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Author Spotlight: Unveiling Transmembrane Protein Family-Related Markers in Gastric Cancer and Implications for Targeted Therapies
Published on: September 15, 2023
Anticancer effects of β-elemene in gastric cancer cells and its potential underlying proteins: a proteomic study
Jun-Song Liu1, Shi-Cai He1, Zheng-Liang Zhang1
1Department of General Surgery, The First Affiliated Hospital of Medical College of Xi'an Jiaotong University, Xi'an, Shaanxi 710061, P.R. China.
Abstract:
Gastric cancer is a common malignancy with a poor prognosis. β-elemene is a broad-spectrum anticancer drug extracted from the traditional Chinese medicinal herb Curcuma wenyujin. In the present study, we investigated the anticancer effects of β-elemene in gastric cancer cells and the potential proteins involved. Human SGC7901 and MKN45 gastric cancer cells were treated with different concentrations of β-elemene. Cell viability, clonogenic survival and apoptotic cell death were assessed. β-elemene inhibited viability and decreased clonogenic survival of gastric cancer cells in a dose-dependent manner. Apoptosis induction contributed to the anticancer effects. We then employed a proteomic method, isobaric tags for relative and absolute quantitation (iTRAQ), to detect the proteins altered by β-elemene. In total, 147 upregulated proteins and 86 downregulated proteins were identified in response to β-elemene treatment in SGC7901 gastric cancer cells. Among them, expression of p21-activated protein kinase‑interacting protein 1 (PAK1IP1), Bcl-2-associated transcription factor 1 (BTF) and topoisomerase 2-α (TOPIIα) were validated by western blot analyses and the trends were consistent with iTRAQ results. Top pathways involved in β-elemene treatment in SGC7901 gastric cancer cells included ribosome signaling, peroxisome proliferator-activated receptors (PPARs) signaling pathway, regulation of actin cytoskeleton, phagosome, biosynthesis and metabolism of some amino acids. Collectively, our results suggest a promising therapeutic role of β-elemene in gastric cancer. The differentially expressed proteins provide further insight into the potential mechanisms involved in gastric cancer treatment using β-elemene.
Insights
Beta-elemene, derived from traditional Chinese medicine, effectively inhibits gastric cancer cell growth and survival. This study identifies key proteins and pathways involved, suggesting beta-elemene as a promising gastric cancer therapy.
Area of Science:
- Oncology
- Pharmacology
- Proteomics
Background:
- Gastric cancer presents a significant health challenge with limited effective treatments.
- Beta-elemene, a compound from Curcuma wenyujin, exhibits broad-spectrum anticancer properties.
- Understanding beta-elemene's molecular mechanisms in gastric cancer is crucial for therapeutic development.
Purpose of the Study:
- To investigate the anticancer effects of beta-elemene on human gastric cancer cells (SGC7901 and MKN45).
- To identify proteins and signaling pathways modulated by beta-elemene treatment using proteomic analysis.
- To explore the therapeutic potential of beta-elemene in gastric cancer treatment.
Main Methods:
- Gastric cancer cell lines (SGC7901, MKN45) were treated with varying concentrations of beta-elemene.
- Cell viability, clonogenic survival, and apoptosis were assessed.
- Proteomic analysis using isobaric tags for relative and absolute quantitation (iTRAQ) was performed to identify differentially expressed proteins.
Main Results:
- Beta-elemene significantly inhibited gastric cancer cell viability and clonogenic survival in a dose-dependent manner.
- Apoptosis induction was identified as a key mechanism contributing to beta-elemene's anticancer effects.
- iTRAQ analysis revealed 147 upregulated and 86 downregulated proteins, with validation of PAK1IP1, BTF, and TOPIIα expression.
Conclusions:
- Beta-elemene demonstrates potent anticancer activity against gastric cancer cells, primarily through apoptosis induction.
- The study identified novel protein targets and pathways, including ribosome signaling and PPAR signaling, affected by beta-elemene.
- These findings support the potential of beta-elemene as a novel therapeutic agent for gastric cancer.

