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September 12, 2025Nanomaterials2 citationsOpen Access

Single- vs. Multi-Walled Carbon Nanotubes: Differential Cellular Stress and Lipid Metabolism Effects in Macrophage Models

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SNSara NahleHCHilary CassidyDMDavid Matallanas

Key Points

  • MWCNTs uniquely disrupt lipid metabolism, leading to foam cell formation in macrophages.
  • SWCNTs significantly alter gene regulation but are less disruptive to metabolic pathways than MWCNTs.
  • Both CNT types induce cellular stress responses related to inflammation, particularly in NR8383 cells.
  • The dispersion medium notably influences toxicological responses, emphasizing the role of the protein corona.

Abstract

This study examines the toxicological effects of carbon nanotubes (CNTs) of different diameters—single-walled CNTs (SWCNT, 2 nm) and multi-walled CNTs (MWCNT, 74 nm)—on two macrophage cell lines, rat alveolar NR8383 cells and human differentiated THP-1. Using standardized exposure conditions and employing an integrated omics approach (transcriptomic and proteomic analyses), both CNT types were found to induce cellular stress responses and inflammation, especially in NR8383 cells, with notable involvement of the Sirtuin signaling pathway. After 24 h, MWCNTs uniquely disrupted lipid metabolism in NR8383 cells, resulting in foam cell formation and syncytia. While SWCNTs were less disruptive to metabolic pathways, they significantly altered gene regulation, particularly RNA splicing mechanisms. The dispersion medium—fetal bovine serum (FBS) versus human surfactant—also modulated the observed toxicological responses, highlighting the critical role of the protein corona in influencing CNT-cell interactions. These findings demonstrate that CNT diameter significantly affects cytotoxicity and cellular response pathways in a cell-type-specific manner.

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Cite This Study

Nahle et al. (2025) studied this question.

synapsesocial.com/papers/68d44a4031b076d99fa53acdhttps://doi.org/10.3390/nano15181401
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