| Literature DB >> 34386269 |
Zhiping He1,2, Xingquan Liu1, Fenghua Wu1, Shaozhen Wu1, Gary O'Neal Rankin3, Ivan Martinez4, Yon Rojanasakul5, Yi Charlie Chen2.
Abstract
Ovarian cancer (OC) is among the top gynecologic cancers in the US with a death tally of 13,940 in the past year alone. Gallic acid (GA) is a natural compound with pharmacological benefits. In this research, the role of GA on cell proliferation, cell apoptosis, cell cycle-related protein expression was explored in OC cell lines OVCAR-3 and A2780/CP70. After 24,48 and 72 h of GA treatment, the IC50 values in OVCAR-3 cells were 22.14 ± 0.45, 20.36 ± 0.18, 15.13 ± 0.53 μM, respectively and in A2780/CP70 cells IC50 values were 33.53 ± 2.64, 27.18 ± 0.22, 22.81 ± 0.56, respectively. Hoechst 33,342 DNA staining and flow cytometry results showed 20 μM GA exposure could significantly accelerate apoptosis in both OC cell lines and the total apoptotic rate increased from 5.34%(control) to 21.42% in OVCAR-3 cells and from 8.01%(control) to 17.69% in A2780/CP70 cells. Western blot analysis revealed that GA stimulated programmed OC cell death via a p53-dependent intrinsic signaling. In addition, GA arrested cell cycle at the S or G2 phase via p53-p21-Cdc2-cyclin B pathway in the same cells. In conclusion, we provide some evidence of the efficacy of GA in ovarian cancer prevention and therapy.Entities:
Keywords: apoptosis; cell cycle arrest; gallic acid; ovarian cancer
Year: 2021 PMID: 34386269 PMCID: PMC8356902 DOI: 10.3390/app11093807
Source DB: PubMed Journal: Appl Sci (Basel) ISSN: 2076-3417 Impact factor: 2.679
Figure 1.GA suppresses OC cell proliferation. (a) Structure of GA. (b) GA inhibited OVCAR-3 cell viability. (c) GA inhibited the A2780/CP70 cell viability.
Figure 2.GA promotes OC cell apoptosis. (a) Cell viability evaluation of both OC cell lines after GA exposure for 48 h, using Hoechst 33342 staining and fluorescent microscopy (the apoptotic cells and total cells in Figure 2a were 4/35, 14/103, 21/69, 31/60 of OVCAR-3 cells and 6/58, 11/75, 19/65, 27/51 of A2780/CP70, respectively). (b) GA induced cell apoptosis in both OC cell lines, as evidenced by flow cytometry. (c) Effect of GA on late and early apoptotic rates and the total apoptotic rate in OVCAR-3 cells. (d) Outcome of GA on late and early apoptotic rates and the total apoptotic rate in the A2780/CP70 cell line.
Figure 3.GA induces OVCAR-3 apoptosis by activating p53-dependent signaling. (a) Evaluation of Caspase 3/7 activity after 48 h exposure with GA. (b) Western blot image. (c) Protein expression quantization of Bad, Bax, cleaved caspase-3 and p53.
Figure 4.GA promotes phase arrest in OC cell lines. (a) Flow cytometry image. (b) GA stimulated larger population of cells at the S and G2 phase in OVCAR-3 cells. (c) GA stimulated larger population of cells at the S and G2 phase in A2780/CP70 cells. (d) Western blot image for OVCAR-3. (e) Protein expression quantization of cell cycle-related proteins for OVCAR-3.