| Literature DB >> 23594563 |
Ming-Qi Fan, Chi-Bing Huang, Yan Gu, Ya Xiao, Jin-Xin Sheng, Lin Zhong.
Abstract
BACKGROUND: Growing evidences indicate microRNAs play important roles in cancer development, progression, metastasis and may constitute robust biomarkers for cancer prognosis. The aim of this study was to identify the clinical and functional association of microRNA-20a (miR-20a) in hepatocellular carcinoma (HCC).Entities:
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Year: 2013 PMID: 23594563 PMCID: PMC3699415 DOI: 10.1186/1756-9966-32-21
Source DB: PubMed Journal: J Exp Clin Cancer Res ISSN: 0392-9078
Clinical characteristics of the 100 HCC patients according to high- or low miR-20a expression level
| Age | 100 | 57.820 ± 7.330 | 53.64 ± 8.341 | 0.212† |
| Sex | | | | |
| Male | 84 | 44 | 40 | 0.585‡ |
| Female | 16 | 6 | 10 | |
| Underlying liver disease | | | | |
| HBV | 95 | 47 | 48 | 1.000§ |
| others | 5 | 3 | 2 | |
| Cirrhosis | | | | |
| Yes | 95 | 47 | 48 | 1.000 § |
| No | 5 | 3 | 2 | |
| Tumor stage | | | | |
| I + II | 66 | 32 | 34 | 0.673‡ |
| III | 34 | 18 | 16 | |
| Histologic grade | | | | |
| Differentiated | 88 | 41 | 47 | 0.065§ |
| Undifferentiated | 12 | 9 | 3 | |
| Milan criteria | | | | |
| In | 55 | 24 | 31 | 0.159‡ |
| Out | 45 | 26 | 19 | |
| Tumor size (cm) | | | | |
| ≤5 | 60 | 24 | 36 | 0.014‡ |
| >5 | 40 | 26 | 14 | |
| Multinodular | | | | |
| Yes | 43 | 25 | 18 | 0.034 ‡ |
| No | 57 | 25 | 32 | |
| Micro-vascular invasion | | | | |
| Yes | 22 | 16 | 6 | 0.016 ‡ |
| No | 78 | 34 | 44 | |
| pre-LT serum AFP level | | | | |
| ≤400 (ng/ml) | 63 | 30 | 33 | 0.534 ‡ |
| >400 (ng/ml) | 37 | 20 | 17 | |
| Overall survival | 42/100 | 11/50 | 31/50 | - |
| HCC recurrence | 58/100 | 37/50 | 21/50 | - |
NOTE: AFP, alpha-fetoprotein. †Unpaired student t test; ‡chi-square test; §Fisher’s exact test.
Figure 1Decrease expression of miR-20a in HCC is associated with tumor recurrence and poor prognosis following LT. (A) Expression of miR-20a was measured in 100 FFPE HCC samples, 10 normal liver tissue, normal liver cell line LO2 and 3 HCC cell lines by qRT-PCR, and the expression levels of miR-20a were normalized to U6 RNA expression for subsequent analyses. (B) The expression levels of miR-20a were further down-regulated in HCC samples of patients with tumor recurrence after LT. (C) The expression levels of miR-20a were much lower in the patients who had died after LT than the patients who still survived. (D and E) Kaplan-Meier analyses of overall survival and recurrence-free survival in 100 patients with HCC following LT according to the expression levels of miR-20a.
Univariate and multivariate Cox regression analyses of overall survival in 100 HCC patients following LT
| Age | 0.875 | 0.912-1.172 | 0.169 | - | - | - |
| Gender | 1.034 | 0.561-1.907 | 0.915 | - | - | - |
| HBV infection | 0.342 | 0.261-0.745 | 0.230 | - | - | - |
| Cirrhosis | 0.833 | 0.495-1.438 | 0.467 | - | - | - |
| Tumor size | 1.319 | 1.012-1.894 | 0.021* | 1.175 | 0.981-1.857 | 0.035* |
| Tumor stage (III) | 2.938 | 1.359-5.493 | 0.018* | 2. 354 | 0.846-2.943 | 0.851 |
| Histologic grade (G3/G1-2) | 3.342 | 1.837-6.421 | 0.009* | 1.773 | 0.732-3.101 | 0.082 |
| Milan criteria (out) | 1.756 | 1.043-3.433 | 0.017* | 1.365 | 0.935-2.778 | 0.347 |
| AFP >400 (ng/ml) | 2.027 | 1.386-3.543 | 0.023* | 1.569 | 1.031-4.603 | 0.031* |
| Micro-vascular invasion | 3.739 | 1.929-6.758 | 0.005* | 2.671 | 1.756-5.545 | 0.009* |
| miR-20a (low) | 4.483 | 2.769-9.572 | 0.009* | 4.937 | 2.221-9.503 | 0.022* |
Note: *statistically significant difference.
Univariate and multivariate Cox regression analyses of recurrence-free survival in 100 HCC patients following LT
| Age | 0.849 | 0.713-1.275 | 0.746 | - | - | - |
| Gender | 1.092 | 0.534-2.801 | 0.331 | - | - | - |
| HBV infection | 0.583 | 0.228-1.144 | 0.192 | - | - | - |
| Cirrhosis | 0.746 | 0.434-1.204 | 0.493 | - | - | - |
| Tumor size | 1.632 | 1.031-1.918 | 0.011* | 1.253 | 1.123-1.792 | 0.014* |
| Tumor stage (III) | 1.876 | 1.319-2.592 | 0.026* | 1.348 | 0.935-1.813 | 0.365 |
| Histologic grade (G3/G1-2) | 3.731 | 1.774-5.103 | 0.024* | 2.931 | 1.526-3.858 | 0.079 |
| Milan criteria (out) | 2.182 | 1.962-6.212 | 0.018* | 1.935 | 1.332-3.563 | 0.156 |
| AFP >400 (ng/ml) | 1.939 | 1.638-4.809 | 0.012* | 2.235 | 1.771-4.595 | 0.028* |
| Micro-vascular invasion | 4.017 | 3.137-7.583 | 0.009* | 3.643 | 2.964-6.927 | 0.012* |
| miR-20a (low) | 4.591 | 2.933-8.457 | 0.015* | 4.281 | 3.316-6.741 | 0.013* |
Note: *statistically significant difference.
Figure 2MiR-20a restoration in HCC cell lines inhibit proliferation and block cell cycle progression in vitro (A) and (B) Validation of miR-20a level in SMMC-7721 and HepG2 cells upon transfection with miR-20a precursor. (C) Proliferation assay of HCC cell lines in response to miR-20 restoration. HepG2 or SMMC-7721 cells were seeded into 96-well plates and incubated in the presence of miR-20a precursor or control oligonucleotide. Cell proliferation assay was done after culturing for 72 h. The experiment was done in triplicate. (D) and (E) Influence of miR-20a on cell cycle progression of HCC cell lines. SMMC-7721 and HepG2 cells were transfected with miR-20a precursor. Cell cycle analysis was performed by flow cytometry. Data are given as mean ± SD of three independent experiments. Asterisks indicate statistical significance of differences in the number of cells in G1, S, or G2/M between miR-20a precursor transfected and control oligo transfected cells (P < 0.05; Student’s t test).
Figure 3MiR-20a restoration in HCC cell lines induces apoptosis a SMMC-7721 and HepG2 cells transfected with miR-20a precursor were stained with FITC and PI. 20,000 cells were analyzed by flow cytometry. The LR quadrant represents the percentage of apoptotic cells (annexin V + and PI-) in the total cell population. Each type of cell was assayed in triplicate. All data were processed by Student’s t test and presented as mean ± SD. Asterisks indicate statistical significance of differences in the apoptosis rate of cells between miR-20a precursor transfected and control oligonucleotide transfected cells (P < 0.05; Student’s t test).
Figure 4MiR-20a directly regulates Mcl-1 expression. (A) Wild-type and mutant of putative miR-20a target sequences of Mcl-1 3′UTR. (B) MicroRNA luciferase reporter assay. Wild type and mutant miR-20a target sequences were fused with luciferase reporter and cotransfected with miR-20a precusor or control oligo into HEK293T cells. The firefly luciferase activity of each sample was normalized to the Renilla luciferase activity. MiR-20a significantly suppressed the luciferase activity of wild-type Mcl-1 3′UTR (p = 0.027). (C) Effects of miR-20a overexpression on the level of cellular Mcl-1 in HepG2 and SMMC-7721 HCC cells without transfection or cells transfected with NC or miR-20a were analyzed by western blot. (D) Analysis of Mcl-1 and miR-20a expression in the same HCC tissue by IHC. Brown signal in IHC was considered as positive staining for Mcl-1. Scale bar = 200 μm.