Skip to content

1 paper indexed here

We haven’t gathered this author’s papers yet. Follow them and we’ll fetch their work.

Not the right person? Other researchers publish under this name.

Open access Aug 2026

Mechanistic insights into deoxynivalenol-induced cytotoxicity in an SH-SY5Y 3D spheroid model.

Deoxynivalenol (DON) is a trichothecene mycotoxin frequently detected in cereal-derived foods and animal feed. Exposure to DON has been associated with a variety of toxic effects, including neurotoxicity. Three-dimensional (3D) cell culture systems have emerged as more physiologically relevant models than conventional two-dimensional (2D) cultures, as they better reproduce cellular organization, including cell-cell and cell-matrix interactions, and more accurately reflect in vivo conditions. In this context, the present study aimed to investigate the cytotoxic effects of DON and its underlying mechanisms using a 3D spheroid model derived from the human neuroblastoma cell line SH-SY5Y. Spheroids were exposed to different concentrations of DON and cell viability was assessed using the MTT assay, yielding an IC₅₀ value > 64µM. No significant changes were detected in total intracellular reactive oxygen species (ROS) levels. However, a significant increase in mitochondrial superoxide production was observed at 16µM, together with alterations in mitochondrial membrane potential between 2 and 16µM. In addition, DON treatment altered cell cycle progression and increased the proportion of early apoptotic cells at 16µM, as determined by Annexin V/propidium iodide staining. Protein analysis further revealed increase expression of Bax and Bcl-2 at 16µM, resulting in a Bax/Bcl-2 ratio close to unity, along with elevated levels of cleaved caspase-3. Overall, these results demonstrate that DON induces cytotoxic effects in SH-SY5Y spheroids, accompanied by mitochondrial alterations, increased mitochondrial superoxide production, and apoptotic cell death. These findings contribute to the understanding of DON-induced alterations in neuronal cells and highlight the potential of SH-SY5Y spheroids as a biologically relevant human in vitro model for mechanistic studies of mycotoxin toxicity.

M. Sánchez, Zingales, J. Tolosa et al. · 0 citations