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Exploring the Therapeutic Potential of Triptonide in Salivary Adenoid Cystic Carcinoma: A Comprehensive Approach
Shikai Geng1,2,3, Li Chen1,2,3, Wanzun Lin1,2
1Department of Radiation Oncology, Shanghai Proton and Heavy Ion Center, Fudan University Shanghai Cancer Center, Shanghai, China.
Background:
Salivary Adenoid Cystic Carcinoma (ACC) is characterized by a highly invasive and slow-growing pattern, and its etiology remains unidentified. Triptonide (TN) has demonstrated efficacy as a pharmacotherapeutic agent against ACC. Nonetheless, the specific targets and mechanism of molecular action underlying the effectiveness of TN in treating ACC have not been elucidated.
Objectives:
By integrating network pharmacology within laboratory experiments, this research delves into the prospective targets and molecular mechanisms associated with the application of TN in treating ACC.
Methods:
Initially, pertinent targets associated with TN against ACC were acquired from public databases. Subsequently, a combination of network pharmacology and bioinformatics analysis was utilized to screen the top 10 hub targets and key signal pathways of TN-treating ACC. Finally, in vitro experiments involving various molecular assays were conducted to evaluate the biological phenotypes of cells following TN treatment, encompassing assessments of apoptosis levels, plate migration, and other parameters, thereby validating pivotal genes and pathways.
Results:
A total of 23 pertinent targets for TN in relation to ACC were identified, with the top 10 hub genes being MAPK8, PTGS2, RELA, MAPK14, NR3C1, HDAC1, PPARG, NFKBIA, AR, and PGR. There was a significant correlation between the TNF signaling pathway and the treatment of ACC with TN. In vitro experiments demonstrated that TN treatment elevated RELA phosphorylation while concurrently reducing MAPK14 phosphorylation and inducing G2/M arrest. TN exhibited the ability to enhance the apoptosis rate through increased caspase-3 activity, elevated levels of Reactive Oxygen Species (ROS), mitochondrial dysfunction, and inhibition of cell migration.
Conclusion:
There is a potential therapeutic role for TN in the treatment of ACC through the activation of the TNF signaling pathway. Among the identified candidates, MAPK8, HDAC1, PTGS2, RELA, NR3C1, PPARG, NFKBIA, AR, and PGR emerge as the most pertinent therapeutic targets for TN in the context of ACC treatment.
Insights
Triptonide (TN) shows promise for treating Adenoid Cystic Carcinoma (ACC) by targeting key genes and activating the TNF signaling pathway. Further research validates TN
Area of Science:
- Oncology
- Pharmacology
- Bioinformatics
Background:
- Salivary Adenoid Cystic Carcinoma (ACC) is invasive with unknown etiology.
- Triptonide (TN) shows efficacy against ACC, but its targets and mechanisms are unclear.
Purpose of the Study:
- To identify prospective targets and molecular mechanisms of Triptonide (TN) in treating Adenoid Cystic Carcinoma (ACC).
- To integrate network pharmacology with laboratory experiments for comprehensive analysis.
Main Methods:
- Acquired TN-ACC targets from public databases.
- Employed network pharmacology and bioinformatics to screen top hub targets and pathways.
- Conducted in vitro experiments to assess TN's effects on cell apoptosis, migration, and key gene/pathway validation.
Main Results:
- Identified 23 TN-ACC targets, highlighting MAPK8, RELA, and HDAC1 as key hub genes.
- Confirmed a significant correlation between the TNF signaling pathway and TN treatment for ACC.
- In vitro studies showed TN treatment induced apoptosis, reduced migration, and altered phosphorylation of RELA and MAPK14.
Conclusions:
- Triptonide (TN) has potential therapeutic value for ACC via TNF signaling pathway activation.
- Identified MAPK8, HDAC1, PTGS2, RELA, NR3C1, PPARG, NFKBIA, AR, and PGR as crucial therapeutic targets for TN in ACC.
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