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Plastic products are widely used in daily life, leading to the pervasive presence of microplastics, which have posed great threats to human health. However, the relative lack of methods to observe the movement and distribution of microplastics in living animals has retarded the understanding of their biological effects. Fluorescence imaging in the near-infrared II (NIR-II) window with good tissue penetration has greatly expanded its scope for living animals. In this study, we have developed a NIR-II fluorescence imaging platform using polystyrene particles to dynamically visualize microplastic behavior in the gastrointestinal tract of living mice. After oral administration of the fluorescent particles, NIR-II imaging at a frame rate of 30 fps revealed the intestinal motility with a peristaltic frequency of 0.51 ± 0.02 beats per second and food transit velocity of 1.3 ± 0.2 mm/s in healthy mice, which excreted 99% of the fluorescent particles within 24 h. In contrast, constipated and colitis mice displayed impaired intestinal peristalsis and significantly prolonged intestinal retention of microplastics. Moreover, the method disclosed that long-term feeding of microplastics resulted in persistent retention in the intestines and spleen, as confirmed by hyperspectral imaging. The utility of the proposed NIR-II imaging platform for dynamic tracking in mammals provides critical insight into the roles of microplastics in biological systems.
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http://dx.doi.org/10.1021/acs.analchem.5c01885 | DOI Listing |
NMR Biomed
October 2025
Biomedical Engineering, University of Michigan, Ann Arbor, Michigan, USA.
Understanding gastric physiology in rodents is critical for advancing preclinical neurogastroenterology research. However, existing techniques are often invasive, terminal, or limited in resolution. This study aims to develop a non-invasive, standardized MRI protocol capable of capturing whole-stomach dynamics in anesthetized rats with high spatiotemporal resolution.
View Article and Find Full Text PDFNat Rev Gastroenterol Hepatol
September 2025
Division of Gastroenterology, Beth Israel Deaconess Medical Center, Boston, MA, USA.
Enteric dopaminergic signalling has a critical role in gastrointestinal motility, maintaining mucosal integrity and modulating the gut microbiome. In this Review, we provide an overview of dopamine metabolism and signalling pathways in the central nervous system and periphery and their effects on gastrointestinal health and disease. We describe the physiological role of enteric dopamine, including a discussion of therapeutic opportunities and future research needs.
View Article and Find Full Text PDFInt J Food Microbiol
September 2025
College of Food Science, Henan Institute of Science and Technology, Xinxiang, Henan, 453003, China. Electronic address:
This study comprehensively evaluated the antimicrobial efficacy and mechanisms of ε-polylysine (ε-PL) against Yersinia enterocolitica (Y. enterocolitica) contamination in pre-prepared meat products. Surveillance data from retail pork and beef samples collected in Xi'an, China (May 2024 to April 2025) revealed a 50.
View Article and Find Full Text PDFPhysiol Rep
September 2025
University of Jendouba, Laboratory of Functional Physiology and Valorization of Bio-Resources, Higher Institute of Biotechnology of Béja, Béja, Tunisia.
Constipation is a common gastrointestinal disorder characterized by infrequent and difficult bowel movements, hard stool consistency, and delayed intestinal transit. The present study evaluated the phytochemical profile and physiological effects of the aqueous extract of beetroot leaves (AEBL) in a rat model of Loperamide (LOP)-induced constipation. Thirty-six male Wistar rats were randomly assigned to six groups (n = 6): two controls (normal and constipated) and four constipated groups receiving either increasing doses of AEBL (100, 200, or 400 mg/kg, b.
View Article and Find Full Text PDFFood Res Int
November 2025
College of Food Science and Technology, Northwest University, 229 North TaiBai Road, Xi'an 710069, China. Electronic address:
Food combinations featuring specific functional components represent one of the effective intervention strategies for alleviating functional gastrointestinal disorders induced by dietary and environmental factors. Honey and aloe vera have both been recognized as natural agents with laxative effects, yet the synergistic effects of their combination in alleviating constipation and the underlying regulatory mechanism remain to be elucidated. This study formulated a honey-aloe paste by employing honey as the primary ingredient compounded with aloe vera gel and investigated its preventive effects on loperamide-induced slow-transit constipation through a comprehensive analysis of gastrointestinal function and intestinal microenvironment.
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