Pretražite po imenu i prezimenu autora, mentora, urednika, prevoditelja

Napredna pretraga

Pregled bibliografske jedinice broj: 986943

The Nrf2-Antioxidant Response Element Signaling Pathway Controls Fibrosis and Autoimmunity in Scleroderma


Kavian, Niloufar; Mehlal, Souad; Jeljeli, Mohamed; Saidu, Nathaniel Edward Bennett; Nicco, Carole; Cerles, Olivier; Chouzenoux, Sandrine; Cauvet, Anne; Camus, Claire; Ait- Djoudi, Mehdi et al.
The Nrf2-Antioxidant Response Element Signaling Pathway Controls Fibrosis and Autoimmunity in Scleroderma // Frontiers in Immunology, 9 (2018), - doi:10.3389/fimmu.2018.01896 (međunarodna recenzija, članak, ostalo)


CROSBI ID: 986943 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
The Nrf2-Antioxidant Response Element Signaling Pathway Controls Fibrosis and Autoimmunity in Scleroderma

Autori
Kavian, Niloufar ; Mehlal, Souad ; Jeljeli, Mohamed ; Saidu, Nathaniel Edward Bennett ; Nicco, Carole ; Cerles, Olivier ; Chouzenoux, Sandrine ; Cauvet, Anne ; Camus, Claire ; Ait- Djoudi, Mehdi ; Chéreau, Christiane ; Kerdine- Römer, Saadia ; Allanore, Yannick ; Batteux, Frederic

Izvornik
Frontiers in Immunology (1664-3224) 9 (2018);

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, ostalo

Ključne riječi
systemic sclerosis, oxidative stress, fibrosis, inflammation, Nrf2

Sažetak
Systemic sclerosis (SSc) is an autoimmune disease with fibrosis of the skin and internal organs and vascular alterations. Dysregulations in the oxidant/antioxidant balance are known to be a major factor in the pathogenesis of the disease. Indeed, reactive oxygen species (ROS) trigger neoepitopes leading to a breach of immune tolerance and autoimmune responses, activate fibroblasts to proliferate and to produce excess of type I collagen. ROS also alter endothelial cells leading to vascular dysfunction. Glutathione (GSH) is the most potent antioxidant system in eukaryotic cells. Numerous studies have reported a defect in GSH in SSc animal models and humans, but the origin of this defect remains unknown. The transcription factor NRF2 is a key player in the antioxidant defense, as it can induce the transcription of antioxidant and cytoprotective genes, including GSH, through its interaction with the antioxidant response elements. In this work, we investigated whether NRF2 could be implicated in the pathogenesis of SSc, and if this pathway could represent a new therapeutic target in this orphan disease with no curative medicine. Skin biopsies from 11 patients and 10 controls were harvested, and skin fibroblasts were extracted. Experimental SSc was induced both in BALB/c and in nrf2-/- mice by daily intradermal injections of hypochloric acid. In addition, diseased BALB/c mice were treated with an nrf2 agonist, dimethyl fumarate, or placebo. A drop in nrf2 and target genes mRNA levels was observed in skin fibroblasts of SSc patients compared to controls. Moreover, the nrf2 pathway is also downregulated in skins and lungs of SSc mice. In addition, we observed that nrf2-/- mice have a more severe form of SSc with increased fibrosis and inflammation compared to wild-type SSc mice. Diseased mice treated with the nrf2 agonist dimethyl fumarate (DMF) exhibited reduced fibrosis and immune activation compared to untreated mice. The ex vivo treatment of skin fibroblasts from SSc mice with DMF restores GSH intracellular content, decreases ROS production and cell proliferation. These results suggest that the nrf2 pathway is highly dysregulated in human and SSc mice with deleterious consequences on fibrosis and inflammation and that Nrf2 modulation represents a therapeutic target in SSc.

Izvorni jezik
Engleski

Znanstvena područja
Biologija



POVEZANOST RADA


Poveznice na cjeloviti tekst rada:

doi

Citiraj ovu publikaciju:

Kavian, Niloufar; Mehlal, Souad; Jeljeli, Mohamed; Saidu, Nathaniel Edward Bennett; Nicco, Carole; Cerles, Olivier; Chouzenoux, Sandrine; Cauvet, Anne; Camus, Claire; Ait- Djoudi, Mehdi et al.
The Nrf2-Antioxidant Response Element Signaling Pathway Controls Fibrosis and Autoimmunity in Scleroderma // Frontiers in Immunology, 9 (2018), - doi:10.3389/fimmu.2018.01896 (međunarodna recenzija, članak, ostalo)
Kavian, N., Mehlal, S., Jeljeli, M., Saidu, N., Nicco, C., Cerles, O., Chouzenoux, S., Cauvet, A., Camus, C. & Ait- Djoudi, M. (2018) The Nrf2-Antioxidant Response Element Signaling Pathway Controls Fibrosis and Autoimmunity in Scleroderma. Frontiers in Immunology, 9, - doi:10.3389/fimmu.2018.01896.
@article{article, author = {Kavian, Niloufar and Mehlal, Souad and Jeljeli, Mohamed and Saidu, Nathaniel Edward Bennett and Nicco, Carole and Cerles, Olivier and Chouzenoux, Sandrine and Cauvet, Anne and Camus, Claire and Ait- Djoudi, Mehdi and Ch\'{e}reau, Christiane and Kerdine- R\"{o}mer, Saadia and Allanore, Yannick and Batteux, Frederic}, year = {2018}, pages = {---}, DOI = {10.3389/fimmu.2018.01896}, keywords = {systemic sclerosis, oxidative stress, fibrosis, inflammation, Nrf2}, journal = {Frontiers in Immunology}, doi = {10.3389/fimmu.2018.01896}, volume = {9}, issn = {1664-3224}, title = {The Nrf2-Antioxidant Response Element Signaling Pathway Controls Fibrosis and Autoimmunity in Scleroderma}, keyword = {systemic sclerosis, oxidative stress, fibrosis, inflammation, Nrf2} }
@article{article, author = {Kavian, Niloufar and Mehlal, Souad and Jeljeli, Mohamed and Saidu, Nathaniel Edward Bennett and Nicco, Carole and Cerles, Olivier and Chouzenoux, Sandrine and Cauvet, Anne and Camus, Claire and Ait- Djoudi, Mehdi and Ch\'{e}reau, Christiane and Kerdine- R\"{o}mer, Saadia and Allanore, Yannick and Batteux, Frederic}, year = {2018}, pages = {---}, DOI = {10.3389/fimmu.2018.01896}, keywords = {systemic sclerosis, oxidative stress, fibrosis, inflammation, Nrf2}, journal = {Frontiers in Immunology}, doi = {10.3389/fimmu.2018.01896}, volume = {9}, issn = {1664-3224}, title = {The Nrf2-Antioxidant Response Element Signaling Pathway Controls Fibrosis and Autoimmunity in Scleroderma}, keyword = {systemic sclerosis, oxidative stress, fibrosis, inflammation, Nrf2} }

Časopis indeksira:


  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus


Citati:





    Contrast
    Increase Font
    Decrease Font
    Dyslexic Font