

 

AACR Team Science Award

The Cancer Dependency Map (DepMap) team

This award recognizes interdisciplinary research teams for science that advances or is likely to advance our fundamental knowledge of cancer, or a team that has applied existing knowledge to advance the detection, diagnosis, prevention, or treatment of cancer. The Broad Institute Cancer Dependency Map (DepMap) team is recognized this year for systematically mapping genetic dependencies across cancer cells and creating a comprehensive resource that reveals genes and pathways essential for tumor survival. By combining large-scale CRISPR functional genomic screens, drug response data, and multiomic profiling, the team uncovered lineage- and genotype-specific cancer vulnerabilities, including synthetic lethal dependencies such as WRN in microsatellite instability cancers and PRMT5 dependencies in cancers with MTAP deletions. 

 

AACR American Cancer Society Award for Research Excellence in Cancer Epidemiology and Prevention

Elizabeth A. Platz, ScD, MPH 

This award recognizes research accomplishments in cancer epidemiology, biomarkers, and prevention. Platz is the Martin D. Abeloff, MD Scholar in Cancer Prevention in the epidemiology department at the Johns Hopkins Bloomberg School of Public Health. She is also the associate director of population sciences at the Sidney Kimmel Comprehensive Cancer Center at Johns Hopkins. This award recognizes her contributions to scientists’ understanding of prostate cancer development, progression, and prevention. Her research linked intraprostatic inflammation to prostate cancer risk, identified telomere length patterns as prognostic biomarkers, and demonstrated protective associations between statin use, cholesterol, and disease lethality. 

 

AACR Cancer Research Institute Lloyd J. Old Award in Cancer Immunology 

Kenneth M. Murphy, MD, PhD 

This award recognizes scientists whose research has had a major impact on the cancer field and has the potential to stimulate new directions in cancer immunology.  Murphy is the Eugene Opie First Centennial Professor in pathology and immunology at the Washington University School of Medicine in St. Louis. This award recognizes his work on discoveries related to the development and functional specialization of dendritic cell subsets that regulate adaptive immune responses. His work elucidated the transcriptional programs that control dendritic cell lineage commitment, including the role of transcription factors such as BATF3 in the development of cross-presenting dendritic cells required to prime cytotoxic T-cell responses. 

 

AACR G.H.A. Clowes Award for Outstanding Basic Cancer Research 

Andrew P. Feinberg, MD, MPH

This award, which has the distinction of being AACR’s oldest award, recognizes individuals who have made outstanding recent accomplishments in basic cancer research. Feinberg is recognized this year for discoveries about the fundamental role of epigenetic alterations in cancer, including the identification of early, widespread DNA methylation abnormalities and the role of genomic imprinting in tumor development. His research demonstrated that large-scale epigenomic alterations contribute to tumor initiation, progression, and cellular heterogeneity, leading to the concept of epigenetic plasticity as a driver of cancer evolution. Feinberg is the Bloomberg Distinguished Professor at the Johns Hopkins University Schools of Medicine, Engineering, and Public Health. He also serves as director of the Center for Epigenetics of the Institute for Basic Biomedical Sciences.

 

AACR Irving Weinstein Foundation Distinguished Lectureship Award

Dennis Lo, DM, DPhil

The recipient for this award is selected by the AACR president, and acknowledges individuals whose personal innovation in science and whose position as a thought leader in fields relevant to cancer research have the potential to inspire creative thinking and new directions in cancer research. Lo is the vice-chancellor and president of the Chinese University of Hong Kong, where he also serves as the Li Ka Shing Professor of Medicine and professor of chemical pathology. He is being recognized for his discovery of fetal DNA in maternal plasma. Lo was the first to identify cell-free fetal DNA and fetal epigenetic markers in maternal plasma, enabling safer and earlier prenatal diagnostics. He also demonstrated that DNA released by tumors may be used for cancer screening, an insight that led to the development of circulating DNA-based tools for early cancer detection and screening. 

 

AACR Joseph H. Burchenal Award for Outstanding Achievement in Clinical Cancer Research 

Luis A. Diaz Jr., MD, FAACR

This award recognizes outstanding achievements in clinical cancer research. Diaz, a fellow of the AACR Academy, heads the division of solid tumor oncology and is the Grayer Family Chair at the Memorial Sloan Kettering Cancer Center. This award recognizes his pioneering discoveries such as biomarker-driven immunotherapies and for demonstrating that tumors with mismatch repair deficiencies and microsatellite instability are highly responsive to immune checkpoint blockade. Diaz has also advanced the use of circulating tumor DNA to detect minimal residual disease and led clinical trials of PD-1 blockade in mismatch repair-deficient cancers. 

 

AACR Minorities in Cancer Research Jane Cooke Wright Lectureship

Ahmedin M. Jemal, DVM, PhD

This lectureship recognizes scientists with meritorious contributions to the field of cancer research and who have furthered the advancement of minority investigators in cancer research. This year’s awardee is recognized for research that quantified temporal and geographic trends in cancer burden using large-scale analysis of cancer registries, mortality rates, and risk factor data, and identified population-level determinants of cancer incidence, survival, and stage at diagnosis across demographic groups. Jemal’s work linked changes in risk factor exposure, screening uptake, and treatment advances to declines in cancer mortality and informed strategies for cancer prevention, early detection, and population-level cancer control. He is the senior vice president of the Surveillance, Prevention, & Health Services Research department at the American Cancer Society. He is also an adjunct professor in the department of epidemiology at the Rollins School of Public Health at Emory University. 

 

AACR Princess Takamatsu Memorial Lectureship 

David C. Lyden, MD, PhD

This award recognizes individual scientists whose work has had or may have a far-reaching impact on the detection, diagnosis, treatment, or prevention of cancer. Lyden is the Stavros S. Niarchos Professor in pediatric cardiology and professor of pediatrics at Weill Cornell Medicine. He is also director of the physician-scientist training program in pediatrics, a founding member of the Drukier Institute for Children’s Health  and a member of the Sandra and Edward Meyer Cancer Center. He is being recognized for describing how primary tumors systemically promote metastasis by forming pre-metastatic niches in distant organs. Lyden’s research demonstrated that tumor-derived extracellular vesicles and exomeres, together with bone marrow-derived progenitor cells, remodel distant microenvironments and determine organ-specific metastatic tropism.

 

AACR St. Baldrick’s Foundation Award for Outstanding Achievement in Pediatric Cancer Research

Kimberly Stegmaier, MD, FAACR

This award recognizes individuals who have contributed to pediatric cancer research, resulting in the fundamental improvement of the understanding and/or treatment of pediatric cancer. Stegmaier serves as chair in the department of pediatric oncology at Dana-Farber Cancer Institute and the David G. Nathan professor of pediatrics at Harvard Medical School. She is also the associate chief of the division of hematology/oncology at Boston Children’s Hospital and an institute member at the Broad Institute. This award recognizes her genomic discoveries that defined the molecular landscape of childhood cancers and led to the identification of key drivers of fusion oncoprotein positive malignancies. Her research used systematic functional genomic screening and chemical biology strategies to identify critical dependencies in high-risk acute leukemias and pediatric solid tumors. 

 

AACR Waun Ki Hong Award for Outstanding Achievement in Translational and Clinical Cancer Research

Eliezer M. Van Allen, MD

This award recognizes cancer researchers under the age of 51 who have conducted meritorious translational and clinical cancer research anywhere in the world. Van Allen is the Chandra Nohria Family Chair for AI in Cancer Research and chief of the division of population sciences at Dana-Farber Cancer Institute. He is also a professor of medicine at Harvard Medical School and an institute member at the Broad Institute. Through large-scale tumor sequencing and integrative genomic analyses, Van Allen’s research defined genomic mechanisms underlying resistance to targeted therapies, including BRAF inhibition in melanoma, and identified genomic features associated with response to immune checkpoint blockade. His work has advanced biomarker discovery and the use of genomic data to guide personalized cancer treatments, as well as bridged advances in artificial intelligence with translational cancer research.

 

AACR Women in Cancer Research Charlotte Friend Lectureship 

Maryellen L. Giger, PhD

This award recognizes scientists’ contributions to the cancer research field and those who have furthered the advancement of women in science through leadership or by example. Giger is the A.N. Pritzker Distinguished Service Professor of Radiology at the University of Chicago. Giger’s research has established quantitative imaging and radiomics approaches that extract high-dimensional features from radiologic images to characterize tumor phenotype and predict cancer risk, diagnosis, and treatment response. She has also guided more than 120 trainees and consistently championed the careers of women scientists and clinicians.

 

Pezcoller Foundation-AACR International Award for Extraordinary Achievement in Cancer Research

Douglas R. Lowy, MD, FAACR and John T. Schiller, PhD, FAACR

This award is presented to international scientists who have made a scientific discovery in basic cancer research or who have made significant contributions to translational cancer research. Lowy is principal deputy director of the National Cancer Institute (NCI) and chief of the Laboratory of Cellular Oncology at NCI. Schiller is deputy chief of the Laboratory of Cellular Oncology at NCI and chief of the lab’s neoplastic disease section. Both awardees are also fellows of the AACR Academy and NIH Distinguished Investigators. They are being recognized for pioneering the molecular and immunologic foundations of human papillomavirus vaccines, engineering virus-like particles for safe and effective immunization, and driving their translation into global cancer prevention strategies that have dramatically reduced cervical and other HPV-related cancer incidence.  

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