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Weight Loss Drug From Highly Toxic Plant Can Now Be Produced Simply and Sustainably

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Tuesday, March 12, 2024

Root of Tripterygium wilfordii Celastrol is produced in the root of the traditional medicinal plant Tripterygium wilfordii. Credit: Nikolaj HansenA traditional Chinese medicinal plant has huge potential as a weight loss drug. However, due to the plant’s notorious toxicity, no one has yet succeeded in exploiting it effectively. Researchers from the University of Copenhagen have not only found the formula for the synthetic production of the compound – they have even found a simple and sustainable recipe using ordinary yeast as the main ingredient.In China, children are taught to steer clear of this plant. The plant, Thunder god vine (Chinese: 雷公藤), which in China has earned the nickname “Seven Steps to Death,” is so poisonous that a person risks death only a few steps after consuming it.But despite its deadliness, the Thunder god vine (Tripterygium wilfordii) hides something quite beneficial to us humans as well. Within its roots, the plant produces the compound celastrol, a chemical agent with powerful anti-obesity properties. Experiments using mice on a high fat diet have shown that the mice given celastrol gained 45% less weight than the control group. Experiments with human cells have shown similar effects.HOW THE DRUG WORKSSome people are able to eat a lot without gaining weight because our metabolism knows when we eat a lot and secretes certain hormones that cause us to burn more calories. One of these hormones is leptin.People who are overweight become resistant to leptin due to an overproduction of the hormone, which leads to an inflammation of the hypothalamus. As a result, the body does not receive the signal. Celastrol re-sensitizes the body to leptin.The effect is due to the fact that celastrol reactivates the body’s sensitivity to leptin, a hormone to which overweight people become resistant. Leptin is one of the hormones that causes the body to burn more calories and thereby regulate weight.How does one get their hands on the ‘good’ substance without the toxicity that typically accompanies it? That is the question.“For obvious reasons, a person cannot just eat the plant and benefit from the drug. So what do we do? The problem with extracting celastrol from the nature source is that it is very hard to separate it from the other toxic molecules that the plant is full of. So far, there has been no effective method to achieve this,” says Sotirios Kampranis, professor at the Department of Plant and Environmental Sciences.Yong Zhao and Sotirios KampranisYong Zhao and Sotirios Kampranis with celastrol produced in yeast cells Credit: Yao-Tao DuanYeast as ‘surrogate mother’In approaching the problem, the research team from the Department of Plant and Environmental Sciences sought to find a way to produce the substance biotechnologically. Led by Assistant Professor Yong Zhao, the researchers were the first to map the pathway with all 15 biochemical steps that the plant undergoes as it forms celastrol. These steps are vital to know in order to recreate the substance biosynthetically.THUNDER GOD VINEThe plant, Thunder god vine, which in Latin is called Tripterygium wilfordii, has been used for thousands of years in traditional Chinese medicine to treat rheumatoid arthritis and as a contraceptive.The plant grows in the mountainous regions of Southern China, where local collectors harvest it. Thus, in addition to being extremely toxic, it is also difficult to find.“The compound is extracted from the plant root. And the plant takes at least three years to grow large enough for it to be harvested. Therefore, an entire plant must be sacrificed to acquire the drug. So it is not a tenable way,” Sotirios Kampranis points out.“We found out how the plant forms celastrol by finding all of the steps in the manufacturing process. This means that we could take the genes and enzymes that make the substance and put them into another organism that does not produce toxic substances. And that’s what we’ve done with yeast,” says Yong Zhao.The researchers were able to produce synthetic celastrol in a tank with ordinary yeast that was used as a host organism within which the substance was produced.“Imagine, you just need to feed the celastrol molecule table sugar, and by doing so, you get a compound that is almost in pure form without the toxic compounds that otherwise come with it in nature. The process is simple and effective – it only takes around a week to get the final product. And it takes place without the toxic solvents or catalysts that are typically used in chemical syntheses. I believe there is a huge potential here,” says Sotirios Kampranis.Isolated celastrolIsolated celastrol produced by the Kampranis lab. Celastrol is a complex plant specialized metabolite with a reddish color. Credit: Yong ZhaoThe greenest – and only – methodToday, most pharmaceuticals are created through synthesis based on crude oil-based petrochemicals. And the traditional ways of developing synthetic drugs are actually not even an option, as Yong Zhao explains:“Because the celastrol molecule is so complex, there are currently only very inefficient chemical synthesis methods which are not applicable for large-scale production. So our method is not only a green method – it is also the only real method that exists.”The researchers point out that yeast is widely used in the biotech industry, where one finds all the necessary know-how and infrastructure to produce celastrol at a large scale.“That is precisely why we have chosen to use yeast as an organism. While academics develop the technology, it is important that it comes in a form that is useful for industry, where the technology can be further developed to make products that can help us all,” says Sotirios Kampranis.The next step is more closely investigating the drug’s potential to treat obesity in humans. The researchers hypothesize that a potential treatment can either be done with celastrol alone or combined with other therapies.“For example, one can imagine a treatment where celastrol is combined with other anti-obesity drugs to achieve a more robust effect. Because the more targets in the body that are hit, the better. Indeed, one often sees a synergistic effect when several agents are at play simultaneously. But here, of course, the pharmaceutical industry must take over,” says Yong Zhao.Reference: “Biosynthesis and biotechnological production of the anti-obesity agent celastrol” by Yong Zhao, Nikolaj L. Hansen, Yao-Tao Duan, Meera Prasad, Mohammed S. Motawia, Birger L. Møller, Irini Pateraki, Dan Staerk, Søren Bak, Karel Miettinen and Sotirios C. Kampranis, 26 June 2023, Nature Chemistry.DOI: 10.1038/s41557-023-01245-7The researchers behind the study are: Yong Zhao, Nikolaj L. Hansen, Yao-Tao Duan, Meera Prasad, Mohammed S. Motawia, Birger L. Møller, Irini Pateraki, Dan Staerk, Søren Bak, Karel Miettinen and Sotirios C. Kampranis, all from the Department of Plant and Environmental Sciences and the Department of Drug Design and Pharmacology at the University of Copenhagen.The University of Copenhagen has filed for a patent application for the invention and is currently in talks with potential partners about commercializing the method.The project is supported by the Novo Nordisk Foundation.

A traditional Chinese medicinal plant has huge potential as a weight loss drug. However, due to the plant’s notorious toxicity, no one has yet succeeded...

Root Medicinal Plant Tripterygium wilfordii

Root of Tripterygium wilfordii Celastrol is produced in the root of the traditional medicinal plant Tripterygium wilfordii. Credit: Nikolaj Hansen

A traditional Chinese medicinal plant has huge potential as a weight loss drug. However, due to the plant’s notorious toxicity, no one has yet succeeded in exploiting it effectively. Researchers from the University of Copenhagen have not only found the formula for the synthetic production of the compound – they have even found a simple and sustainable recipe using ordinary yeast as the main ingredient.

In China, children are taught to steer clear of this plant. The plant, Thunder god vine (Chinese: 雷公藤), which in China has earned the nickname “Seven Steps to Death,” is so poisonous that a person risks death only a few steps after consuming it.

But despite its deadliness, the Thunder god vine (Tripterygium wilfordii) hides something quite beneficial to us humans as well. Within its roots, the plant produces the compound celastrol, a chemical agent with powerful anti-obesity properties.

Experiments using mice on a high fat diet have shown that the mice given celastrol gained 45% less weight than the control group. Experiments with human cells have shown similar effects.

HOW THE DRUG WORKS

Some people are able to eat a lot without gaining weight because our metabolism knows when we eat a lot and secretes certain hormones that cause us to burn more calories. One of these hormones is leptin.

People who are overweight become resistant to leptin due to an overproduction of the hormone, which leads to an inflammation of the hypothalamus. As a result, the body does not receive the signal. Celastrol re-sensitizes the body to leptin.

The effect is due to the fact that celastrol reactivates the body’s sensitivity to leptin, a hormone to which overweight people become resistant. Leptin is one of the hormones that causes the body to burn more calories and thereby regulate weight.

How does one get their hands on the ‘good’ substance without the toxicity that typically accompanies it? That is the question.

“For obvious reasons, a person cannot just eat the plant and benefit from the drug. So what do we do? The problem with extracting celastrol from the nature source is that it is very hard to separate it from the other toxic molecules that the plant is full of. So far, there has been no effective method to achieve this,” says Sotirios Kampranis, professor at the Department of Plant and Environmental Sciences.

Yong Zhao and Sotirios Kampranis

Yong Zhao and Sotirios Kampranis
Yong Zhao and Sotirios Kampranis with celastrol produced in yeast cells Credit: Yao-Tao Duan

Yeast as ‘surrogate mother’

In approaching the problem, the research team from the Department of Plant and Environmental Sciences sought to find a way to produce the substance biotechnologically. Led by Assistant Professor Yong Zhao, the researchers were the first to map the pathway with all 15 biochemical steps that the plant undergoes as it forms celastrol. These steps are vital to know in order to recreate the substance biosynthetically.

THUNDER GOD VINE

The plant, Thunder god vine, which in Latin is called Tripterygium wilfordii, has been used for thousands of years in traditional Chinese medicine to treat rheumatoid arthritis and as a contraceptive.

The plant grows in the mountainous regions of Southern China, where local collectors harvest it. Thus, in addition to being extremely toxic, it is also difficult to find.

“The compound is extracted from the plant root. And the plant takes at least three years to grow large enough for it to be harvested. Therefore, an entire plant must be sacrificed to acquire the drug. So it is not a tenable way,” Sotirios Kampranis points out.

“We found out how the plant forms celastrol by finding all of the steps in the manufacturing process. This means that we could take the genes and enzymes that make the substance and put them into another organism that does not produce toxic substances. And that’s what we’ve done with yeast,” says Yong Zhao.

The researchers were able to produce synthetic celastrol in a tank with ordinary yeast that was used as a host organism within which the substance was produced.

“Imagine, you just need to feed the celastrol molecule table sugar, and by doing so, you get a compound that is almost in pure form without the toxic compounds that otherwise come with it in nature. The process is simple and effective – it only takes around a week to get the final product. And it takes place without the toxic solvents or catalysts that are typically used in chemical syntheses. I believe there is a huge potential here,” says Sotirios Kampranis.

Isolated Celastrol

Isolated celastrol
Isolated celastrol produced by the Kampranis lab. Celastrol is a complex plant specialized metabolite with a reddish color. Credit: Yong Zhao

The greenest – and only – method

Today, most pharmaceuticals are created through synthesis based on crude oil-based petrochemicals. And the traditional ways of developing synthetic drugs are actually not even an option, as Yong Zhao explains:

“Because the celastrol molecule is so complex, there are currently only very inefficient chemical synthesis methods which are not applicable for large-scale production. So our method is not only a green method – it is also the only real method that exists.”

The researchers point out that yeast is widely used in the biotech industry, where one finds all the necessary know-how and infrastructure to produce celastrol at a large scale.

“That is precisely why we have chosen to use yeast as an organism. While academics develop the technology, it is important that it comes in a form that is useful for industry, where the technology can be further developed to make products that can help us all,” says Sotirios Kampranis.

The next step is more closely investigating the drug’s potential to treat obesity in humans. The researchers hypothesize that a potential treatment can either be done with celastrol alone or combined with other therapies.

“For example, one can imagine a treatment where celastrol is combined with other anti-obesity drugs to achieve a more robust effect. Because the more targets in the body that are hit, the better. Indeed, one often sees a synergistic effect when several agents are at play simultaneously. But here, of course, the pharmaceutical industry must take over,” says Yong Zhao.

Reference: “Biosynthesis and biotechnological production of the anti-obesity agent celastrol” by Yong Zhao, Nikolaj L. Hansen, Yao-Tao Duan, Meera Prasad, Mohammed S. Motawia, Birger L. Møller, Irini Pateraki, Dan Staerk, Søren Bak, Karel Miettinen and Sotirios C. Kampranis, 26 June 2023, Nature Chemistry.
DOI: 10.1038/s41557-023-01245-7

The researchers behind the study are: Yong Zhao, Nikolaj L. Hansen, Yao-Tao Duan, Meera Prasad, Mohammed S. Motawia, Birger L. Møller, Irini Pateraki, Dan Staerk, Søren Bak, Karel Miettinen and Sotirios C. Kampranis, all from the Department of Plant and Environmental Sciences and the Department of Drug Design and Pharmacology at the University of Copenhagen.

The University of Copenhagen has filed for a patent application for the invention and is currently in talks with potential partners about commercializing the method.

The project is supported by the Novo Nordisk Foundation.

Read the full story here.
Photos courtesy of

Forever Chemicals' Might Triple Teens' Risk Of Fatty Liver Disease

By Dennis Thompson HealthDay ReporterTHURSDAY, Jan. 8, 2026 (HealthDay News) — PFAS “forever chemicals” might nearly triple a young person’s risk...

By Dennis Thompson HealthDay ReporterTHURSDAY, Jan. 8, 2026 (HealthDay News) — PFAS “forever chemicals” might nearly triple a young person’s risk of developing fatty liver disease, a new study says.Each doubling in blood levels of the PFAS chemical perfluorooctanoic acid is linked to 2.7 times the odds of fatty liver disease among teenagers, according to findings published in the January issue of the journal Environmental Research.Fatty liver disease — also known as metabolic dysfunction-associated steatotic liver disease (MASLD) — occurs when fat builds up in the organ, leading to inflammation, scarring and increased risk of cancer.About 10% of all children, and up to 40% of children with obesity, have fatty liver disease, researchers said in background notes.“MASLD can progress silently for years before causing serious health problems,” said senior researcher Dr. Lida Chatzi, a professor of population and public health sciences and pediatrics at the Keck School of Medicine of USC in Los Angeles.“When liver fat starts accumulating in adolescence, it may set the stage for a lifetime of metabolic and liver health challenges,” Chatzi added in a news release. “If we reduce PFAS exposure early, we may help prevent liver disease later. That’s a powerful public health opportunity.”Per- and polyfluoroalkyl substances (PFAS) are called “forever chemicals” because they combine carbon and fluorine molecules, one of the strongest chemical bonds possible. This makes PFAS removal and breakdown very difficult.PFAS compounds have been used in consumer products since the 1940s, including fire extinguishing foam, nonstick cookware, food wrappers, stain-resistant furniture and waterproof clothing.More than 99% of Americans have measurable PFAS in their blood, and at least one PFAS chemical is present in roughly half of U.S. drinking water supplies, researchers said.“Adolescents are particularly more vulnerable to the health effects of PFAS as it is a critical period of development and growth,” lead researcher Shiwen “Sherlock” Li, an assistant professor of public health sciences at the University of Hawaii, said in a news release.“In addition to liver disease, PFAS exposure has been associated with a range of adverse health outcomes, including several types of cancer,” Li said.For the new study, researchers examined data on 284 Southern California adolescents and young adults gathered as part of two prior USC studies.All of the participants already had a high risk of metabolic disease because their parents had type 2 diabetes or were overweight, researchers said.Their PFAS levels were measured through blood tests, and liver fat was assessed using MRI scans.Higher blood levels of two common PFAS — perfluorooctanoic acid (PFOA) and perfluoroheptanoic acid (PFHpA) — were linked to an increased risk of fatty liver disease.Results showed a young person’s risk was even higher if they smoked or carried a genetic variant known to influence liver fat.“These findings suggest that PFAS exposures, genetics and lifestyle factors work together to influence who has greater risk of developing MASLD as a function of your life stage,” researcher Max Aung, assistant professor of population and public health sciences at the Keck School of Medicine, said in a news release.“Understanding gene and environment interactions can help advance precision environmental health for MASLD,” he added.The study also showed that fatty liver disease became more common as teens grew older, adding to evidence that younger people might be more vulnerable to PFAS exposure, Chatzi said.“PFAS exposures not only disrupt liver biology but also translate into real liver disease risk in youth,” Chatzi said. “Adolescence seems to be a critical window of susceptibility, suggesting PFAS exposure may matter most when the liver is still developing.”The Environmental Working Group has more on PFAS.SOURCES: Keck School of Medicine of USC, news release, Jan. 6, 2026; Environmental Research, Jan. 1, 2026Copyright © 2026 HealthDay. All rights reserved.

China Announces Another New Trade Measure Against Japan as Tensions Rise

China has escalated its trade tensions with Japan by launching an investigation into imported dichlorosilane, a chemical gas used in making semiconductors

BEIJING (AP) — China escalated its trade tensions with Japan on Wednesday by launching an investigation into imported dichlorosilane, a chemical gas used in making semiconductors, a day after it imposed curbs on the export of so-called dual-use goods that could be used by Japan’s military.The Chinese Commerce Ministry said in a statement that it had launched the investigation following an application from the domestic industry showing the price of dichlorosilane imported from Japan had decreased 31% between 2022 and 2024.“The dumping of imported products from Japan has damaged the production and operation of our domestic industry,” the ministry said.The measure comes a day after Beijing banned exports to Japan of dual-use goods that can have military applications.Beijing has been showing mounting displeasure with Tokyo after new Japanese Prime Minister Sanae Takaichi suggested late last year that her nation's military could intervene if China were to take action against Taiwan — an island democracy that Beijing considers its own territory.Tensions were stoked again on Tuesday when Japanese lawmaker Hei Seki, who last year was sanctioned by China for “spreading fallacies” about Taiwan and other disputed territories, visited Taiwan and called it an independent country. Also known as Yo Kitano, he has been banned from entering China. He told reporters that his arrival in Taiwan demonstrated the two are “different countries.”“I came to Taiwan … to prove this point, and to tell the world that Taiwan is an independent country,” Hei Seki said, according to Taiwan’s Central News Agency.“The nasty words of a petty villain like him are not worth commenting on,” Chinese Foreign Ministry spokesperson Mao Ning retorted when asked about his comment. Fears of a rare earths curb Masaaki Kanai, head of Asia Oceanian Affairs at Japan's Foreign Ministry, urged China to scrap the trade curbs, saying a measure exclusively targeting Japan that deviates from international practice is unacceptable. Japan, however, has yet to announce any retaliatory measures.As the two countries feuded, speculation rose that China might target rare earths exports to Japan, in a move similar to the rounds of critical minerals export restrictions it has imposed as part of its trade war with the United States.China controls most of the global production of heavy rare earths, used for making powerful, heat-resistance magnets used in industries such as defense and electric vehicles.While the Commerce Ministry did not mention any new rare earths curbs, the official newspaper China Daily, seen as a government mouthpiece, quoted anonymous sources saying Beijing was considering tightening exports of certain rare earths to Japan. That report could not be independently confirmed. Improved South Korean ties contrast with Japan row As Beijing spars with Tokyo, it has made a point of courting a different East Asian power — South Korea.On Wednesday, South Korean President Lee Jae Myung wrapped up a four-day trip to China – his first since taking office in June. Lee and Chinese President Xi Jinping oversaw the signing of cooperation agreements in areas such as technology, trade, transportation and environmental protection.As if to illustrate a contrast with the China-Japan trade frictions, Lee joined two business events at which major South Korean and Chinese companies pledged to collaborate.The two sides signed 24 export contracts worth a combined $44 million, according to South Korea’s Ministry of Trade, Industry and Resources. During Lee’s visit, Chinese media also reported that South Korea overtook Japan as the leading destination for outbound flights from China’s mainland over the New Year’s holiday.China has been discouraging travel to Japan, saying Japanese leaders’ comments on Taiwan have created “significant risks to the personal safety and lives of Chinese citizens in Japan.”Copyright 2026 The Associated Press. All rights reserved. This material may not be published, broadcast, rewritten or redistributed.Photos You Should See – December 2025

Pesticide industry ‘immunity shield’ stripped from US appropriations bill

Democrats and the Make America Healthy Again movement pushed back on the rider in a funding bill led by BayerIn a setback for the pesticide industry, Democrats have succeeded in removing a rider from a congressional appropriations bill that would have helped protect pesticide makers from being sued and could have hindered state efforts to warn about pesticide risks.Chellie Pingree, a Democratic representative from Maine and ranking member of the House appropriations interior, environment, and related agencies subcommittee, said Monday that the controversial measure pushed by the agrochemical giant Bayer and industry allies has been stripped from the 2026 funding bill. Continue reading...

In a setback for the pesticide industry, Democrats have succeeded in removing a rider from a congressional appropriations bill that would have helped protect pesticide makers from being sued and could have hindered state efforts to warn about pesticide risks.Chellie Pingree, a Democratic representative from Maine and ranking member of the House appropriations interior, environment, and related agencies subcommittee, said Monday that the controversial measure pushed by the agrochemical giant Bayer and industry allies has been stripped from the 2026 funding bill.The move is final, as Senate Republican leaders have agreed not to revisit the issue, Pingree said.“I just drew a line in the sand and said this cannot stay in the bill,” Pingree told the Guardian. “There has been intensive lobbying by Bayer. This has been quite a hard fight.”The now-deleted language was part of a larger legislative effort that critics say is aimed at limiting litigation against pesticide industry leader Bayer, which sells the widely used Roundup herbicides.An industry alliance set up by Bayer has been pushing for both state and federal laws that would make it harder for consumers to sue over pesticide risks to human health and has successfully lobbied for the passing of such laws in Georgia and North Dakota so far.The specific proposed language added to the appropriations bill blocked federal funds from being used to “issue or adopt any guidance or any policy, take any regulatory action, or approve any labeling or change to such labeling” inconsistent with the conclusion of an Environmental Protection Agency (EPA) human health assessment.Critics said the language would have impeded states and local governments from warning about risks of pesticides even in the face of new scientific findings about health harms if such warnings were not consistent with outdated EPA assessments. The EPA itself would not be able to update warnings without finalizing a new assessment, the critics said.And because of the limits on warnings, critics of the rider said, consumers would have found it difficult, if not impossible, to sue pesticide makers for failing to warn them of health risks if the EPA assessments do not support such warnings.“This provision would have handed pesticide manufacturers exactly what they’ve been lobbying for: federal preemption that stops state and local governments from restricting the use of harmful, cancer-causing chemicals, adding health warnings, or holding companies accountable in court when people are harmed,” Pingree said in a statement. “It would have meant that only the federal government gets a say – even though we know federal reviews can take years, and are often subject to intense industry pressure.”Pingree tried but failed to overturn the language in a July appropriations committee hearing.Bayer, the key backer of the legislative efforts, has been struggling for years to put an end to thousands of lawsuits filed by people who allege they developed cancer from their use of Roundup and other glyphosate-based weed killers sold by Bayer. The company inherited the litigation when it bought Monsanto in 2018 and has paid out billions of dollars in settlements and jury verdicts but still faces several thousand ongoing lawsuits. Bayer maintains its glyphosate-based herbicides do not cause cancer and are safe when used as directed.When asked for comment on Monday, Bayer said that no company should have “blanket immunity” and it disputed that the appropriations bill language would have prevented anyone from suing pesticide manufacturers. The company said it supports state and federal legislation “because the future of American farming depends on reliable science-based regulation of important crop protection products – determined safe for use by the EPA”.The company additionally states on its website that without “legislative certainty”, lawsuits over its glyphosate-based Roundup and other weed killers can impact its research and product development and other “important investments”.Pingree said her efforts were aided by members of the Make America Healthy Again (Maha) movement who have spent the last few months meeting with congressional members and their staffers on this issue. She said her team reached out to Maha leadership in the last few days to pressure Republican lawmakers.“This is the first time that we’ve had a fairly significant advocacy group working on the Republican side,” she said.Last week, Zen Honeycutt, a Maha leader and founder of the group Moms Across America, posted a “call to action”, urging members to demand elected officials “Stop the Pesticide Immunity Shield”.“A lot of people helped make this happen,” Honeycutt said. “Many health advocates have been fervently expressing their requests to keep chemical companies accountable for safety … We are delighted that our elected officials listened to so many Americans who spoke up and are restoring trust in the American political system.”Pingree said the issue is not dead. Bayer has “made this a high priority”, and she expects to see continued efforts to get industry friendly language inserted into legislation, including into the new Farm Bill.“I don’t think this is over,” she said.This story is co-published with the New Lede, a journalism project of the Environmental Working Group

Forever Chemicals' Common in Cosmetics, but FDA Says Safety Data Are Scant

By Deanna Neff HealthDay ReporterSATURDAY, Jan. 3, 2026 (HealthDay News) — Federal regulators have released a mandated report regarding the...

By Deanna Neff HealthDay ReporterSATURDAY, Jan. 3, 2026 (HealthDay News) — Federal regulators have released a mandated report regarding the presence of "forever chemicals" in makeup and skincare products. Forever chemicals — known as perfluoroalkyl and polyfluoroalkyl substances or PFAS — are manmade chemicals that don't break down and have built up in people’s bodies and the environment. They are sometimes added to beauty products intentionally, and sometimes they are contaminants. While the findings confirm that PFAS are widely used in the beauty industry, the U.S. Food and Drug Administration (FDA) admitted it lacks enough scientific evidence to determine if they are truly safe for consumers.The new report reveals that 51 forever chemicals — are used in 1,744 cosmetic formulations. These synthetic chemicals are favored by manufacturers because they make products waterproof, increase their durability and improve texture.FDA scientists focused their review on the 25 most frequently used PFAS, which account for roughly 96% of these chemicals found in beauty products. The results were largely unclear. While five were deemed to have low safety concerns, one was flagged for potential health risks, and safety of the rest could not be confirmed.FDA Commissioner Dr. Marty Makary expressed concern over the difficulty in accessing private research. “Our scientists found that toxicological data for most PFAS are incomplete or unavailable, leaving significant uncertainty about consumer safety,” Makary said in a news release, adding that “this lack of reliable data demands further research.”Despite growing concerns about their potential toxicity, no federal laws specifically ban their use in cosmetics.The FDA report focuses on chemicals that are added to products on purpose, rather than those that might show up as accidental contaminants. Moving forward, FDA plans to work closely with the U.S. Centers for Disease Control and Prevention (CDC) and the Environmental Protection Agency (EPA) to update and strengthen recommendations on PFAS across the retail and food supply chain, Makary said. The agency has vowed to devote more resources to monitoring these chemicals and will take enforcement action if specific products are proven to be dangerous.The U.S. Food and Drug Administration provides updates and consumer guidance on the use of PFAS in cosmetics.SOURCE: U.S. Food and Drug Administration, news release, Dec. 29, 2025Copyright © 2026 HealthDay. All rights reserved.

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