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Published on: January 26, 2019
Anthocyanins of Blue Corn and Tortilla Arrest Cell Cycle and Induce Apoptosis on Breast and Prostate Cancer Cells
Mónica Y Herrera-Sotero1, Carlos D Cruz-Hernández2, Rosa M Oliart-Ros1
1Food Research and Development Unit (UNIDA), Tecnológico Nacional de México/IT Veracruz, Veracruz, México.
Abstract:
Background: Breast and prostate cancer are frequently diagnosed neoplasias in women and men around the world. The signaling of the androgen receptor (AR) influences the development of both tumors. Since therapies focused to block the receptor's activity have not been fully effective, and have shown side effects, therapies based on natural compounds are promissory complementary alternatives in its treatment. Objective: The aim of this study was to determine the effect of anthocyanins from blue corn in cancer cell lines. Methods: We analyzed the antiproliferative effect of anthocyanins from raw and alkali-processed (tortillas) Mixteco blue corn in breast and prostate cancer cell lines MDA-MB-453 (subtype: triple negative) and LNCaP using methyltiazlyl-tetrazolium (MTT) and flow cytometry (FCM). The combination of anthocyanins and 2-amino-N-quinolin-8-yl-benzenesulfonamide (QBS) or nocodazole also were evaluated. The anthocyanins were isolated trough column chromatography (XAD-7).Results: Our results demonstrated that anthocyanin specially the ones obtained from tortillas, decreased cell viability and arrested cell cycle in G1 phase inducing apoptosis. Cytometry analysis shows an increased effect on apoptosis of MDA-MB-453 and LNCaP cells when tortilla anthocyanins and QBS were combined. Conclusions: This is the first report that suggest that anthocyanins from blue corn have an effect in cell cycle and viability so they could serve as adjuvants for breast and prostate cancer therapies and may prompt to deepen investigations to decipher its molecular properties. AbbreviationsARAndrogen ReceptorCIDIIRInterdisciplinary Center for Research on Integral Regional DevelopmentDHT5α-DihydrotestosteroneEREstrogen ReceptorPRProgesterone ReceptorQBSAmino-N-quinolin-8-yl-benzenesulfonamide.
Insights
Anthocyanins from blue corn, especially from tortillas, reduced breast and prostate cancer cell viability and induced apoptosis. These natural compounds show potential as complementary therapies for cancer treatment.
Area of Science:
- Oncology
- Natural Products Chemistry
- Cell Biology
Background:
- Breast and prostate cancers are prevalent worldwide, with androgen receptor (AR) signaling playing a key role in their development.
- Current AR-targeted therapies have limitations, including ineffectiveness and side effects, highlighting the need for alternative treatments.
- Natural compounds offer promising complementary therapeutic strategies for these cancers.
Purpose of the Study:
- To investigate the anti-cancer effects of anthocyanins extracted from blue corn.
- To evaluate the impact of anthocyanins from both raw and processed (tortilla) blue corn on breast and prostate cancer cell lines.
- To assess the synergistic effects of anthocyanins in combination with other agents like QBS or nocodazole.
Main Methods:
- Anthocyanins were isolated from Mixteco blue corn (raw and alkali-processed) using column chromatography (XAD-7).
- Antiproliferative effects were assessed in MDA-MB-453 (triple-negative breast) and LNCaP (prostate) cancer cell lines using MTT assays.
- Cell cycle progression and apoptosis were analyzed via flow cytometry (FCM).
Main Results:
- Blue corn anthocyanins, particularly those from tortillas, significantly decreased cancer cell viability.
- Anthocyanin treatment led to cell cycle arrest in the G1 phase and induced apoptosis in both cell lines.
- A combination of tortilla anthocyanins and QBS enhanced the apoptotic effect on MDA-MB-453 and LNCaP cells.
Conclusions:
- This study is the first to demonstrate that blue corn anthocyanins impact cancer cell cycle and viability.
- Anthocyanins from blue corn show potential as adjuvant therapies for breast and prostate cancer.
- Further research is warranted to elucidate the molecular mechanisms underlying the anti-cancer properties of these anthocyanins.
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