Research Keyword: analytical chemistry

Effects of defined organic layers on the fluorescence lifetime of plastic materials

Researchers developed a fast, non-destructive method using fluorescence lifetime imaging to identify different types of plastic particles, even when covered with bacteria, fungi, and proteins. This technique could help scientists quickly detect and study microplastics in the environment without needing extensive cleaning procedures. The study found that biological coatings on plastics don’t prevent accurate identification using this fluorescence method. This advancement could make monitoring plastic pollution easier and more efficient in real environmental samples.

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Evaluation of the Elemental Composition of Dietary Supplements Containing Iron Available on the Polish Market Using ICP-OES, FAAS and CVAAS Techniques

Researchers tested 24 iron-containing dietary supplements sold in Poland to check if they contained the amounts of iron and other minerals stated on their labels. They found that most supplements had more iron than claimed, and five exceeded safe levels. The study highlights concerns about inconsistent quality and the need for better oversight of supplement manufacturing to protect consumers, especially pregnant women.

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From mold to mycotoxins: an LC–MS/MS method for quantifying airborne mycotoxins in indoor environments

Mold in water-damaged buildings produces toxic compounds called mycotoxins that can become airborne and be breathed in. This study developed a precise laboratory method to detect and measure 29 different mycotoxins in indoor air samples. Researchers tested the method in three real mold-infested buildings and successfully identified seven different mycotoxins, proving the method works well even when toxin levels are very low. This breakthrough helps determine whether moldy indoor environments pose serious health risks to workers and occupants.

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An Automated and Highly Sensitive Chemiluminescence Immunoassay for Diagnosing Mushroom Poisoning

Poisoning from deadly mushrooms like Amanita phalloides kills about 90% of poisoning victims. Current methods to diagnose these poisonings take too long for doctors to help patients quickly. This study describes a new automated test that can detect the toxic compounds (phallotoxins) in patient blood and urine in just 45 minutes with very high accuracy, potentially saving lives by enabling faster medical treatment.

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