Cited time in webofscience Cited time in scopus

Disrupted intestinal mucosal barrier mediated by alcohol consumption aggravates systemic microplastic accumulation

Title
Disrupted intestinal mucosal barrier mediated by alcohol consumption aggravates systemic microplastic accumulation
Author(s)
Baek, Su-MinKim, Tae-UnLee, Young-JinLee, Seoung-WooYim, Jae-HyukKim, Woo JunKim, Hee-YeonKang, Kyung-KuKim, Sung DaePark, Sang-JoonChoi, Seong-KyoonPark, Jin-Kyu
Issued Date
2023-09
Citation
Ecotoxicology and Environmental Safety, v.262
Type
Article
Author Keywords
AlcoholGut -liver axisHepatic steatosisIntestinal mucosal barrierMicroplastics
Keywords
MARINE-ENVIRONMENTLIVER-DISEASEPLASTIC DEBRISETHANOLPATHOGENESISMETABOLISMPOLLUTIONIMPACTS
ISSN
0147-6513
Abstract
Waste plastics are degraded into microplastics (MPs), which are easily accumulated in the human body through digestive tracts, via the food chain. Alcohol is a widely consumed chemical throughout the world with the ability to alter the intestinal barrier. For this reason, this study was aimed to investigate exact relevance between alcohol consumption and organ distributions of MPs in an ethanol feeding animal model characterized by disrupted intestinal mucosal barriers. In this study, C57BL/6 mice were separated into control, control + MP, ethanol (EtOH), and EtOH + MP groups. Mice in the EtOH group ingested a Lieber–DeCarli diet containing EtOH. Mice in the MP groups ingested 0.1 mg/kg fluorophore polymerized polystyrene microplastics via oral gavage polystyrene MPs via oral gavage. The EtOH + MP group showed higher MP accumulation in the liver than the control + MP group. The same pattern was observed in the intestines, spleen, and brain. This pattern was more prominent in the intestines, with the EtOH + MP group showing the most severe damage due to EtOH ingestion. This result suggests that the intestinal mucosa disruption caused by EtOH ingestion exacerbates MP accumulation in the organs. Moreover, hepatic steatosis was more severe in the EtOH + MP group than in the EtOH group, suggesting the secondary manifestation mediated by MP accumulation. This study reports a novel MP accumulation pattern in the body by providing novel insights into alcohol-induced gut permeability and microplastics toxicity from the perspective of gut-liver axis. © 2023 The Authors
URI
http://hdl.handle.net/20.500.11750/46694
DOI
10.1016/j.ecoenv.2023.115342
Publisher
Academic Press
Related Researcher
Files in This Item:
001059624100001.pdf

001059624100001.pdf

기타 데이터 / 0 B / Adobe PDF download
Appears in Collections:
Division of Biotechnology 1. Journal Articles

qrcode

  • twitter
  • facebook
  • mendeley

Items in Repository are protected by copyright, with all rights reserved, unless otherwise indicated.

BROWSE