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The microbe-induced plant volatiles released by individual #PhytolaccaAmericana under heavy metal stress (manganese) induction contribute to the tolerance of neighboring receiver plants to heavy metals.

#VolatileOrganicCompounds

@mapjournals.bsky.social

doi.org/10.1093/jpe/...

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CellDrop Automated Cell Counter: Count Cells Without Slides Reduce costs and streamline your cell counting workflows with the DeNovix CellDrop Automated Cell Counter.

A breath of #air could help diagnose #gut #microbiome disruptions ...

| #VolatileOrganicCompounds | #VOC | #microbes | #biomarkers | #colon | #metabolites | Via the-scientist .com

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A firefighter directs a hose at a blazing fire with the help of a fellow firefighter, actively working to control and extinguish the flames.
Image credit: Shutterstock / Jaden Schaul.

A firefighter directs a hose at a blazing fire with the help of a fellow firefighter, actively working to control and extinguish the flames. Image credit: Shutterstock / Jaden Schaul.

Bigger, hotter fires are producing more toxic #smoke. As they burn the #BuiltEnvironment, they release dangerous #pollutants like #benzene and #acetone. A PNAS Inner Workings piece: https://ow.ly/atLx50XlIVW

#AirPollution #ClimateChange #plastics #VolatileOrganicCompounds

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A firefighter directs a hose at a blazing fire with the help of a fellow firefighter, actively working to control and extinguish the flames.
Image credit: Shutterstock / Jaden Schaul.

A firefighter directs a hose at a blazing fire with the help of a fellow firefighter, actively working to control and extinguish the flames. Image credit: Shutterstock / Jaden Schaul.

After #wildfires, toxic #smoke poses lasting #PublicHealth risks. Researchers are now studying pollutants released from the #BuiltEnvironment during intense fires. A PNAS Inner Workings: https://ow.ly/fk3u50Xeg8I

#NaturalDisaster #AirPollution #ClimateChange #VolatileOrganicCompounds

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Chaoqun Chen et al. explored the mechanisms of plant-associated microbes in regulating plant drought adaptation.

#Exopolysaccharides | #VolatileOrganicCompounds | #1-aminocyclopropane-1-carboxylicAcid | #SyntheticMicrobialCommunities

@mapjournals.bsky.social

doi.org/10.1093/jpe/...

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#VolatileOrganicCompounds
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One of the most toxic of fragranced products is dryer sheets. All over your clothes and then all over you, all day and night.

In sufficient quantities, some VOCs can cause eye, nose, and throat irritation, headaches, dizziness, and other health problems.

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VOC 101
VOC 101 YouTube video by Morwenna Trevenen

Wanna learn about VOCs? I did a semi-deep dive to put together this video of suggestions on choices that we can be making to have healthier homes.
#volatileorganiccompounds #healthyhomes #winnipegrealestate #nerd
youtu.be/ynOOTrOOZo8?...

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You may have heard that there are health risks with burning scented candles.
Is this true?
Here are the facts!

#southasianwomenshealth
#womenshealth #healthpodcast #scentedcandles #volatileorganiccompounds #medsky

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A direct headspace injection method is presented and optimized for the analysis of volatile organic compounds (VOCs) using dielectric barrier discharge ionization-mass spectrometry (DBDI-MS), incorporating an intermediate vial in which the sample headspace is injected. The setup is built of commonly available, cheap consumable parts and easily enables the incorporation of different gases for generating different ionization atmospheres. The method can be fully automated by using standard GC autosamplers, and its rapid analysis time is suitable for high-throughput applications. We show that this method is suitable for both profiling analysis of complex samples such as biofluids and quantitative measurements for real-time reaction monitoring. Our optimized method demonstrated improved reproducibility and sensitivity, with detection limits for compounds tested in the high nanomolar to the low micromolar range, depending on the compound. Key parameters for method optimization were identified such as sample vial volume, headspace-to-liquid ratio, incubation temperature, and equilibration time. These settings were systematically evaluated to maximize the signal intensity and improve repeatability between measurements. Two use cases are demonstrated: (i) quantitative measurement of ethanol production by a metal–organic framework from CO2 and (ii) profiling of biofluids following the consumption of asparagus.

A direct headspace injection method is presented and optimized for the analysis of volatile organic compounds (VOCs) using dielectric barrier discharge ionization-mass spectrometry (DBDI-MS), incorporating an intermediate vial in which the sample headspace is injected. The setup is built of commonly available, cheap consumable parts and easily enables the incorporation of different gases for generating different ionization atmospheres. The method can be fully automated by using standard GC autosamplers, and its rapid analysis time is suitable for high-throughput applications. We show that this method is suitable for both profiling analysis of complex samples such as biofluids and quantitative measurements for real-time reaction monitoring. Our optimized method demonstrated improved reproducibility and sensitivity, with detection limits for compounds tested in the high nanomolar to the low micromolar range, depending on the compound. Key parameters for method optimization were identified such as sample vial volume, headspace-to-liquid ratio, incubation temperature, and equilibration time. These settings were systematically evaluated to maximize the signal intensity and improve repeatability between measurements. Two use cases are demonstrated: (i) quantitative measurement of ethanol production by a metal–organic framework from CO2 and (ii) profiling of biofluids following the consumption of asparagus.

Great to see this collaboration with #nicoleStrittmatter @tum.de 🇩🇪 #AlinaMeindl 🇦🇹 @tcddublin.bsky.social
🇮🇪 on 'Profiling of #VolatileOrganicCompounds' out in #JAmSocMassSpectrom @asms.org
pubs.acs.org/action/showC... 😀funded by @ias-tum.bsky.social
@researchireland.bsky.social

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#floraltrait #flowervisitingbehaviour #plantpollinatorinteractions #temporalvariation #volatileorganiccompounds #VOCs #sexspecificresponses

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Exciting #PhD opportunity! Can marine aerosol produce significant amounts of #VolatileOrganicCompounds (VOCs)? Find out more and apply here: pml.ac.uk/coco-voc-stu...

#PhDOpportunity #PhDs #hiring #Plymouth

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