| Literature DB >> 29386061 |
I-Yun Lee1, Yin-Yin Lin1, Yao-Hsu Yang1, Yu-Shin Lin2, Chun-Liang Lin3,4, Wei-Yu Lin5,6, Yu-Ching Cheng1, Li-Hsin Shu1, Ching-Yuan Wu7,8.
Abstract
BACKGROUND: Radiotherapy plays an important role in the treatment of prostate cancer. Despite that sophisticated techniques of radiotherapy and radiation combined with chemotherapy were applied to the patients, some tumors may recur. Therefore, the study investigated the effect of dihydroisotanshinone I (DT) and the combination treatment of 5 μM DT and 5Gy irradiation (IR) against the migration ability of prostate cancer cells.Entities:
Keywords: CCL2; DNA damage; Dihydroisotanshinone I; Prostate cancer; Radiosensitive
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Year: 2018 PMID: 29386061 PMCID: PMC5793371 DOI: 10.1186/s40360-018-0195-4
Source DB: PubMed Journal: BMC Pharmacol Toxicol ISSN: 2050-6511 Impact factor: 2.483
Fig. 1DT blocks different human prostate cancer cells migration on in vitro Transwell migration assay. a The structure of dihydroisotanshinone I (DT). b, c, The migration ability of DU145 cells (b) and PC-3 cells (c) were measured with the transwell migration assay. After treated with indicated drugs for 24 h, the photographs (× 100) were taken and the migratory cells were measured using AlphaEase®FC StandAlone Software. Numbers of the migratory DU145 cells and PC-3 cells in each group were normalized to the control. The results were from three independent experiments. (Error bar = mean ± S.E.M. Asterisks (*) mark samples significantly different from blank group with p < 0.05)
Fig. 2The effect of DT on prostate cancer cell migration in the THP1 cell medium. The migration ability of human prostate cancers in the THP1 cells medium were measured with the transwell migration assay. a THP1 cells were cultured for 24 h. Then the condition medium were collected and placed in the lower chamber. b, c The DU145 cells (b) and PC-3 cells (c) were then placed on the upper chamber for the migration assay. After incubation for 24 h, the photographs (× 100) were taken and the migratory cells were measured using AlphaEase®FC StandAlone Software. Numbers of the migratory DU145 cells and PC-3 cells in each group were normalized to the control. The results were from three independent experiments. (Error bars = mean ± S.E.M. Asterisks (*) mark samples significantly different from blank group with p < 0.05)
Fig. 3Effects of DT on the protein secretion of IL8 or CCL2 from prostate cancer cells and on human normal fibroblasts migration in the THP1 cell medium. The condition medium of coculture with DU145 cell or PC-3 cells were collected from untreated cells, cells treated with DMSO or indicated treatment for 24 h. The secretion of human IL8 was measured with ELISA kits (a, c). The secretion of human CCL2 was measured with ELISA kits (b, d). e The migration ability of IMR-90 cells were measured with the transwell migration assay. After treated with indicated drugs for 24 h, the photographs (× 100) were taken and the migratory cells were measured using AlphaEase®FC StandAlone Software. Numbers of the migratory IMR-90 cells in each group were normalized to the control. f The migration ability of human prostate cancers in the macrophages medium were measured by the transwell migration assay. THP1 cells were treated with DMSO or DT for 24 h. Then the conditioned medium was collected and placed in the lower chamber. In the group of DT+ 5 pg/mL CCL2, 5 pg/mL CCL2 was added into the condition medium of this group. Then, PC-3 cells were then placed on the upper chamber for the migration assay. After incubation for 24 h, the photographs (× 100) were taken and the migratory cells were measured using AlphaEase®FC StandAlone Software. The quantification of the indicated migratory cells numbers in each group were normalized to the control. All the results are representative of at least three independent experiments. (Error bars = mean ± S.E.M. Asterisks (*) mark samples significantly different from blank group with p < 0.05)
Fig. 4Effects of DT on human prostate cancer cell cycle. DU145 cells or PC-3 cells were treated with 10 μM of DT for 0, 1, 3, 6 h and then subjected to flow cytometry with PI staining. The cell cycle phase distribution of DU145 cells (a) or PC-3 cells (c) after treatment with DT were measured in the indicated hours. The representative histograms between PI intensity and cell numbers of DU145 cells (b) or PC-3 cells (d) were measured by flow cytometry
Fig. 5DT inhibits the protein expression of DNA damage response proteins in prostate cancer cells. Total cell extracts of DU145 cells (a) or PC-3 cell (b) were harvested from untreated cells and cells treated with DMSO or DT for 0, 6 h. The protein was immunoblotted with polyclonal antibodies specific for DNA damage response proteins (γ-H2AX and phosphorylated-ATM). α-tubulin was used as an internal loading control