In Vivo Tissue Distribution of Microplastics and Systemic Metabolomic Alterations After Gastrointestinal Exposure
2023
17 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.
Aaron S. Romero,
Aaron S. Romero,
Aaron S. Romero,
Aaron S. Romero,
Seth D. Merkley,
Aaron S. Romero,
Marcus Garcia,
Aaron S. Romero,
Eliseo F. Castillo,
Kyle Joohyung Kim,
Kyle Joohyung Kim,
Eliane El Hayek,
Eliane El Hayek,
Matthew J. Campen
Marcus Garcia,
Seth D. Merkley,
Matthew J. Campen
Marcus Garcia,
Eliseo F. Castillo,
Eliseo F. Castillo,
Aaron S. Romero,
Marcus Garcia,
Aaron S. Romero,
Jewel L. Meyer-Hagen,
Julia Yue Cui,
Marcus Garcia,
Marcus Garcia,
Marcus Garcia,
Jewel L. Meyer-Hagen,
Marcus Garcia,
Marcus Garcia,
Aaron S. Romero,
Marcus Garcia,
Aaron S. Romero,
Aaron S. Romero,
Aaron S. Romero,
Marcus Garcia,
Marcus Garcia,
Marcus Garcia,
Marcus Garcia,
Marcus Garcia,
Eliane El Hayek,
Marcus Garcia,
Eliane El Hayek,
Aaron S. Romero,
Aaron S. Romero,
Marcus Garcia,
Marcus Garcia,
Marcus Garcia,
Marcus Garcia,
Marcus Garcia,
Seth D. Merkley,
Haiwei Gu,
Yan Jin,
Eliseo F. Castillo,
Julie In,
Julie In,
Matthew J. Campen
Yan Jin,
Yan Jin,
Matthew J. Campen
Marcus Garcia,
Marcus Garcia,
Kyle Joohyung Kim,
Rama R. Gullapalli,
Eliane El Hayek,
Eliane El Hayek,
Eliane El Hayek,
Jewel L. Meyer-Hagen,
Marcus Garcia,
Eliane El Hayek,
Marcus Garcia,
Jewel L. Meyer-Hagen,
Matthew J. Campen
Eliane El Hayek,
Matthew J. Campen
Marcus Garcia,
Eliane El Hayek,
Marcus Garcia,
Jorge González-Estrella,
Matthew J. Campen
Matthew J. Campen
Julie In,
Eliseo F. Castillo,
Eliseo F. Castillo,
Angelica Benavidez,
Seth D. Merkley,
Jewel L. Meyer-Hagen,
Jewel L. Meyer-Hagen,
Charles D. Forbes,
Marcus Garcia,
Jewel L. Meyer-Hagen,
Jewel L. Meyer-Hagen,
Charles D. Forbes,
Jorge González-Estrella,
Jorge González-Estrella,
Eliseo F. Castillo,
Eliseo F. Castillo,
Eliseo F. Castillo,
Julie In,
Eliane El Hayek,
Matthew J. Campen
Jorge González-Estrella,
Jorge González-Estrella,
Matthew J. Campen
Eliane El Hayek,
Jorge González-Estrella,
Matthew J. Campen
Matthew J. Campen
Matthew J. Campen
Matthew J. Campen
Eliseo F. Castillo,
Eliseo F. Castillo,
Eliseo F. Castillo,
Haiwei Gu,
Haiwei Gu,
David P. Sciezka,
David P. Sciezka,
Eliane El Hayek,
Jorge González-Estrella,
Jorge González-Estrella,
Jorge González-Estrella,
Eliane El Hayek,
Matthew J. Campen
Rachel Templeton,
Eliseo F. Castillo,
Rachel Templeton,
Rama R. Gullapalli,
Guy Herbert,
Jorge González-Estrella,
Guy Herbert,
Eliane El Hayek,
Jorge González-Estrella,
Rachel Templeton,
Rama R. Gullapalli,
Eliseo F. Castillo,
Guy Herbert,
Eliseo F. Castillo,
Matthew J. Campen
Matthew J. Campen
Eliseo F. Castillo,
Matthew J. Campen
Matthew J. Campen
Jorge González-Estrella,
Guy Herbert,
Yan Jin,
Matthew J. Campen
Jorge González-Estrella,
Jorge González-Estrella,
Matthew J. Campen
Julia Yue Cui,
Julia Yue Cui,
Angelica Benavidez,
Jorge González-Estrella,
Angelica Benavidez,
Julia Yue Cui,
Haiwei Gu,
Haiwei Gu,
Angelica Benavidez,
Jorge González-Estrella,
Matthew J. Campen
Haiwei Gu,
Jorge González-Estrella,
Jorge González-Estrella,
Jorge González-Estrella,
Angelica Benavidez,
Eliane El Hayek,
Eliane El Hayek,
Matthew J. Campen
Eliane El Hayek,
Jorge González-Estrella,
Russell P Hunter,
Russell P Hunter,
Russell P Hunter,
Matthew J. Campen
Matthew J. Campen
Matthew J. Campen
Matthew J. Campen
Selitá Lucas,
Eliane El Hayek,
Selitá Lucas,
Guy Herbert,
Guy Herbert,
Matthew J. Campen
Jorge González-Estrella,
Eliane El Hayek,
Guy Herbert,
Jorge González-Estrella,
Kyle Joohyung Kim,
Kyle Joohyung Kim,
Julia Yue Cui,
Julia Yue Cui,
Rama R. Gullapalli,
Julie In,
Matthew J. Campen
Matthew J. Campen
Eliseo F. Castillo,
Eliseo F. Castillo,
Matthew J. Campen
Summary
Researchers fed mice a mixture of common microplastics and then tracked where the particles ended up in the body and how they affected metabolism. They found that ingested microplastics crossed the gut barrier and accumulated in the liver, kidneys, and other tissues, causing measurable changes in metabolic pathways. The study provides evidence that microplastic exposure through the digestive system can lead to widespread tissue distribution and systemic metabolic disruption in mammals.
Global plastic use has consistently increased over the past century with several different types of plastics now being produced. Much of these plastics end up in oceans or landfills leading to a substantial accumulation of plastics in the environment. Plastic debris slowly degrades into microplastics (MPs) that can ultimately be inhaled or ingested by both animals and humans. A growing body of evidence indicates that MPs can cross the gut barrier and enter into the lymphatic and systemic circulation leading to accumulation in tissues such as the lungs, liver, kidney, and brain. The impacts of mixed MPs exposure on tissue function through metabolism remains largely unexplored. To investigate the impact of ingested MPs on target metabolomic pathways, mice were subjected to either polystyrene microspheres or a mixed plastics (5 µm) exposure consisting of polystyrene, polyethylene and the biodegradability and biocompatible plastic, poly-(lactic-co-glycolic acid). Exposures were performed twice a week for four weeks at a dose of either 0, 2, or 4 mg/week via oral gastric gavage. Our findings demonstrate that, in mice, ingested MPs can pass through the gut barrier, be translocated through the systemic circulation, and accumulate in distant tissues including the brain, liver, and kidney. Additionally, we report on the metabolomic changes that occur in the colon, liver and brain which show differential responses that are dependent on dose and type of MPs exposure. Lastly, our study provides proof of concept for identifying metabolomic alterations associated with MPs exposure and adds insight into the potential health risks that mixed MPs contamination may pose to humans.