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Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Gut & Microbiome Human Health Effects Marine & Wildlife Nanoplastics Sign in to save

Hemotoxic effects of polyethylene microplastics on mice

Frontiers in Physiology 2023 35 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Souzan Abdel‐Zaher, Mahmoud S. Mohamed, Alaa El‐Din H. Sayed

Summary

Researchers exposed mice to different concentrations of polyethylene microplastics for 15 days and studied the effects on their blood. The highest dose caused significant damage to red blood cells, leading to abnormal shapes and reduced blood cell counts, along with impaired liver and kidney function. The study suggests that microplastic exposure may have harmful effects on blood health in mammals, including patterns consistent with anemia.

Micro- or nanoplastics, which are fragmented or otherwise tiny plastic materials, have long been a source of environmental worry. Microplastics (MPs) have been well documented to alter the physiology and behavior of marine invertebrates. The effects of some of these factors are also seen in larger marine vertebrates, such as fish. More recently, mouse models have been used to investigate the potential impacts of micro- and nanoplastics on host cellular and metabolic damages as well as mammalian gut flora. The impact on erythrocytes, which carry oxygen to all cells, has not yet been determined. Therefore, the current study aims to ascertain the impact of exposure to various MP exposure levels on hematological alterations and biochemical indicators of liver and kidney functions. In this study, a C57BL/6 murine model was concentration-dependently exposed to microplastics (6, 60, and 600 μg/day) for 15 days, followed by 15 days of recovery. The results demonstrated that exposure to 600 μg/day of MPs considerably impacted RBCs' typical structure, resulting in numerous aberrant shapes. Furthermore, concentration-dependent reductions in hematological markers were observed. Additional biochemical testing revealed that MP exposure impacted the liver and renal functioning. Taken together, the current study reveals the severe impacts of MPs on mouse blood parameters, erythrocyte deformation, and consequently, anemic patterns of the blood.

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