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Blood clot sting in the tail of scorpion venom

A study by Professor Bryan Fry and Sam Campbell from the University of Queensland found that scorpion venom activates major clotting factors in human blood, particularly Factors VII and X. The research also identified small-molecule metalloprotease inhibitors that can neutralize the procoagulant effect.

SourceUniversity of Queensland·JournalBiochimie·TypeExperimental study·DateMar 3, 2026

Banning lead in gas worked. The proof is in our hair

Researchers found a significant decrease in lead concentrations in hair samples from Utahns, spanning over 100 years. The study demonstrates the impact of environmental regulations on public health and highlights the importance of protecting against toxic metals like lead.

SourceUniversity of Utah·JournalProceedings of the National Academy of Sciences·TypeObservational study·DateFeb 2, 2026

New study finds concerning sea star response to a neurotoxin

A new study found potentially concerning concentrations of domoic acid in wild sea stars, which could have cascading consequences for marine biodiversity. The researchers also observed behavioral and physiological changes in response to the neurotoxin, raising concerns about its potential impacts on keystone species.

SourceBigelow Laboratory for Ocean Sciences·JournalDiseases of Aquatic Organisms·TypeExperimental study·DateAug 28, 2025

Neurotoxic? New chemical screening approach provides rapid answers

Researchers develop efficient testing procedure to quickly detect neurotoxic effects in humans, closing the gap with traditional animal experiments. Chlorophene is identified as a substance that disrupts learning and memory processes, exhibiting paradoxical excitation, a previously unknown effect.

SourceHelmholtz Centre for Environmental Research - UFZ·JournalEnvironmental Health Perspectives·TypeExperimental study·DateAug 12, 2025

Tree rings track atmospheric mercury cheaply

Researchers at Cornell University have developed a cost-effective way to track atmospheric mercury using wild fig tree rings in the Peruvian Amazon. This method offers a potential solution for understanding mercury spread and impact on ecosystems.

SourceCornell University·JournalFrontiers in Environmental Science·DateApr 9, 2025

Scientists decode black widow spider venom

Researchers at the University of Münster deciphered the structure of α-latrotoxin, a potent neurotoxin that interferes with nervous system transmission. The toxin forms calcium-permeable membrane pores, inducing muscle contractions and spasms.

SourceUniversity of Münster·JournalNature Communications·TypeImaging analysis·DateOct 7, 2024

New possibilities for a healing toxin

PSI researchers develop antibody-like proteins that accelerate Botox's effects on nerve signals, suggesting faster pain relief. The discovery opens new options for therapeutic use of botulinum toxin A1 in treating conditions like cramping muscles and faulty nerve signals.

SourcePaul Scherrer Institute·JournalNature Communications·TypeExperimental study·DateDec 18, 2023

Human emissions increased mercury in the atmosphere sevenfold

Research from Harvard John A. Paulson School of Engineering and Applied Sciences estimates that humans have increased atmospheric mercury levels sevenfold, with a pre-anthropogenic baseline of around 580 megagrams. Human emissions from coal-fired power plants and waste-incineration are responsible for the majority of this increase.

A Botox discovery that could save lives

Researchers have discovered how Botox, a deadly neurotoxin, enters brain cells, allowing for potential therapeutic targets to be identified. The study, published in the EMBO Journal, reveals that Botox hijacks a complex of receptors to interrupt communication between nerves and muscle cells, causing paralysis.

SourceUniversity of Queensland·JournalThe EMBO Journal·TypeExperimental study·DateMay 26, 2023

Global flows of toxic mercury

The global biogeochemical mercury cycle is closely tied to international trade routes, with emissions primarily linked to artisanal gold mining and smelting. Strategies to mitigate mercury exposure include production-side controls and consumption taxes to influence consumer behavior.

SourcePNAS Nexus·JournalPNAS Nexus·DateMay 23, 2023

Deciphering the biosynthetic gene cluster for potent freshwater toxin

Researchers discovered and validated the enzymes responsible for producing guanitoxin, a potent neurotoxin associated with freshwater harmful algal blooms. The study revealed that guanitoxin-producing cyanobacteria are more prevalent than known in the US, enabling new molecular diagnostic testing to protect public health.

SourceUniversity of California - San Diego·JournalJournal of the American Chemical Society·TypeMeta-analysis·DateMay 20, 2022

A killer revealed: A cyanobacterial neurotoxin responsible for the largest undiagnosed mass mortalit

A new cyanobacterial neurotoxin called aetokthonotoxin has been identified as the cause of vacuolar myelinopathy in waterbirds and raptors, with exposure to bromide-enriched invasive water plants playing a key role. Bioaccumulation of the toxin affects not only the birds that eat the contaminated plants but also their predators.

Stanford researchers find lead in turmeric

A Stanford-led study reveals that turmeric is sometimes adulterated with lead-laced chemical compounds in Bangladesh, leading to elevated blood lead levels among consumers. The researchers aim to shift consumer behaviors, reduce incentives for the practice and develop business opportunities to promote lead-free turmeric.

SourceStanford University·JournalEnvironmental Research·DateSep 24, 2019

Spider venom is a dangerous cocktail

Researchers at the University of Bern studied spider venom from the Cupiennius salei species, discovering a dual prey-inactivation strategy involving neurotoxins and metabolic pathways. This complex effect mechanism attacks an organism's muscles, nervous system, and internal homeostasis, causing paralysis, pain, and inflammation.

SourceUniversity of Bern·JournalToxins·DateMay 2, 2019

Cheap and simple detection of neurotoxic chemicals

Researchers from Kumamoto University developed a novel electrochemical sensing technique for detecting neurotoxic agents, including Nereistoxin, which showed high sensitivity and specificity. The method uses gold electrodes with adsorbed NRT layers, achieving detection limits of 1-25 micro-grams per milliliter of human serum.

SourceKumamoto University·JournalAnalytical Chemistry·DateAug 1, 2017

New insights into the toxin behind tetanus

Researchers at Stockholm University have determined the three-dimensional structure of the entire tetanus toxin protein, revealing its exact atomic positions. The discovery sheds light on how the toxin interacts with nerve cells and causes life-threatening muscle cramps and spasms.

SourceStockholm University·JournalEMBO Reports·DateJun 26, 2017

It's a small world

Researchers at UCSB have mapped the network of circadian neurons that communicate to re-establish synchronization, finding a 'small-world structure' with hubs and short paths for communication. This discovery sheds light on how the suprachiasmatic nucleus (SCN) regulates essential functions like sleep and hormone release.

SourceUniversity of California - Santa Barbara·JournalProceedings of the National Academy of Sciences·DateApr 11, 2016

New clues for battling botulism

Researchers deciphered the atomic-scale structure of a botulism toxin-bound protein, revealing how it stays intact in acidic conditions and disassembles in neutral pH environments. This knowledge may help develop new vaccines or treatments targeting the deadly neurotoxin.

SourceDOE/Brookhaven National Laboratory·JournalScientific Reports·DateDec 7, 2015

Spider and centipede venom evolved from insulin-like hormone

Researchers have discovered that spider and centipede venom originated from an insulin-like hormone, with similar molecular shapes between the toxins and the hormone. This finding has potential applications in developing new pharmaceuticals and bioinsecticides, as well as solving agricultural and medical problems.

SourceCell Press·JournalStructure·DateJun 11, 2015

Safest cosmetic surgery procedures

A new Northwestern University study analyzed over 20,000 minimally invasive cosmetic procedures and found no risk of serious adverse events. The study suggests that these procedures are exceedingly safe, with fewer than 1% minor complications, offering a significant cosmetic boost through mixed procedures.

SourceNorthwestern University·JournalJAMA Dermatology·DateNov 5, 2014

Scientists aim to give botox a safer facelift

Researchers have made breakthroughs in understanding the interactions between botulinum neurotoxins and cells, paving the way for safer forms of Botox. By designing inhibitors or specific antibodies, scientists hope to prevent toxic interactions and engineer safer toxins for medical and cosmetic use.

SourceCell Press·JournalTrends in Biochemical Sciences·DateOct 1, 2014

Potent neurotoxin found in flatworm

Researchers have discovered tetrodotoxin, a potent paralysis-inducing neurotoxin, in two species of terrestrial flatworms. The toxin was found to be used during predation to subdue large prey and may also play a role in defense through egg capsules.

SourcePLOS·JournalPLOS ONE·DateJun 25, 2014

Disarming the botulinum neurotoxin

Sanford-Burnham researchers discovered the first 3D structure of the botulinum neurotoxin and its protein bodyguard. This reveals a weak spot that can be targeted to develop new therapeutics, including potential treatments for botulism and bioterrorism agents.

SourceSanford Burnham Prebys·JournalScience·DateFeb 23, 2012