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Apigenin induced apoptosis in esophageal carcinoma cells by destruction membrane structures
Haiyan Zhu1, Hua Jin2, Jiang Pi2
1Department of Chemistry, Jinan University, Guangzhou, China.
Abstract:
Apigenin has shown to have killing effects on some kinds of solid tumor cells. However, the changes in cell membrane induced by apigenin on subcellular- or nanometer-level were still unclear. In this work, human esophageal cancer cells (EC9706 and KYSE150 cells) were employed as cell model to detect the cytotoxicity of apigenin, including cell growth inhibition, apoptosis induction, membrane toxicity, etc. MTT assay showed that apigenin could remarkably inhibit the growth and proliferation in both types of cells. Annexin V/PI-based flow cytometry analysis showed that the cytotoxic effects of apigenin in KYSE150 cells were mainly through early apoptosis induction, while in EC9706 cells, necrosis, and apoptosis were both involved in cell death. The morphological and ultrastructural properties induced by apigenin were investigated at single cellular- or nanometer-level using atomic force microscopy (AFM). Additionally, lactate dehydrogenase (LDH) leakage was measured to assess the changes in membrane permeability. The results indicated that apigenin increased the membrane permeability and caused leakage of LDH, which was consistent with damages on membrane ultrastructure detected by AFM. Therefore, membrane toxicity, including membrane ultrastructure damages and enhanced membrane permeability, played vital roles in apigenin induced human esophageal cancer cell apoptosis. SCANNING 38:322-328, 2016. © 2015 Wiley Periodicals, Inc.
Insights
Apigenin effectively inhibits human esophageal cancer cell growth and proliferation. This study reveals that apigenin-induced cell death involves membrane damage and increased permeability, impacting cancer cell apoptosis.
Area of Science:
- Oncology
- Cell Biology
- Biophysics
Background:
- Apigenin exhibits cytotoxic effects against solid tumors.
- The precise mechanisms of apigenin's action on cancer cell membranes at the nanoscale remain unclear.
Purpose of the Study:
- To investigate the cytotoxicity of apigenin on human esophageal cancer cells (EC9706 and KYSE150).
- To elucidate the role of membrane toxicity in apigenin-induced cancer cell apoptosis at the ultrastructural level.
Main Methods:
- Cell viability was assessed using MTT assays.
- Apoptosis and necrosis were analyzed via Annexin V/PI flow cytometry.
- Atomic Force Microscopy (AFM) was used to examine cellular and membrane ultrastructure.
- Lactate dehydrogenase (LDH) leakage was measured to evaluate membrane permeability.
Main Results:
- Apigenin significantly inhibited the growth and proliferation of both EC9706 and KYSE150 cells.
- Apigenin induced apoptosis in KYSE150 cells and a combination of apoptosis and necrosis in EC9706 cells.
- AFM revealed ultrastructural damage to cell membranes, correlating with increased membrane permeability and LDH leakage.
Conclusions:
- Apigenin's cytotoxic effects on human esophageal cancer cells are mediated by membrane toxicity.
- Damage to membrane ultrastructure and enhanced permeability are critical factors in apigenin-induced apoptosis.
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