Javascript must be enabled to continue!
Integrated analysis of Dendrobium nobile extract Dendrobin A against pancreatic ductal adenocarcinoma based on network pharmacology, bioinformatics, and validation experiments
View through CrossRef
Background:Dendrobium nobile (D. nobile), a traditional Chinese medicine, has received attention as an anti-tumor drug, but its mechanism is still unclear. In this study, we applied network pharmacology, bioinformatics, and in vitro experiments to explore the effect and mechanism of Dendrobin A, the active ingredient of D. nobile, against pancreatic ductal adenocarcinoma (PDAC).Methods: The databases of SwissTargetPrediction and PharmMapper were used to obtain the potential targets of Dendrobin A, and the differentially expressed genes (DEGs) between PDAC and normal pancreatic tissues were obtained from The Cancer Genome Atlas and Genotype-Tissue Expression databases. The protein-protein interaction (PPI) network for Dendrobin A anti-PDAC targets was constructed based on the STRING database. Molecular docking was used to assess Dendrobin A anti-PDAC targets. PLAU, one of the key targets of Dendrobin A anti-PDAC, was immunohistochemically stained in clinical tissue arrays. Finally, in vitro experiments were used to validate the effects of Dendrobin A on PLAU expression and the proliferation, apoptosis, cell cycle, migration, and invasion of PDAC cells.Results: A total of 90 genes for Dendrobin A anti-PDAC were screened, and a PPI network for Dendrobin A anti-PDAC targets was constructed. Notably, a scale-free module with 19 genes in the PPI indicated that the PPI is highly credible. Among these 19 genes, PLAU was positively correlated with the cachexia status while negatively correlated with the overall survival of PDAC patients. Through molecular docking, Dendrobin A was found to bind to PLAU, and the Dendrobin A treatment led to an attenuated PLAU expression in PDAC cells. Based on clinical tissue arrays, PLAU protein was highly expressed in PDAC cells compared to normal controls, and PLAU protein levels were associated with the differentiation and lymph node metastatic status of PDAC. In vitro experiments further showed that Dendrobin A treatment significantly inhibited the proliferation, migration, and invasion, inducing apoptosis and arresting the cell cycle of PDAC cells at the G2/M phase.Conclusion: Dendrobin A, a representative active ingredient of D. nobile, can effectively fight against PDAC by targeting PLAU. Our results provide the foundation for future PDAC treatment based on D. nobile.
Title: Integrated analysis of Dendrobium nobile extract Dendrobin A against pancreatic ductal adenocarcinoma based on network pharmacology, bioinformatics, and validation experiments
Description:
Background:Dendrobium nobile (D.
nobile), a traditional Chinese medicine, has received attention as an anti-tumor drug, but its mechanism is still unclear.
In this study, we applied network pharmacology, bioinformatics, and in vitro experiments to explore the effect and mechanism of Dendrobin A, the active ingredient of D.
nobile, against pancreatic ductal adenocarcinoma (PDAC).
Methods: The databases of SwissTargetPrediction and PharmMapper were used to obtain the potential targets of Dendrobin A, and the differentially expressed genes (DEGs) between PDAC and normal pancreatic tissues were obtained from The Cancer Genome Atlas and Genotype-Tissue Expression databases.
The protein-protein interaction (PPI) network for Dendrobin A anti-PDAC targets was constructed based on the STRING database.
Molecular docking was used to assess Dendrobin A anti-PDAC targets.
PLAU, one of the key targets of Dendrobin A anti-PDAC, was immunohistochemically stained in clinical tissue arrays.
Finally, in vitro experiments were used to validate the effects of Dendrobin A on PLAU expression and the proliferation, apoptosis, cell cycle, migration, and invasion of PDAC cells.
Results: A total of 90 genes for Dendrobin A anti-PDAC were screened, and a PPI network for Dendrobin A anti-PDAC targets was constructed.
Notably, a scale-free module with 19 genes in the PPI indicated that the PPI is highly credible.
Among these 19 genes, PLAU was positively correlated with the cachexia status while negatively correlated with the overall survival of PDAC patients.
Through molecular docking, Dendrobin A was found to bind to PLAU, and the Dendrobin A treatment led to an attenuated PLAU expression in PDAC cells.
Based on clinical tissue arrays, PLAU protein was highly expressed in PDAC cells compared to normal controls, and PLAU protein levels were associated with the differentiation and lymph node metastatic status of PDAC.
In vitro experiments further showed that Dendrobin A treatment significantly inhibited the proliferation, migration, and invasion, inducing apoptosis and arresting the cell cycle of PDAC cells at the G2/M phase.
Conclusion: Dendrobin A, a representative active ingredient of D.
nobile, can effectively fight against PDAC by targeting PLAU.
Our results provide the foundation for future PDAC treatment based on D.
nobile.
Related Results
Integrated Multi-Trait Analysis of Photosynthetic Carbon Assimilation Pathways and Adaptive Patterns in Dendrobium Species
Integrated Multi-Trait Analysis of Photosynthetic Carbon Assimilation Pathways and Adaptive Patterns in Dendrobium Species
Abstract
To analyze the diversity of photosynthetic carbon assimilation pathways and ecological adaptation characteristics in
D...
Abstract IA-08: Clinical advances in pancreas adenocarcinoma
Abstract IA-08: Clinical advances in pancreas adenocarcinoma
Abstract
Pancreatic adenocarcinoma (PDAC) remains one of the most lethal cancers today and is expected to be the second cause of cancer death in the coming decade. M...
Comprehensive chemical profiling of two Dendrobium species and identification of anti-hepatoma active constituents from Dendrobium chrysotoxum by network pharmacology
Comprehensive chemical profiling of two Dendrobium species and identification of anti-hepatoma active constituents from Dendrobium chrysotoxum by network pharmacology
Abstract
Background
Dendrobium nobile and Dendrobium chrysotoxum are important species of the genus Dendrobium and have great economic and medicinal...
Multi‐biomarker panel prediction model for diagnosis of pancreatic cancer
Multi‐biomarker panel prediction model for diagnosis of pancreatic cancer
AbstractBackground/PurposeThe current study aimed to develop a prediction model using a multi‐marker panel as a diagnostic screening tool for pancreatic ductal adenocarcinoma.Metho...
Methods of Dendrobium Rust Detection and Analysis on the Genetic Structure of Dendrobium Rust Populations
Methods of Dendrobium Rust Detection and Analysis on the Genetic Structure of Dendrobium Rust Populations
Dendrobium, as a rare and precious medicinal material in China, has high medicinal value. With the extension of the cultivating years, one of the main biological factors to affect ...
Potential regulatory mechanisms of hsa_circ_0131457/miR-636/SFRP2 inhibition of tumor progression in pancreatic ductus adenocarcinoma
Potential regulatory mechanisms of hsa_circ_0131457/miR-636/SFRP2 inhibition of tumor progression in pancreatic ductus adenocarcinoma
Abstract
Background: Circular RNAs (circRNAs), a novel class of non-coding RNAs, have been found to act as miRNA sponges that competitively inhibit the binding of miRNA to ...
Identification of new biomarkers for pancreatic cancer management: A bioinformatics analysis
Identification of new biomarkers for pancreatic cancer management: A bioinformatics analysis
Abstract
Background
Pancreatic adenocarcinoma is one of the highly invasive and the seventh most common cause of death among cancers worldwide. To identify key genes and t...
Abstract PO-041: Systemic screening of gene delivery methods in pancreatic ductal adenocarcinoma cells
Abstract PO-041: Systemic screening of gene delivery methods in pancreatic ductal adenocarcinoma cells
Abstract
Deaths in the United States due to Pancreatic Ductal Adenocarcinoma (PDAC) has risen steadily since 1990, and PDAC is expected to be the second leading caus...

