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Published on: January 26, 2019
[10]-Gingerol Affects Multiple Metastatic Processes and Induces Apoptosis in MDAMB- 231 Breast Tumor Cells
Angelina M Fuzer1, Ana C B M Martin1, Amanda B Becceneri1
1Department of de Gerontology, Federal University of Sao Carlos, Sao Carlos, SP, 13565-905, Brazil.
Background:
Triple Negative Breast Cancer (TNBC) represents the approximately 15% of breast cancers that lack expression of Estrogen (ER) and Progesterone Receptors (PR) and do not exhibit amplification of the human epidermal growth factor receptor 2 (HER2) gene, imposing difficulties to treatment. Interactions between tumor cells and their microenvironment facilitate tumor cell invasion in the surrounding tissues, intravasation through newly formed vessels, and dissemination to form metastasis. To treat metastasis from breast and many other cancer types, chemotherapy is one of the most extensively used methods. However, its efficacy and safety remain a primary concern, as well as its toxicity and other side effects. Thus, there is increasing interest in natural antitumor agents. In a previous work, we have demonstrated that [10]-gingerol is able to revert malignant phenotype in breast cancer cells in 3D culture and, moreover, to inhibit the dissemination of TNBC to multiple organs including lung, bone and brain, in spontaneous and experimental in vivo metastasis assays in mouse model.
Objectives:
This work aims to investigate the in vitro effects of [10]-gingerol, using human MDA-MB-231TNBC cells, in comparison to non-tumor MCF-10A breast cells, in order to understand the antitumor and antimetastatic effects found in vivo and in a 3D environment.
Methods:
We investigated different steps of the metastatic process in vitro, such as cell migration, invasion, adhesion and MMP activity. In addition, we analyzed the anti-apoptotic and genotoxic effects of [10]-gingerol using PEAnnexin, DNA fragmentation, TUNEL and comet assays, respectively.
Results:
[10]-gingerol was able to inhibit cell adhesion, migration, invasion and to induce apoptosis more effectively in TNBC cells, when compared to non-tumor cells, demonstrating that these mechanisms can be involved in the antitumor and antimetastatic effects of [10]-gingerol, found both in 3D culture and in vivo.
Conclusion:
Taken together, results found here are complementary to previous studies of our group and others and demonstrate that additional mechanisms, besides apoptotic cell death, is used by [10]-gingerol to accomplish its antitumor and antimetastatic effects. Our results indicate a potential for this natural compound as an antitumor molecule or as an adjuvant for chemotherapeutics already used in the clinic.
Insights
[10]-gingerol, a natural compound, effectively inhibits Triple Negative Breast Cancer (TNBC) cell adhesion, migration, and invasion in vitro. These findings suggest [10]-gingerol
Area of Science:
- Oncology
- Natural Products Chemistry
- Cancer Metastasis Research
Background:
- Triple Negative Breast Cancer (TNBC) lacks ER, PR, and HER2 expression, presenting treatment challenges.
- Tumor microenvironment interactions drive cancer cell invasion and metastasis.
- Chemotherapy for metastasis has efficacy and safety concerns, increasing interest in natural antitumor agents.
Purpose of the Study:
- To investigate the in vitro effects of [10]-gingerol on human MDA-MB-231 TNBC cells compared to non-tumor MCF-10A cells.
- To elucidate the mechanisms underlying the antitumor and antimetastatic effects of [10]-gingerol observed in vivo and in 3D cultures.
Main Methods:
- In vitro analysis of cell migration, invasion, and adhesion.
- Assessment of matrix metalloproteinase (MMP) activity.
- Evaluation of anti-apoptotic and genotoxic effects using Annexin V, DNA fragmentation, TUNEL, and comet assays.
Main Results:
- [10]-gingerol significantly inhibited cell adhesion, migration, and invasion in TNBC cells.
- Apoptosis was induced more effectively in TNBC cells compared to non-tumor cells.
- These mechanisms contribute to the observed antitumor and antimetastatic effects of [10]-gingerol.
Conclusions:
- [10]-gingerol exhibits antitumor and antimetastatic properties through multiple mechanisms, including apoptosis induction.
- The compound demonstrates potential as a standalone antitumor agent or as an adjuvant therapy for existing breast cancer treatments.
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