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Original research — experimental, observational, or case-control study. Direct primary evidence.
Gut & Microbiome
Marine & Wildlife
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How Digestive Processes Can Affect the Bioavailability of PCBs Associated with Microplastics: A Modeling Study Supported by Empirical Data
Environmental Science & Technology2023
19 citations
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Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Score: 55
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0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Zhiyue Niu,
Zhiyue Niu,
Albert A. Koelmans
Zhiyue Niu,
Albert A. Koelmans
Nur Hazimah Mohamed Nor,
Albert A. Koelmans
Albert A. Koelmans
Nur Hazimah Mohamed Nor,
Nur Hazimah Mohamed Nor,
Nur Hazimah Mohamed Nor,
Nur Hazimah Mohamed Nor,
Albert A. Koelmans
Albert A. Koelmans
Nur Hazimah Mohamed Nor,
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Zhiyue Niu,
Zhiyue Niu,
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Zhiyue Niu,
Zhiyue Niu,
Zhiyue Niu,
Zhiyue Niu,
Zhiyue Niu,
Zhiyue Niu,
Nur Hazimah Mohamed Nor,
Nur Hazimah Mohamed Nor,
Nur Hazimah Mohamed Nor,
Nur Hazimah Mohamed Nor,
Nur Hazimah Mohamed Nor,
Nur Hazimah Mohamed Nor,
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Nur Hazimah Mohamed Nor,
Nur Hazimah Mohamed Nor,
Nur Hazimah Mohamed Nor,
Nur Hazimah Mohamed Nor,
Nur Hazimah Mohamed Nor,
Zhiyue Niu,
Zhiyue Niu,
Marie Hennebelle,
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Zhiyue Niu,
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Nur Hazimah Mohamed Nor,
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Nur Hazimah Mohamed Nor,
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Albert A. Koelmans
Summary
Researchers used a simulated human digestive model to study whether gut processes change how quickly chemicals like PCBs transfer on and off microplastic particles. They found that digestive enzymes and bile salts significantly accelerated the release of these chemicals from microplastics, suggesting that the human gut environment may increase exposure to plastic-associated pollutants. The study provides new evidence that microplastics could act as carriers that release harmful chemicals more readily during digestion.
The transfer kinetics of plastic-associated chemicals during intestinal digestive processes is unknown. Here, we assessed whether digestive processes affect chemical exchange kinetics on microplastics, using an <i>in vitro</i> gut fluid digestive model mimicking the human upper intestinal tract. Chemical exchange kinetics of microplastics were measured for 10 polychlorinated biphenyls (PCBs) as proxies for the broad class of hydrophobic organic chemicals. Following earlier studies, olive oil was used as a proxy for digestible food, under high and low digestive enzyme activities. The micelle-water and oil-water partition coefficients of the 10 PCBs were also determined to evaluate the relative contribution of each gut component to sorb PCBs. A new biphasic and reversible chemical exchange model, which included the digestion process, fitted well to the empirical data. We demonstrate that the digestive processes that break down contaminated food can lead to a substantial increase in chemical concentration in microplastics by a factor of 10-20, thereby reducing the overall chemical bioavailability in the gastrointestinal tract when compared to a scenario without microplastics. Higher enzyme activities result in more chemicals being released by the digested food, thereby resulting in higher chemical concentrations in the microplastics. While the model-calibrated kinetic parameters are specific to the studied scenario, we argue that the mechanism of the reduced bioavailability of chemicals and the modeling tool developed have generic relevance. These digestive processes should be considered when assessing the risks of microplastics to humans and also biomagnification in aquatic food webs.