Low-dose of polystyrene microplastics induce cardiotoxicity in mice and human-originated cardiac organoids

Yue Zhou1, Qian Wu2, Yan Li2

  • 1The Ninth People's Hospital of Shanghai Jiao Tong University School of Medicine, School of Public Health, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

Environment International
|September 5, 2023
PubMed

Insights

Microplastics (MP) exposure can harm the human heart. This study used cardiac organoids to show that polystyrene microplastics induce cardiac hypertrophy, oxidative stress, and inflammation, highlighting MPs as a cardiovascular risk.

Area of Science:

  • Environmental Health
  • Cardiovascular Toxicology
  • Stem Cell Biology

Background:

  • Microplastic particles (MP) are widespread environmental contaminants.
  • Human exposure occurs through diet, inhalation, and skin contact.
  • MPs impact various organ systems, but cardiac effects require further investigation.

Purpose of the Study:

  • To investigate the adverse effects of microplastics on the human heart.
  • To utilize a human pluripotent stem cell-derived cardiac organoid (CO) model for in vitro cardiac toxicity assessment.
  • To correlate in vitro findings with in vivo observations and human exposure levels.

Main Methods:

  • Exposure of 3D cardiac organoids (COs) to polystyrene microplastics (PS) at varying concentrations (0.025, 0.25, 2.5 µg/mL).
  • Dynamic exposure system to observe MP aggregation and spatial distribution within COs.
  • Analysis of oxidative stress, inflammatory response, apoptosis, collagen accumulation, gene expression (MYH7B/ANP/BNP/COL1A1), and cardiac markers (MYL2/MYL4/CX43).

Main Results:

  • PS exposure led to increased oxidative stress, inflammation, apoptosis, and collagen accumulation in COs.
  • Observed increases in interventricular septal thickness, consistent with in vivo studies.
  • Significant changes in hypertrophic-related gene expression and elevated cardiac-specific markers.

Conclusions:

  • Polystyrene microplastics induce cardiac hypertrophy in vitro and in vivo.
  • Cardiac organoids provide a valuable model for studying microplastic cardiotoxicity.
  • Microplastics represent an under-recognized risk factor for cardiovascular disease.

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