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Updated: May 11, 2026

Combined Conditional Knockdown and Adapted Sphere Formation Assay to Study a Stemness-Associated Gene of Patient-derived Gastric Cancer Stem Cells
Published on: May 9, 2020
β -Elemene-Attenuated Tumor Angiogenesis by Targeting Notch-1 in Gastric Cancer Stem-Like Cells
Bing Yan1, Yuqi Zhou, Shouhan Feng
1Department of Traditional Chinese Medicine, Changzheng Hospital, The Second Military Medical University, Shanghai 200003, China.
Abstract:
Emerging evidence suggests that cancer stem cells are involved in tumor angiogenesis. The Notch signaling pathway is one of the most important regulators of these processes. β -Elemene, a naturally occurring compound extracted from Curcumae Radix, has been used as an antitumor drug for various cancers in China. However, its underlying mechanism in the treatment of gastric cancer remains largely unknown. Here, we report that CD44+ gastric cancer stem-like cells (GCSCs) showed enhanced proliferation capacity compared to their CD44- counterparts, and this proliferation was accompanied by the high expression of Notch-1 (in vitro). These cells were also more superior in spheroid colony formation (in vitro) and tumorigenicity (in vivo) and positively associated with microvessel density (in vivo). β -Elemene was demonstrated to effectively inhibit the viability of GCSCs in a dose-dependent manner, most likely by suppressing Notch-1 (in vitro). β -Elemene also contributed to growth suppression and attenuated the angiogenesis capacity of these cells (in vivo) most likely by interfering with the expression of Notch-1 but not with Dll4. Our findings indicated that GCSCs play an important role in tumor angiogenesis, and Notch-1 is one of the most likely mediators involved in these processes. β -Elemene was effective at attenuating angiogenesis by targeting the GCSCs, which could be regarded as a potential mechanism for its efficacy in gastric cancer management in the future.
Insights
Gastric cancer stem-like cells (GCSCs) promote tumor angiogenesis via Notch-1 signaling. Beta-elemene inhibits GCSC viability and angiogenesis by targeting Notch-1, offering a potential gastric cancer treatment strategy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Cancer stem cells (CSCs) are implicated in tumor angiogenesis.
- The Notch signaling pathway regulates CSCs and angiogenesis.
- Beta-elemene, from Curcumae Radix, is an antitumor agent with an unclear mechanism in gastric cancer.
Purpose of the Study:
- Investigate the role of gastric CSCs (GCSCs) in tumor angiogenesis.
- Elucidate the mechanism of beta-elemene in treating gastric cancer.
- Determine if beta-elemene targets GCSCs and Notch-1 signaling.
Main Methods:
- Compared proliferation, spheroid formation, and tumorigenicity of CD44+ GCSCs versus CD44- cells in vitro and in vivo.
- Assessed Notch-1 and Dll4 expression in GCSCs.
- Evaluated the effect of beta-elemene on GCSC viability, proliferation, and angiogenesis in vitro and in vivo.
Main Results:
- CD44+ GCSCs exhibited enhanced proliferation, spheroid formation, and tumorigenicity, associated with high Notch-1 expression and microvessel density.
- Beta-elemene inhibited GCSC viability and proliferation dose-dependently by suppressing Notch-1.
- Beta-elemene reduced tumor growth and angiogenesis in vivo by interfering with Notch-1 expression.
Conclusions:
- GCSCs are crucial for tumor angiogenesis, mediated by Notch-1.
- Beta-elemene attenuates angiogenesis by targeting GCSCs via Notch-1 inhibition.
- Beta-elemene presents a potential therapeutic strategy for gastric cancer by targeting GCSCs.
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