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May 16, 2026Toxicology0 citationsOpen Access

Sub-Chronic Exposure to Nanoplastics in vitro Disrupts Hepatic Lipid Homeostasis in Human Hepatocytes

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BMBarbara MognettiGMGiuseppe ManninoABAlessia Brossa

Key Points

  • This research aims to assess the effects of prolonged nanoplastic exposure on lipid metabolism in human liver cells.
  • In vitro exposure of HepG2 hepatocytes to nanoplastics at concentrations of 10⁴ and 10⁶ particles/mL.
  • Lipid content and metabolic alterations were analyzed after 28 days.
  • Expression of lipid metabolism regulators and inflammatory markers were measured.
  • Total lipid content increased by 120% ± 16 at 10⁴ and 133% ± 12 at 10⁶ particles/mL by day 14.
  • Increased TNF-α expression after 7 days indicated inflammation.
  • Lipidomic analysis revealed a shift towards increased saturated fatty acids after day 14.

Abstract

Human exposure to micro- and nanoplastics is increasingly recognized as a global concern, yet their long-term effects on human health remain poorly understood. Defining the cellular consequences of chronic exposure is essential for reliable risk assessment and informed environmental and public health strategies. Here, we investigated the impact of prolonged culture in presence of nanoplastics, using an in vitro hepatocyte model (HepG2) exposed to environmentally relevant concentrations (10⁴ and 10⁶ particles/mL). After 28 days, no significant changes in morphology or cell viability were observed. Despite this apparent tolerance, prolonged exposure produced marked metabolic alterations. Cellular lipid content increased in a dose-dependent manner after 120hours, peaked at day 14 (120% ± 16 and 133% ± 12), remained stable until day 21, and declined thereafter. This response was accompanied by altered expression of key lipid metabolism regulators, including SREBP-1C, FABP1, PPAR-α, and PPAR-γ. Lipidomic analysis further revealed a shift in lipid composition from day 14 onward, with increased saturated fatty acids and reduced unsaturated lipids. Although total lipid accumulation partially resolved by day 28, suggesting adaptive responses, the lipidome continued to remodel toward a potentially pathological profile. This metabolic shift was paralleled by an inflammatory signal, as indicated by increased TNF-α expression after 7 days. Together, these findings show that prolonged exposure to low nanoplastic concentrations elicits substantial lipid remodeling, potentially predisposing hepatocytes to lipotoxic and inflammatory states.

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Cite This Study

Mognetti et al. (2026) studied this question.

synapsesocial.com/papers/6a0808afa487c87a6a40ae4dhttps://doi.org/10.1016/j.tox.2026.154498
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