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Published on: July 10, 2015
Redox-sensitive Nrf2 and MAPK signaling pathways contribute to trichloroethene-mediated autoimmune disease
Nivedita Banerjee1, Hui Wang1, Gangduo Wang1
1Department of Pathology, University of Texas Medical Branch, Galveston, TX, 77555, United States.
Abstract:
Trichloroethene (TCE) exposure is associated with the induction of autoimmune diseases (ADs). Although oxidative stress plays a major role in TCE-mediated autoimmunity, the underlying molecular mechanisms still need to be delineated. Dysregulation of redox-sensitive nuclear factor (erythroid-derived 2)-like2 (Nrf2), resulting in uncontrolled antioxidant and cytoprotective genes, and pro-inflammatory MAPK signaling pathways could be critical in TCE-mediated disease progression. This study was, therefore, focused on establishing status and contribution of Nrf2 and MAPK signaling in TCE-mediated inflammatory and autoimmune responses, especially during disease progression. To achieve these objectives, time-response studies were conducted by treating female MRL+/+ mice with TCE (0.5 mg/mL, a dose relevant to human exposure) for 24, 36 and 52 wks. TCE exposure led to reduction in Nrf2 expression, but increased phos-NF-κB (p65) and iNOS along with increased phosphorylation of MAPKs (p38, ERK and JNK) and downstream pro-inflammatory cytokines IL-12, TNF-α and RANTES in the livers in a time-dependent manner. These changes were also associated with time-dependent increases in liver protein carbonyls and induction of serum anti-dsDNA antibodies (marker of systemic lupus erythematosus disease), further supporting the role of oxidative stress and Nrf2/MAPK signaling in TCE-mediated autoimmune response progression. The mechanistic role of MAPK in TCE-mediated autoimmunity was further established by treating MRL+/+ mice with sulforaphane (SFN; 8 mg/kg, i.p., every other day) along with TCE (10 mmol/kg, i.p., every 4th day) for 6 wks using an established protocol, and by in vitro treatment of T cells with dichloroacetyl chloride (a TCE metabolite) with/without p38 MAPK inhibitor. SFN treatment attenuated the TCE-mediated phosphorylation of p38 MAPK. More importantly, treatment with SFN or p38 inhibitor led to suppression of downstream pro-inflammatory cytokines IL-12 and TNF-α. These findings thus support the contribution of Nrf2 and MAPK signaling pathways and help in delineating novel potential therapeutic targets against TCE-mediated autoimmunity.
Insights
Trichloroethene (TCE) exposure triggers autoimmune diseases by disrupting Nrf2 and MAPK pathways. Sulforaphane or p38 MAPK inhibition can suppress inflammation, offering potential therapeutic targets for TCE-induced autoimmunity.
Area of Science:
- Environmental Health
- Immunology
- Toxicology
Background:
- Trichloroethene (TCE) exposure is linked to autoimmune diseases (ADs).
- Oxidative stress and dysregulation of redox-sensitive pathways like Nrf2 and MAPK are implicated in TCE-mediated autoimmunity.
- The precise molecular mechanisms driving TCE-induced autoimmune responses require further elucidation.
Purpose of the Study:
- To investigate the role and contribution of nuclear factor (erythroid-derived 2)-like 2 (Nrf2) and MAPK signaling pathways in TCE-mediated inflammatory and autoimmune responses.
- To examine the temporal progression of these molecular changes during chronic TCE exposure.
- To identify potential therapeutic targets for mitigating TCE-induced autoimmunity.
Main Methods:
- Time-response studies involving chronic TCE exposure in female MRL+/+ mice (24, 36, and 52 weeks).
- Analysis of Nrf2 expression, phosphorylated NF-κB (p65), iNOS, MAPK phosphorylation (p38, ERK, JNK), pro-inflammatory cytokines (IL-12, TNF-α, RANTES), and oxidative stress markers (liver protein carbonyls).
- Mechanistic studies using sulforaphane (SFN) or a p38 MAPK inhibitor in TCE-exposed mice and in vitro T cell treatments with a TCE metabolite.
Main Results:
- TCE exposure led to decreased Nrf2 expression and increased liver inflammation markers (p-NF-κB, iNOS, phosphorylated MAPKs, IL-12, TNF-α, RANTES) in a time-dependent manner.
- Increased oxidative stress (protein carbonyls) and serum anti-dsDNA antibodies (a marker for systemic lupus erythematosus) were observed with prolonged TCE exposure.
- SFN treatment attenuated TCE-induced p38 MAPK phosphorylation, and both SFN and p38 inhibitor suppressed downstream pro-inflammatory cytokines.
Conclusions:
- Nrf2 and MAPK signaling pathways are critically involved in the progression of TCE-mediated autoimmune responses.
- TCE exposure induces oxidative stress and inflammation, contributing to autoimmune disease development.
- Targeting Nrf2 and MAPK pathways, particularly p38 MAPK, presents a promising therapeutic strategy against TCE-induced autoimmunity.
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