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Arecoline Enhances Phosphodiesterase 4A Activity to Promote Transforming Growth Factor-β-Induced Buccal Mucosal Fibroblast Activation via cAMP-Epac1 Signaling Pathway
by
Shao, Chunsheng
, Gao, Lihua
, Chen, Liangjian
, Deng, Mingsi
, Zhang, Bo
in
Actin
/ arecoline
/ Bioinformatics
/ buccal mucosal fibroblast
/ cAMP-Epac1 signaling pathway
/ Collagen
/ Collagen (type I)
/ Cyclic AMP
/ Fibroblasts
/ Fibrosis
/ Genes
/ Growth factors
/ Molecular modelling
/ Mucosa
/ oral submucous fibrosis
/ PDE4A
/ Pharmacology
/ Phosphodiesterase
/ Protein kinase A
/ Proteins
/ Signal transduction
/ Smooth muscle
/ Squamous cell carcinoma
/ Transforming growth factor-b
/ Transforming growth factor-b1
/ Variance analysis
2021
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Arecoline Enhances Phosphodiesterase 4A Activity to Promote Transforming Growth Factor-β-Induced Buccal Mucosal Fibroblast Activation via cAMP-Epac1 Signaling Pathway
by
Shao, Chunsheng
, Gao, Lihua
, Chen, Liangjian
, Deng, Mingsi
, Zhang, Bo
in
Actin
/ arecoline
/ Bioinformatics
/ buccal mucosal fibroblast
/ cAMP-Epac1 signaling pathway
/ Collagen
/ Collagen (type I)
/ Cyclic AMP
/ Fibroblasts
/ Fibrosis
/ Genes
/ Growth factors
/ Molecular modelling
/ Mucosa
/ oral submucous fibrosis
/ PDE4A
/ Pharmacology
/ Phosphodiesterase
/ Protein kinase A
/ Proteins
/ Signal transduction
/ Smooth muscle
/ Squamous cell carcinoma
/ Transforming growth factor-b
/ Transforming growth factor-b1
/ Variance analysis
2021
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Arecoline Enhances Phosphodiesterase 4A Activity to Promote Transforming Growth Factor-β-Induced Buccal Mucosal Fibroblast Activation via cAMP-Epac1 Signaling Pathway
by
Shao, Chunsheng
, Gao, Lihua
, Chen, Liangjian
, Deng, Mingsi
, Zhang, Bo
in
Actin
/ arecoline
/ Bioinformatics
/ buccal mucosal fibroblast
/ cAMP-Epac1 signaling pathway
/ Collagen
/ Collagen (type I)
/ Cyclic AMP
/ Fibroblasts
/ Fibrosis
/ Genes
/ Growth factors
/ Molecular modelling
/ Mucosa
/ oral submucous fibrosis
/ PDE4A
/ Pharmacology
/ Phosphodiesterase
/ Protein kinase A
/ Proteins
/ Signal transduction
/ Smooth muscle
/ Squamous cell carcinoma
/ Transforming growth factor-b
/ Transforming growth factor-b1
/ Variance analysis
2021
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Arecoline Enhances Phosphodiesterase 4A Activity to Promote Transforming Growth Factor-β-Induced Buccal Mucosal Fibroblast Activation via cAMP-Epac1 Signaling Pathway
Journal Article
Arecoline Enhances Phosphodiesterase 4A Activity to Promote Transforming Growth Factor-β-Induced Buccal Mucosal Fibroblast Activation via cAMP-Epac1 Signaling Pathway
2021
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Overview
Chewing areca nut (betel quid) is strongly associated with oral submucous fibrosis (OSF), a pre-cancerous lesion. Among the areca alkaloids, arecoline is the main agent responsible for fibroblast proliferation; however, the specific molecular mechanism of arecoline affecting the OSF remains unclear. The present study revealed that arecoline treatment significantly enhanced Transforming growth factor-β (TGF-β)-induced buccal mucosal fibroblast (BMF) activation and fibrotic changes. Arecoline interacts with phosphodiesterase 4A (PDE4A) to exert its effects through modulating PDE4A activity but not PDE4A expression. PDE4A silence reversed the effects of arecoline on TGF-β-induced BMFs activation and fibrotic changes. Moreover, the exchange protein directly activated by cAMP 1 (Epac1)-selective Cyclic adenosine 3′,5′-monophosphate (cAMP) analog (8-Me-cAMP) but not the protein kinase A (PKA)-selective cAMP analog (N6-cAMP) remarkably suppressed α-smooth muscle actin(α-SMA) and Collagen Type I Alpha 1 Chain (Col1A1) protein levels in response to TGF-β1 and arecoline co-treatment, indicating that cAMP-Epac1 but not cAMP-PKA signaling is involved in arecoline functions on TGF-β1-induced BMFs activation. In conclusion, arecoline promotes TGF-β1-induced BMFs activation through enhancing PDE4A activity and the cAMP-Epac1 signaling pathway during OSF. This novel mechanism might provide more powerful strategies for OSF treatment, requiring further in vivo and clinical investigation.
Publisher
Frontiers Media SA,Frontiers Media S.A
Subject
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