Aluminum (Al³⁺) is a widespread environmental metal with potential effects on the intestinal epithelium. In this study, we evaluated the impact of dietary concentrations of aluminum on barrier integrity, histological organization, and gene expression in a 3D human intestinal tissue model. Tissues were exposed to increasing concentrations of aluminum (0, 5, 20, and 50 ppm) for 12 days to mimic environmental chronic exposure through ingestion. Transepithelial electrical resistance (TEER) measurements revealed a significant decrease only at the highest dose (50 ppm) on day 12, indicating a damage to the epithelial permeability. This was supported by a marked downregulation of OCLN and CLDN-5 expression, key genes involved in tight junction integrity. Aluminum permeation across the tissue was confirmed via Inductively Coupled Plasma—Atomic Emission Spectroscopy (ICP-AES), indicating dose-dependent penetration. Furthermore, gene expression analysis showed significant upregulation of MT-1E and MT-2 A (markers of cellular response to metal exposure) while MT-1 A remained unchanged. The present data demonstrate that repeated exposure to 50 ppm of Al3+ impacts intestinal barrier function and alters the tissue organization in the human intestinal epithelium.

Repeated aluminum ingestion alters human intestinal structure: focus on advanced 3D tissue models / De Negri Atanasio, G., Dondero, L., Tardanico, F., Allaria, G., Lertora, E., Rosa, G., Barisione, C., Ivaldo, C., Rispo, F., Filippini, T., Demori, I., Ferrando, S., Gagliani, M.C., Cortese, K., Passalacqua, M., Markus, J., Letasiova, S., Grasselli, E.. - In: PFLÜGERS ARCHIV. - ISSN 0031-6768. - 478:7(2026), pp. 1-12. [10.1007/s00424-026-03191-y]

Repeated aluminum ingestion alters human intestinal structure: focus on advanced 3D tissue models

Filippini, Tommaso;
2026

Abstract

Aluminum (Al³⁺) is a widespread environmental metal with potential effects on the intestinal epithelium. In this study, we evaluated the impact of dietary concentrations of aluminum on barrier integrity, histological organization, and gene expression in a 3D human intestinal tissue model. Tissues were exposed to increasing concentrations of aluminum (0, 5, 20, and 50 ppm) for 12 days to mimic environmental chronic exposure through ingestion. Transepithelial electrical resistance (TEER) measurements revealed a significant decrease only at the highest dose (50 ppm) on day 12, indicating a damage to the epithelial permeability. This was supported by a marked downregulation of OCLN and CLDN-5 expression, key genes involved in tight junction integrity. Aluminum permeation across the tissue was confirmed via Inductively Coupled Plasma—Atomic Emission Spectroscopy (ICP-AES), indicating dose-dependent penetration. Furthermore, gene expression analysis showed significant upregulation of MT-1E and MT-2 A (markers of cellular response to metal exposure) while MT-1 A remained unchanged. The present data demonstrate that repeated exposure to 50 ppm of Al3+ impacts intestinal barrier function and alters the tissue organization in the human intestinal epithelium.
2026
478
7
1
12
Repeated aluminum ingestion alters human intestinal structure: focus on advanced 3D tissue models / De Negri Atanasio, G., Dondero, L., Tardanico, F., Allaria, G., Lertora, E., Rosa, G., Barisione, C., Ivaldo, C., Rispo, F., Filippini, T., Demori, I., Ferrando, S., Gagliani, M.C., Cortese, K., Passalacqua, M., Markus, J., Letasiova, S., Grasselli, E.. - In: PFLÜGERS ARCHIV. - ISSN 0031-6768. - 478:7(2026), pp. 1-12. [10.1007/s00424-026-03191-y]
De Negri Atanasio, Giulia; Dondero, Lorenzo; Tardanico, Francesca; Allaria, Giorgia; Lertora, Erica; Rosa, Giacomo; Barisione, Chiara; Ivaldo, Caterin...espandi
File in questo prodotto:
File Dimensione Formato  
unpaywall-bitstream-1820460417.pdf

Open access

Tipologia: VOR - Versione pubblicata dall'editore
Licenza: [IR] creative-commons
Dimensione 3.58 MB
Formato Adobe PDF
3.58 MB Adobe PDF Visualizza/Apri
Pubblicazioni consigliate

Licenza Creative Commons
I metadati presenti in IRIS UNIMORE sono rilasciati con licenza Creative Commons CC0 1.0 Universal, mentre i file delle pubblicazioni sono rilasciati con licenza Attribuzione 4.0 Internazionale (CC BY 4.0), salvo diversa indicazione.
In caso di violazione di copyright, contattare Supporto Iris

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1413988
Citazioni
  • ???jsp.display-item.citation.pmc??? 0
  • Scopus 0
  • ???jsp.display-item.citation.isi??? 0
  • OpenAlex 0
social impact