Reciprocal regulation of TGF-β and reactive oxygen species: A perverse cycle for fibrosis
Взаимная регуляция TGF-β и активных форм кислорода: порочный цикл фиброза
2015-10-21
SCID: 54.1/yj3a6cmm
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FibrosisReactive oxygen speciesRedox imbalanceSmad signalingTGF-β1
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Abstract (AI)
Transforming growth factor beta (TGF-β) is the most potent pro-fibrogenic cytokine and its expression is increased in almost all of fibrotic diseases. Although signaling through Smad pathway is believed to play a central role in TGF-β's fibrogenesis, emerging evidence indicates that reactive oxygen species (ROS) modulate TGF-β's signaling through different pathways including Smad pathway. TGF-β1 increases ROS production and suppresses antioxidant enzymes, leading to a redox imbalance. ROS, in turn, induce/activate TGF-β1 and mediate many of TGF-β's fibrogenic effects, forming a vicious cycle (see graphic flow chart on the right). Here, we review the current knowledge on the feed-forward mechanisms between TGF-β1 and ROS in the development of fibrosis. Therapeutics targeting TGF-β-induced and ROS-dependent cellular signaling represents a novel approach in the treatment of fibrotic disorders.
Key Findings
1
ROS reciprocally induce or activate TGF-β1 and mediate many of its fibrogenic effects, establishing a feed-forward vicious cycle.
2
Reactive oxygen species modulate TGF-β signaling through multiple pathways, including the central Smad pathway.
3
TGF-β is a major pro-fibrogenic cytokine whose expression is elevated across nearly all fibrotic diseases.
4
TGF-β1 increases ROS production and suppresses antioxidant enzymes, creating a redox imbalance.
5
Targeting TGF-β-induced and ROS-dependent signaling is proposed as a therapeutic strategy for fibrotic disorders.
Research Object
the reciprocal TGF-β1–reactive oxygen species regulatory system in fibrotic diseases
Research Subject
feed-forward mechanisms by which TGF-β1 and reactive oxygen species regulate each other and drive fibrogenesis
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2015-10-21
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