S'abonner

Chlorogenic acid attenuates deoxynivalenol-induced apoptosis and pyroptosis in human keratinocytes via activating Nrf2/HO-1 and inhibiting MAPK/NF-κB/NLRP3 pathways - 05/01/24

Doi : 10.1016/j.biopha.2023.116003 
Jiashe Chen a, 1, Zhiyu Zhou a, 1, Nanhui Wu a, Jie Li a, Ningyuan Xi a, Mingyuan Xu a, Fei Wu a, Qiaoting Fu a, Guorong Yan b, , Yeqiang Liu a, , Xiaoxiang Xu a,
a Department of Pathology, Shanghai Skin Disease Hospital, School of Medicine, Tongji University, Shanghai 200443, China 
b Institute of Photomedicine, Shanghai Skin Disease Hospital, School of Medicine, Tongji University, Shanghai 200443, China 

Corresponding authors.

Abstract

Deoxynivalenol (DON) is a common mycotoxic contaminant, frequently found in food and feed, causing a severe threat to human and animal health. Because of the widespread contamination of DON, humans involved in agricultural practices may be directly exposed to DON through the skin route. Chlorogenic acid (CGA) is a phenolic acid, which has anti-inflammatory and antioxidant properties. However, it is still unclear whether CGA can protect against DON-induced skin damage. Here, the effect of CGA on mitigating damage to human keratinocytes (HaCaT) triggered by DON, as well as its underlying mechanisms were investigated. Results demonstrated that DON exposure significantly decreased cell viability, and induced excessive mitochondrial reactive oxygen species (mtROS) generation, mitochondrial damage, oxidative stress, cell apoptosis and pyroptosis. However, CGA pretreatment for 2 h significantly increased cell viability and reversed DON-induced oxidative stress by improving antioxidant enzyme activities such as superoxide dismutase (SOD), glutathione (GSH), catalase (CAT), reducing mtROS generation and enhancing mitochondrial function through activating Nrf2/HO-1 pathway. Moreover, CGA significantly increased the Bcl-2 protein expression, decreased the protein expressions of Bax and cleaved Caspase-3, and suppressed the phosphorylated of ERK, JNK, NF-κB. Further experiments revealed that CGA could also inhibit the pyroptosis-related protein expressions including NLRP3, cleaved Caspase-1, GSDMD-N, cleaved IL-1β and IL-18. In conclusion, our results suggest that CGA could attenuate DON-induced oxidative stress, inflammation, and apoptosis by activating the Nrf2/HO-1 pathway and inhibiting MAPK/NF-κB/NLRP3 pathway. CGA might be a novel promising therapeutic agent for alleviating the dermal damage triggered by DON.

Le texte complet de cet article est disponible en PDF.

Graphical Abstract




 : 

Schematic diagram of the hypothetical mechanisms of CGA on apoptosis and pyroptosis in HaCaT cells induced by DON. CGA could attenuate DON-induced oxidative stress, apoptosis and pyroptosis by activating Nrf2/HO-1 pathway and inhibiting MAPK/NF-κB and NLRP3 signaling pathway.


Schematic diagram of the hypothetical mechanisms of CGA on apoptosis and pyroptosis in HaCaT cells induced by DON. CGA could attenuate DON-induced oxidative stress, apoptosis and pyroptosis by activating Nrf2/HO-1 pathway and inhibiting MAPK/NF-κB and NLRP3 signaling pathway.ga1

Le texte complet de cet article est disponible en PDF.

Highlights

DON induces mitochondrial damage, oxidative stress, cell apoptosis and pyroptosis in HaCaT.
CGA alleviates DON-induced oxidative stress through activating Nrf2/HO-1 pathway.
CGA relieves DON-induced apoptosis and pyroptosis via MAPK/NF-κB/NLRP3 pathway.

Le texte complet de cet article est disponible en PDF.

Keywords : Chlorogenic acid, Deoxynivalenol, Oxidative stress, Apoptosis, Pyroptosis, HaCaT cells


Plan


© 2023  The Authors. Publié par Elsevier Masson SAS. Tous droits réservés.
Ajouter à ma bibliothèque Retirer de ma bibliothèque Imprimer
Export

    Export citations

  • Fichier

  • Contenu

Vol 170

Article 116003- janvier 2024 Retour au numéro
Article précédent Article précédent
  • siRNA lipid nanoparticles for CXCL12 silencing modulate brain immune response during Zika infection
  • Pedro Augusto Carvalho Costa, Walison Nunes da Silva, Pedro Henrique Dias Moura Prazeres, Heloísa Athaydes Seabra Ferreira, Natália Jordana Alves da Silva, Maria Marta Figueiredo, Bruna da Silva Oliveira, Sérgio Ricardo Aluotto Scalzo Júnior, Felipe Rocha da Silva Santos, Rúbia Aparecida Fernandes, Rohan Palanki, Alex G. Hamilton, Alexander Birbrair, Victor Rodrigues Santos, Aline Silva de Miranda, Michael J. Mitchell, Mauro Martins Teixeira, Vivian Vasconcelos Costa, Pedro Pires Goulart Guimarães
| Article suivant Article suivant
  • Isoliquiritigenin inhibits apoptosis and ameliorates oxidative stress in rheumatoid arthritis chondrocytes through the Nrf2/HO-1-mediated pathway
  • Shih-Ya Hung, Jen-Lung Chen, Yuan-Kun Tu, Hsin-Yi Tsai, Pin-Hsuan Lu, I.-Ming Jou, Lulekiwe Mbuyisa, Ming-Wei Lin

Bienvenue sur EM-consulte, la référence des professionnels de santé.
L’accès au texte intégral de cet article nécessite un abonnement.

Déjà abonné à cette revue ?

Mon compte


Plateformes Elsevier Masson

Déclaration CNIL

EM-CONSULTE.COM est déclaré à la CNIL, déclaration n° 1286925.

En application de la loi nº78-17 du 6 janvier 1978 relative à l'informatique, aux fichiers et aux libertés, vous disposez des droits d'opposition (art.26 de la loi), d'accès (art.34 à 38 de la loi), et de rectification (art.36 de la loi) des données vous concernant. Ainsi, vous pouvez exiger que soient rectifiées, complétées, clarifiées, mises à jour ou effacées les informations vous concernant qui sont inexactes, incomplètes, équivoques, périmées ou dont la collecte ou l'utilisation ou la conservation est interdite.
Les informations personnelles concernant les visiteurs de notre site, y compris leur identité, sont confidentielles.
Le responsable du site s'engage sur l'honneur à respecter les conditions légales de confidentialité applicables en France et à ne pas divulguer ces informations à des tiers.


Tout le contenu de ce site: Copyright © 2025 Elsevier, ses concédants de licence et ses contributeurs. Tout les droits sont réservés, y compris ceux relatifs à l'exploration de textes et de données, a la formation en IA et aux technologies similaires. Pour tout contenu en libre accès, les conditions de licence Creative Commons s'appliquent.