Science
NIH budget cuts threaten the future of biomedical research — and the young scientists behind it
Over the last several months, a deep sense of unease has settled over laboratories across the United States. Researchers at every stage — from graduate students to senior faculty — have been forced to shelve experiments, rework career plans, and quietly warn each other not to count on long-term funding. Some are even considering leaving the country altogether.
This growing anxiety stems from an abrupt shift in how research is funded — and who, if anyone, will receive support moving forward. As grants are being frozen or rescinded with little warning and layoffs begin to ripple through institutions, scientists have been left to confront a troubling question: Is it still possible to build a future in U.S. science?
On May 2, the White House released its Fiscal Year 2026 Discretionary Budget Request, proposing a nearly $18-billion cut from the National Institutes of Health. This cut, which represents approximately 40% of the NIH’s 2025 budget, is set to take effect on Oct. 1 if adopted by Congress.
“This proposal will have long-term and short-term consequences,” said Stephen Jameson, president of the American Assn. of Immunologists. “Many ongoing research projects will have to stop, clinical trials will have to be halted, and there’ll be the knock-on effects on the trainees who are the next generation of leaders in biomedical research. So I think there’s going to be varied and potentially catastrophic effects, especially on the next generation of our researchers, which in turn will lead to a loss of the status of the U.S. as a leader in biomedical research.“
In the request, the administration justified the move as part of its broader commitment to “restoring accountability, public trust, and transparency at the NIH.” It accused the NIH of engaging in “wasteful spending” and “risky research,” releasing “misleading information,” and promoting “dangerous ideologies that undermine public health.”
National Institutes of Health.
(NIH.gov)
To track the scope of NIH funding cuts, a group of scientists and data analysts launched Grant Watch, an independent project that monitors grant cancellations at the NIH and the National Science Foundation. This database compiles information from public government records, official databases, and direct submissions from affected researchers, grant administrators, and program directors.
As of July 3, Grant Watch reports 4,473 affected NIH grants, totaling more than $10.1 billion in lost or at-risk funding. These include research and training grants, fellowships, infrastructure support, and career development awards — and affect large and small institutions across the country. Research grants were the most heavily affected, accounting for 2,834 of the listed grants, followed by fellowships (473), career development awards (374) and training grants (289).
The NIH plays a foundational role in U.S. research. Its grants support the work of more than 300,000 scientists, technicians and research personnel, across some 2,500 institutions and comprising the vast majority of the nation’s biomedical research workforce. As an example, one study, published in the Proceedings of the National Academy of Sciences, found that funding from the NIH contributed to research associated with every one of the 210 new drugs approved by the U.S. Food and Drug Administration between 2010 and 2016.
Jameson emphasized that these kinds of breakthroughs are made possible only by long-term federal investment in fundamental research. “It’s not just scientists sitting in ivory towers,” he said. “There are enough occasions where [basic research] produces something new and actionable — drugs that will save lives.”
That investment pays off in other ways too. In a 2025 analysis, United for Medical Research, a nonprofit coalition of academic research institutions, patient groups and members of the life sciences industry, found that every dollar the NIH spends generates $2.56 in economic activity.
A ‘brain drain’ on the horizon
Support from the NIH underpins not only research, but also the training pipeline for scientists, physicians and entrepreneurs — the workforce that fuels U.S. leadership in medicine, biotechnology and global health innovation. But continued American preeminence is not a given. Other countries are rapidly expanding their investments in science and research-intensive industries.
If current trends continue, the U.S. risks undergoing a severe “brain drain.” In a March survey conducted by Nature, 75% of U.S. scientists said they were considering looking for jobs abroad, most commonly in Europe and Canada.
This exodus would shrink domestic lab rosters, and could erode the collaborative power and downstream innovation that typically follows discovery. “It’s wonderful that scientists share everything as new discoveries come out,” Jameson said. “But, you tend to work with the people who are nearby. So if there’s a major discovery in another country, they will work with their pharmaceutical companies to develop it, not ours.”
At UCLA, Dr. Antoni Ribas has already started to see the ripple effects. “One of my senior scientists was on the job market,” Ribas said. “She had a couple of offers before the election, and those offers were higher than anything that she’s seen since. What’s being offered to people looking to start their own laboratories and independent research careers is going down — fast.”
In addition, Ribas, who directs the Tumor Immunology Program at the Jonsson Comprehensive Cancer Center, says that academia and industry are now closing their door to young talent. “The cuts in academia will lead to less positions being offered,” Ribas explained. “Institutions are becoming more reluctant to attract new faculty and provide startup packages.” At the same time, he said, the biotech industry is also struggling. “Even companies that were doing well are facing difficulties raising enough money to keep going, so we’re losing even more potential positions for researchers that are finishing their training.”
This comes at a particularly bitter moment. Scientific capabilities are soaring, with new tools allowing researchers to examine single cells in precise detail, probe every gene in the genome, and even trace diseases at the molecular level. “It’s a pity,” Ribas said, “Because we have made demonstrable progress in treating cancer and other diseases. But now we’re seeing this artificial attack being imposed on the whole enterprise.”
Without federal support, he warns, the system begins to collapse. “It’s as if you have a football team, but then you don’t have a football field. We have the people and the ideas, but without the infrastructure — the labs, the funding, the institutional support — we can’t do the research.”
For graduate students and postdoctoral fellows in particular, funding uncertainty has placed them in a precarious position.
“I think everyone is in this constant state of uncertainty,” said Julia Falo, a postdoctoral fellow at UC Berkeley and recording secretary of UAW 4811, the union for workers at the University of California. “We don’t know if our own grants are going to be funded, if our supervisor’s grants are going to be funded, or even if there will be faculty jobs in the next two years.”
She described colleagues who have had funding delayed or withdrawn without warning, sometimes for containing flagged words like “diverse” or “trans-” or even for having any international component.
The stakes are especially high for researchers on visas. As Falo points out for those researchers, “If the grant that is funding your work doesn’t exist anymore, you can be issued a layoff. Depending on your visa, you may have only a few months to find a new job — or leave the country.”
A graduate student at a California university, who requested anonymity due to the potential impact on their own position — which is funded by an NIH grant— echoed those concerns. “I think we’re all a little on edge. We’re all nervous,” they said. “We have to make sure that we’re planning only a year in advance, just so that we can be sure that we’re confident of where that funding is going to come from. In case it all of a sudden gets cut.”
The student said their decision to pursue research was rooted in a desire to study rare diseases often overlooked by industry. After transitioning from a more clinical setting, they were drawn to academia for its ability to fund smaller, higher-impact projects — the kind that might never turn a profit but could still change lives. They hope to one day become a principal investigator, or PI, and lead their own research lab.
Now, that path feels increasingly uncertain. “If things continue the way that they have been,” they said. “I’m concerned about getting or continuing to get NIH funding, especially as a new PI.”
Still, they are staying committed to academic research. “If we all shy off and back down, the people who want this defunded win.”
Rallying behind science
Already, researchers, universities and advocacy groups have been pushing back against the proposed budget cut.
On campuses across the country, students and researchers have organized rallies, marches and letter-writing campaigns to defend federal research funding. “Stand Up for Science” protests have occurred nationwide, and unions like UAW 4811 have mobilized across the UC system to pressure lawmakers and demand support for at-risk researchers. Their efforts have helped prevent additional state-level cuts in California: in June, the Legislature rejected Gov. Gavin Newsom’s proposed $129.7-million reduction to the UC budget.
Earlier this year, a coalition of public health groups, researchers and unions — led by the American Public Health Assn. — sued the NIH and Department of Health and Human Services over the termination of more than a thousand grants. On June 16, U.S. District Judge William Young ruled in their favor, ordering the NIH to reinstate over 900 canceled grants and calling the terminations unlawful and discriminatory. Although the ruling applies only to grants named in the lawsuit, it marks the first major legal setback to the administration’s research funding rollback.
Though much of the current spotlight (including that lawsuit) has focused on biomedical science, the proposed NIH cuts threaten research far beyond immunology or cancer. Fields ranging from mental health to environmental science stand to lose crucial support. And although some grants may be in the process of reinstatement, the damage already done — paused projects, lost jobs and upended career paths — can’t simply be undone with next year’s budget.
And yet, amid the fear and frustration, there’s still resolve. “I’m floored by the fact that the trainees are still devoted,” Jameson said. “They still come in and work hard. They’re still hopeful about the future.”
Science
Lyrids Meteor Shower: How to Watch, Peak Time and Weather Forecast
Our universe might be chock-full of cosmic wonder, but you can observe only a fraction of astronomical phenomena with the naked eye. Meteor showers, natural fireworks that streak brightly across the night sky, are one of them.
The latest observable meteor shower will be the Lyrids, which has been active since April 14 and is forecast to continue through April 30. The shower reaches its peak April 21 to 22, or Tuesday night into Wednesday morning.
According to NASA, the Lyrids are one of the oldest known meteor showers, and have been enjoyed by stargazers for nearly 3,000 years. Their bright, speedy streaks are caused by the dusty debris from a comet named Thatcher. They appear to spring from the constellation Lyra, which right now can be seen in the eastern sky at night in the Northern Hemisphere.
The moon will be about 27 percent full tonight, appearing as a thick crescent in the sky, according to the American Meteor Society.
To get a hint at when to best watch for the Lyrids, you can use this tool, which relies on data from the Global Meteor Network. It shows fireball activity levels in real time.
And while you gaze at the heavens, keep an eye out for other stray meteors streaking across the night sky. Skywatchers are reporting that the amount of fireballs is double what is usually seen by this point in the year.
Where meteor showers come from
There is a chance you might see a meteor on any given night, but you are most likely to catch one during a shower. Meteor showers are caused by Earth passing through the rubble trailing a comet or asteroid as it swings around the sun. This debris, which can be as small as a grain of sand, leaves behind a glowing stream of light as it burns up in Earth’s atmosphere.
Meteor showers occur around the same time every year and can last for days or weeks. But there is only a small window when each shower is at its peak, which happens when Earth reaches the densest part of the cosmic debris. The peak is the best time to look for a shower. From our point of view on Earth, the meteors will appear to come from the same point in the sky.
The Perseid meteor shower, for example, peaks in mid-August from the constellation Perseus. The Geminids, which occur every December, radiate from the constellation Gemini.
How to watch a meteor shower
Michelle Nichols, the director of public observing at the Adler Planetarium in Chicago, recommends forgoing the use of telescopes or binoculars while watching a meteor shower.
“You just need your eyes and, ideally, a dark sky,” she said.
That’s because meteors can shoot across large swaths of the sky, so observing equipment can limit your field of view.
Some showers are strong enough to produce up to 100 streaks an hour, according to the American Meteor Society, though you probably won’t see that many.
“Almost everybody is under a light-polluted sky,” Ms. Nichols said. “You may think you’re under a dark sky, but in reality, even in a small town, you can have bright lights nearby.”
Planetariums, local astronomy clubs or even maps like this one can help you figure out where to go to escape excessive light. The best conditions for catching a meteor shower are a clear sky with no moon or cloud cover, sometime between midnight and sunrise. (Moonlight affects visibility in the same way as light pollution, washing out fainter sources of light in the sky.) Make sure to give your eyes at least 30 minutes to adjust to seeing in the dark.
Ms. Nichols also recommends wearing layers, even during the summer. “You’re going to be sitting there for quite a while, watching,” she said. “It’s going to get chilly, even in August.”
Bring a cup of cocoa or tea for even more warmth. Then lie back, scan the sky and enjoy the show.
Where weather is least likely to affect your view
Storm systems sweep across the country in early spring, and some will be obscuring skies tonight. But there will still be plenty of areas with clear skies, particularly in parts of the central United States.
“The best spot is going to be in the Upper Midwest,” said Rich Bann, a meteorologist with the Weather Prediction Center.
Minnesota, Wisconsin and Iowa will offer especially good sky-viewing weather and a beach on the Great Lakes could be a nice spot to look up at the stars.
But don’t expect to view the show from Chicago, as Illinois could see some thunderstorms. The weather will be better in the Northern and Central Plains, particularly the eastern Dakotas.
High, wispy clouds are expected over the Ohio and Tennessee Valleys and into parts of the Mid-Atlantic. But, Mr. Bann said, “you may be able to see some shooting stars through thin clouds.”
Clouds will be draped across much of the Southeast and the Northeast, though there could be some clearing in Florida, Georgia, the Carolinas and Virginia. Remember, the meteors could be visible all night long. If you look outside and see clouds, try again later.
Catching the spectacle will be challenging across much of the West, particularly from Washington into Northern California, where a storm system is bringing rain and snow. That system will move east overnight.
There are likely to be some pockets of clear skies at times across southern Nevada, northwest Arizona and southwest Utah, Mr. Bann said.
Amy Graff contributed reporting.
Science
FBI probes cases of missing or dead scientists, including four from the L.A. area
WASHINGTON — Amid growing national security concerns, the FBI said Tuesday that it has launched a broad investigation in the deaths or disappearances of at least 10 scientists and staff connected to highly sensitive research, including four from the Los Angeles area.
“The FBI is spearheading the effort to look for connections into the missing and deceased scientists. We are working with the Department of Energy, Department of War, and with our state and state and local law enforcement partners to find answers,” the agency said in a statement.
The FBI’s announcement comes after the House Oversight Committee announced that it would investigate reports of the disappearance and deaths of the scientists, sending letters seeking information from the agencies involved in the federal inquiry as well as NASA, which owns the Jet Propulsion Laboratory in La Cañada Flintridge, where three of the missing or dead scientists worked.
“If the reports are accurate, these deaths and disappearances may represent a grave threat to U.S. national security and to U.S. personnel with access to scientific secrets,” Reps. James Comer (R-Ky.), chairman of the committee, and Eric Burlison (R-Mo.) wrote in the letters.
President Trump told reporters last week that he had been briefed on the missing and dead scientists, which he described as “pretty serious stuff.” He said at the time that he expected answers on whether the deaths were connected “in the next week and a half.”
Michael David Hicks, who studied comets and asteroids at JPL, was the first of the scientists who disappeared or died. He died on July 30, 2023, at the age of 59. No cause of death was disclosed.
A year later, JPL physicist Frank Maiwald died at 61, with no cause of death disclosed.
Two other Los Angeles scientists are part of the string of deaths and disappearances.
On June 22, 2025, Monica Jacinto Reza, a materials scientist at JPL, disappeared while on a hike near Mt. Waterman in the San Gabriel Mountains.
On Feb. 16, Caltech astrophysicist Carl Grillmair was fatally shot on the porch of his Llano home. The Los Angeles County Sheriff’s department arrested Freddy Snyder, 29, in connection with the shooting. Snyder had been arrested in December on suspicion of trespassing on Grillmair’s property.
Snyder has been charged with murder.
There is no evidence at this point that the deaths and disappearances, which occurred over a span of four years, are connected.
A spokesperson for NASA, which owns JPL, said in a statement on X that the agency is “coordinating and cooperating with the relevant agencies in relation to the missing scientists.
“At this time, nothing related to NASA indicates a national security threat,” agency spokesperson Bethany Stevens wrote. “The agency is committed to transparency and will provide more information as able.”
Representatives from Caltech, which manages JPL, did not immediately respond to a request for comment.
Science
What’s in a Name? For These Snails, Legal Protection
The sun had barely risen over the Pacific Ocean when a small motorboat carrying a team of Indigenous artisans and Mexican biologists dropped anchor in a rocky cove near Bahías de Huatulco.
Mauro Habacuc Avendaño Luis, one of the craftsmen, was the first to wade to shore. With an agility belying his age, he struck out over the boulders exposed by low tide. Crouching on a slippery ledge pounded by surf, he reached inside a crevice between two rocks. There, lodged among the urchins, was a snail with a knobby gray shell the size of a walnut. The sight might not dazzle tourists who travel here to see humpback whales, but for Mr. Avendaño, 85, these drab little mollusks represent a way of life.
Marine snails in the genus Plicopurpura are sacred to the Mixtec people of Pinotepa de Don Luis, a small town in southwestern Oaxaca. Men like Mr. Avendaño have been sustainably “milking” them for radiant purple dye for at least 1,500 years. The color suffuses Mixtec textiles and spiritual beliefs. Called tixinda, it symbolizes fertility and death, as well as mythic ties between lunar cycles, women and the sea.
The future of these traditions — and the fate of the snails — are uncertain. The mollusks are subject to intense poaching pressure despite federal protections intended to protect them. Fishermen break them (and the other mollusks they eat) open and sell the meat to local restaurants. Tourists who comb the beaches pluck snails off the rocks and toss them aside.
A severe earthquake in 2020 thrust formerly submerged parts of their habitat above sea level, fatally tossing other mollusks in the snail’s food web to the air, and making once inaccessible places more available to poachers.
Decades ago, dense clusters of snails the size of doorknobs were easy to find, according to Mr. Avendaño. “Full of snails,” he said, sweeping a calloused, violet-stained hand across the coves. Now, most of the snails he finds are small, just over an inch, and yield only a few milliliters of dye.
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