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Search results for “Pesticides”

1,000+ results for "Pesticides"

Yearly exposure to chemicals dangerous to hormone function burdens Americans with hundreds of billions in health care costs and lost earnings

Annual exposure to endocrine-disrupting chemicals has a significant impact on the US healthcare system, causing over 2.3% of the country's GDP to be lost. The estimated disease burden from these chemicals is valued at $340 billion annually, with specific effects including neurological damage, infertility, and certain cancers.

SourceNYU Langone Health / NYU Grossman School of Medicine·JournalThe Lancet Diabetes & Endocrinology·DateOct 17, 2016

Networking is the way to go

Networking is crucial for spreading integrated pest management in agriculture. The article suggests three ways to improve networking: enhancing communication between research organizations, involving advisors in defining research projects, and structuring knowledge generation approaches. By following these recommendations, farmers can ...

SourceAarhus University·JournalCrop Protection·DateOct 4, 2016

Pesticides used to help bees may actually harm them

A study published in Frontiers in Microbiology found that pesticides applied to hives to control Varroa mites can damage the gut microbiome of honeybees, impacting their ability to metabolize sugars and peptides. The research suggests that these chemicals can specifically harm the microbes crucial for honey bee nutrition and health.

SourceVirginia Tech·JournalFrontiers in Microbiology·DateAug 8, 2016

How fungi stage a deadly under-water attack on Aedes mosquito larvae

Researchers discovered that fungal blastospores can kill mosquito larvae rapidly, with specific characteristics contributing to their virulence. The study found that blastospore invasion can occur even in the presence of drugs inhibiting protease activity, making them a promising alternative to chemical pesticides.

SourcePLOS·JournalPLOS Pathogens·DateJul 7, 2016

Electronic nose smells pesticides and nerve gas

Researchers from KU Leuven have developed a highly sensitive electronic nose using metal-organic frameworks (MOFs) to detect phosphonates found in pesticides and nerve gases. The sensor can identify traces of chemical weapons or pesticide residues on food with extremely low concentrations.

SourceKU Leuven·JournalChemical Science·DateJul 4, 2016

Common pesticides kill amphibian parasites, study finds

A recent study found that six commonly used insecticides kill amphibian parasites, potentially decreasing the number of parasites an amphibian must defend against. The study also showed population-specific differences in pesticide resistance, highlighting the importance of considering multiple populations when assessing toxicity.

SourceBinghamton University·JournalParasitology·DateApr 4, 2016

57 different pesticides found in poisoned honeybees

A new study reveals that European honeybees are being poisoned with up to 57 different pesticides, posing a threat to bee populations worldwide. The researchers developed a method for analyzing 200 pesticides simultaneously, providing critical information on the toxic mix and its impact on honeybee health.

SourceElsevier·JournalJournal of Chromatography A·DateMar 10, 2016

Genome of bed bug decoded

The bed bug's genome shows significant changes in receptor types for smell and taste, leading to increased resistance to pesticides. The decoded genome also reveals insights into the species' evolution from bat parasite to human feeder, highlighting genetic adaptations for chemosensation and traumatic reproduction.

SourceUniversity of Cologne·JournalNature Communications·DateFeb 15, 2016

New technology uses smartphones and paper to analyze samples

A new study presents a portable smartphone-based detection system using a paper sensor that produces strong signals to detect pesticide thiram. The system integrates nanoparticles, a mini-laser, an optical filter, and software that runs on Android, giving reliable and accurate detection readings at low concentrations.

SourceElsevier·JournalBiosensors and Bioelectronics·DateOct 15, 2015

Pesticides found in most pollen collected from foraging bees in Massachusetts

A new study from Harvard T.H. Chan School of Public Health finds that over 70% of pollen and honey samples collected from foraging bees in Massachusetts contain neonicotinoids, a class of pesticide linked to Colony Collapse Disorder. The study suggests that these pesticides pose significant risks to bee health and human exposure.

SourceHarvard T.H. Chan School of Public Health·JournalJournal of Environmental Chemistry·DateJul 23, 2015

Warmer climates may increase pesticides' toxicity in fish

Climate change is expected to increase pesticide toxicity in fish, as warmer temperatures become toxic at the upper limit of species' temperature tolerance. The study reveals that pesticides and industrial contaminants become toxic when temperatures reach 50C, making fish more vulnerable to environmental changes.

SourceWiley·JournalEnvironmental Toxicology and Chemistry·DateJun 1, 2015

Greener pest control

A team of scientists is working on a project to create new pesticides that target specific insect species without harming beneficial ones. By mimicking the hormone systems of these insects, researchers hope to disrupt their reproductive cycles and prevent population explosions.

Could smell hold the key to ending pesticide use?

Researchers from Cardiff University and Rothamsted Research created tiny molecules that replicate a natural insect-repelling smell, offering a potential alternative to pesticides. The team's breakthrough uses an enzyme to create similar smelling insect repellent molecules, with some exhibiting attractive behavior.

SourceCardiff University·JournalChemical Communications·DateApr 26, 2015