| Literature DB >> 35505354 |
Jianhou Huang1, Dinglong Pan2, Feng Liu3, Yiting Hong4, Gang Huang5, Xiaowei Huang1, Xinwen Wang6, Zhiqiang Lin7.
Abstract
OBJECTIVE: Esophageal cancer, one of the most common cancers in the upper digestive tract and is one of the leading cancer-related mortality worldwide. Accumulating studies found that Ginsenoside compound K (CK) has significantly anti-tumor effects, especially in the suppression of proliferation, migration, as well as invasion in various human cancers. While the effects of Ginsenoside CK in esophageal cancer have not been well studied. In our present study, we aim to explore the functions and mechanisms of Ginsenoside CK in the progression of esophageal cancer cells (Eca109).Entities:
Keywords: Eca109; Ginsenoside CK; Knockdown; Progression; VEGF-A
Mesh:
Substances:
Year: 2022 PMID: 35505354 PMCID: PMC9066758 DOI: 10.1186/s13019-022-01846-2
Source DB: PubMed Journal: J Cardiothorac Surg ISSN: 1749-8090 Impact factor: 1.637
Fig. 1The drug formula of Ginsenoside CK (A) and cell proliferation changes with different concentration of Ginsenoside CK cultured for 72 h in Eca109 cell (B)
Fig. 2Ginsenoside CK suppressed the migration and invasion of Eca109 cell. A Wound healing assay showed that the migration ability was reduced after Ginsenoside CK treatment. B Transwell assay demonstrated that cell migration and invasion ability decreased after Ginsenoside CK intervention. ***P < 0.001
Fig. 3The knockdown of VEGF-A in Eca109 cell and cell proliferation changes. A Green fluorescent and western bolt analysis showed that Eca109 cell were stably transfected with VEGF-A knockdown gene. B Cell proliferation changes detected by CCK-8 assay showed that cell proliferation decreased after incubation with Ginsenoside CK for 24, 48, 72 and 96 h. ***P < 0.001
Fig. 4VEGF-A gene knockdown suppressed the migration and invasion of Eca109 cell. A Wound healing assay found that cell migration ability was inhibited after VEGF-A gene knockdown. B The migration and invasion ability suppress in VEGF-A gene knockdown group. ***P < 0.001
Fig. 5The involvement of Ginsenoside CK and VEGF-A in the pro-apoptotic in Eca109 cell. A The cell apoptosis rate of Eca109 cell was increased after Ginsenoside CK treatments. B The VEGF-A gene knockdown promote the cell apoptosis rates of Eca109 cell. ***P < 0.001
Fig. 6The involvement of VEGF-A/Pi3k/Akt pathway in Ginsenoside CK intervention and VEGF-A gene knockdown of Eca109 cell. The decreased expressions of VEGF-A, P-Pi3k, P-Akt in Ginsenoside CK intervention (A) and VEGF-A gene knockdown (B) groups, while the total proteins of Pi3k and Akt were unchanged. ***P < 0.001