| Literature DB >> 25234557 |
Wei Xiao, Ji Wang, Heng Li, Ding Xia, Gan Yu, Weimin Yao, Yang Yang, Haibing Xiao, Bin Lang, Xin Ma, Xiaolin Guo, Wei Guan, Hua Xu1, Jihong Liu, Xu Zhang, Zhangqun Ye.
Abstract
BACKGROUND: Bladder cancer is one of the most common cancers worldwide. Fibulin-1, a multi-functional extracellular matrix protein, has been demonstrated to be involved in many kinds of cancers, while its function in bladder cancer remains unclear. So here we investigated the expression and function of fibulin-1 in Bladder cancer.Entities:
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Year: 2014 PMID: 25234557 PMCID: PMC4180143 DOI: 10.1186/1471-2407-14-677
Source DB: PubMed Journal: BMC Cancer ISSN: 1471-2407 Impact factor: 4.430
Figure 1Fibulin-1 was down-regulated in bladder cancer. A) Fibulin-1 mRNA and B) protein expression levels were evaluated by qPCR and Western blot assay respectively in bladder cancer cell lines. GAPDH served as an internal control and loading control. C) Representative microphotographs of fibulin-1 staining in patient tissues. D) Summary of fibulin-1 expression determined by immunohistochemistry in NMIBC patient tissue samples. E) Kaplan-Meier estimate of recurrence-free survival stratified by fibulin-1 expression in 139 NMIBC patients.
Clinicopathological features of fibulin-1 expression in 139 NMIBC patients
| Characteristic | Total (n = 139) | Fibulin-1 expression | P-value | ||
|---|---|---|---|---|---|
| Negative (75) | Weak (49) | Strong (15) | |||
| Sex | 0.909 | ||||
| Men | 102 | 54 (52.9%) | 37 (36.3%) | 11 (10.8%) | |
| Women | 37 | 21 (56.8%) | 12 (32.4%) | 4 (10.8%) | |
| Age (years) | 0.657 | ||||
| <average(62) | 64 | 32 (50.0%) | 24 (37.5%) | 8 (12.5%) | |
| ≥average(62) | 75 | 43 (57.3%) | 25 (33.3%) | 7 (9.4%) | |
| Grade | <0.01* | ||||
| Low grade | 91 | 40 (44.0%) | 37 (40.7%) | 14 (15.4%) | |
| High grade | 48 | 35 (72.9%) | 12 (25.0%) | 1 (2.1%) | |
| Stage | 0.225 | ||||
| PTa | 63 | 36 (57.1%) | 18 (28.6%) | 9 (14.3%) | |
| PT1 | 76 | 39 (51.3%) | 31 (40.8%) | 6 (7.9%) | |
*Two-tailed fisher’s exact test was done to determine the relationship of fibulin-1 expression with various variables and statistical significance was set at P < 0.05.
Multivariate Cox regression analysis of potential risk factors for early recurrence of NMIBC
| Characteristic | P (cox-regression) | Risk Ratio (RR) | 95% confidence interval | |
|---|---|---|---|---|
| Lower | Upper | |||
| Sex | 0.548 | 0.786 | 0.409 | 1.510 |
| Age | 0.225 | 0.754 | 0.419 | 1.356 |
| Grade | 0.000* | 6.326 | 3.318 | 11.392 |
| Stage | 0.512 | 1.085 | 0.597 | 1.974 |
| Fibulin-1 expression | 0.019* | 2.102 | 1.130 | 3.912 |
*P value was considered to indicate statistical significance.
Figure 2Fibulin-1 was silenced in bladder cancer by promoter hypermethylation. A) fibulin-1 expression in five bladder cell lines with or without 5-aza-dC treatment was determined by real-time RT-PCR. The results are the average of three independent experiments normalized to GAPDH levels. B) fibulin-1 methylation status in 5 bladder cell lines and two matched pairs of normal (N)/tumor (T) bladder tissues were analyzed by MSP. (M) amplification using primers specific for methylated DNA. (U) amplification using primers specific for unmethylated DNA. IVD (in vitro methylated DNA) and ddH2O were positive and negative controls, respectively. C) qPCR was used to analyze fibulin-1 expression in two matched pairs of bladder tissues mentioned in B). D) Pyrosequencing of fibulin-1 promoter region two matched pairs of bladder tissues mentioned in B), the average methylation rate of 5 CpG was listed. E) The correlation analysis of fibulin-1 expression and methylation in 139 NMIBC patient samples.
Figure 3Fibulin-1 functioned as a tumor suppressor in bladder cancer cells. The effect of ectopic FBLN1 expression on tumor cell proliferation was investigated by A) CCK-8 and B) EdU assay in 5637 and HT1376 cells. Data are plotted as the mean ± SD of 3 independent experiments relative to mock treatments. C) The effect of ectopic FBLN1 expression on tumor cell tumorgenesis was investigated by the monolayer colony-formation assay. Quantitative analyses of colony numbers are shown as mean ± SD. D) Fibulin-1 induced apoptosis of bladder cancer cells. The early stage apoptosis cells were detected for Annexin V-PE+/7-AAD-. Quantitative analyses of apoptotic cell numbers are shown in the right panel as values of mean ± SD. Asterisk indicates p < 0.05.
Figure 4Fibulin-1 inhibited motility and angiogenesis activation of bladder cancer cells. A) 5637 and C) HT1376 cells were transfected with pEGFP-N1 or pEGFP-FBLN1 for 72 h and then the abilities of cell migration and invasion were detected respectively. Representative images showed results of one assay, B) and D) the column chart showed the mean ± SD of five randomly selected microscope fields per well. E) Tube formation of HUVECs was determined by assaying the numbers of branch nodes after 24 h of culture under a phase contrast microscope. HUVECs were cultured in the following media: conditioned media (CM) of 5637 cells, CM of 5637 cells transfected with pEGFP-N1, CM of 5637 cells transfected with pEGFP-FBLN1 and CM of 5637 cells transfected with pEGFP-FBLN1 with fibulin-1 antibody pretreatment. F) The summary and statically analysis of E). All these experiments were repeated at least three times. Asterisk indicates p < 0.05.
Figure 5Fibulin-1 suppressed bladder cancer Five mice were used per group conducted by 5637 cells transduced to express blank vehicle (Lenti-NC) or fibulin-1 (Lenti-FBLN1). A) Tumor growth curves of xenograft inoculated in nude mice. Curves represent average tumor size of 5 mice per time point. B) Representative images showed the xenograft tumors. C) Representative tumor sections of xenograft tumors derived from 5637 cells transduced to express Lenti-NC (a–c) and Lenti-FBLN1 (d–f). (a) and (d) show H&E stained images; (b) and (e), TUNEL of the xenograft tumors, white arrows showed the positive plots; (c) and (f), immunohistochemistry for CD31 (in dark brown color). D) Quantitative analyses of TUNEL are shown as mean ± SD of five randomly selected microscope fields per slice of mice in the two groups. E) The mean ± SD of blood vessel number of five randomly selected microscope fields per slice of mice in the two groups. Asterisk indicates p < 0.05.