The Epithelial-to-Mesenchymal Transition as a Possible Therapeutic Target in Fibrotic Disorders
Эпителиально-мезенхимальный переход как возможная терапевтическая мишень при фибротических заболеваниях
2020-12-21
SCID: 54.1/9x4fnkq7
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anti-fibrotic therapyepithelial-to-mesenchymal transitionextracellular matrix depositionfibrotic disorderstransforming growth factor-beta
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Abstract (AI)
Fibrosis is a chronic and progressive disorder characterized by excessive deposition of extracellular matrix, which leads to scarring and loss of function of the affected organ or tissue. Indeed, the fibrotic process affects a variety of organs and tissues, with specific molecular background. However, two common hallmarks are shared: the crucial role of the transforming growth factor-beta (TGF-β) and the involvement of the inflammation process, that is essential for initiating the fibrotic degeneration. TGF-β in particular but also other cytokines regulate the most common molecular mechanism at the basis of fibrosis, the Epithelial-to-Mesenchymal Transition (EMT). EMT has been extensively studied, but not yet fully explored as a possible therapeutic target for fibrosis. A deeper understanding of the crosstalk between fibrosis and EMT may represent an opportunity for the development of a broadly effective anti-fibrotic therapy. Here we report the evidences of the relationship between EMT and multi-organ fibrosis, and the possible therapeutic approaches that may be developed by exploiting this relationship.
Key Findings
1
Despite organ-specific molecular features, fibrosis commonly involves transforming growth factor-beta signaling and inflammation, which initiates fibrotic degeneration.
2
Evidence links EMT with fibrosis across multiple organs, indicating that EMT may represent a broadly relevant therapeutic target.
3
Fibrosis is characterized by excessive extracellular-matrix deposition, causing tissue scarring and progressive loss of organ function.
4
TGF-β and other cytokines regulate epithelial-to-mesenchymal transition, a central molecular mechanism implicated in fibrosis.
5
Targeting the crosstalk between EMT and fibrotic processes could support development of more broadly effective anti-fibrotic therapies, although this strategy remains incompletely explored.
Research Object
Epithelial-to-mesenchymal transition (EMT) in multi-organ fibrotic disorders
Research Subject
The role of EMT, its crosstalk with TGF-β-driven inflammation and fibrosis, and its potential as a therapeutic target
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2020-12-21
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