| Literature DB >> 23251297 |
Xu-Yin Zhang1, Jing-Xin Ding, Xiang Tao, Ke-Qin Hua.
Abstract
FSH may increase the risk of ovarian malignancy and play a key role in ovarian carcinogenesis, although the mechanism(s) are undefined. HMGA2 overexpression has been observed to be an early genetic event in tumorigenesis. The present study was designed to investigate the effect of FSH on let-7, HMGA2 and p53 expression in normal fimbrial epithelial cells of ovarian high-grade serous carcinomas (HGSCs). A primary human Fallopian tube (FT) fimbrial epithelium ex vivo culture system of low-grade serous carcinomas (LGSCs) and HGSCs was established. The levels of HMGA2, let-7, p53 and FSHR were evaluated by western blotting and reverse transcription (RT)-PCR. Treatment with FSH significantly increased HMGA2 expression in a time-dependent manner and the let-7 expression levels decreased gradually over time in the normal fimbrial epithelial cells of HGSCs. However, we did not observe similar results in LGSCs. In addition, knockdown of let-7 suppressed HMGA2 expression. p53 was not detected in the normal fimbrial epithelial cells before or after FSH administration. Our results indicate that FSH increases the expression of HMGA2 by downregulating the expression of let-7 in normal fimbrial epithelial cells of HGSCs, but no occurrence of p53 mutation. The susceptibility of fimbria to FSH in HGSCs compared with those in LGSCs is different.Entities:
Year: 2012 PMID: 23251297 PMCID: PMC3524292 DOI: 10.3892/etm.2012.794
Source DB: PubMed Journal: Exp Ther Med ISSN: 1792-0981 Impact factor: 2.447
Clinical characteristics of the patients.
| Characteristic | HGSC (n) | LGSC (n) |
|---|---|---|
| Total | 18 | 16 |
| Patient age (years) | ||
| ≤50 | 6 | 7 |
| >50 | 12 | 9 |
| CA125 (U/ml) | ||
| ≤500 | 3 | 6 |
| >500 | 15 | 10 |
| Disease stage | ||
| I–II | 3 | 5 |
| III–IV | 15 | 11 |
| Residual disease | ||
| <1 cm | 14 | 15 |
| ≥1 cm | 4 | 1 |
HGSC, high-grade serous carcinoma; LGSC, low-grade serous carcinoma.
Figure 1HMGA2 and p53 expression were not detected by western blot analysis in LGSCs and HGSCs. FSHR mRNA expression detected by western blot analysis was observed in 100% of the FTE cells of HGSCs and LGSCs. GAPDH was used as a loading control. HGSC, high-grade serous carcinoma; LGSC, low-grade serous carcinoma; FTE, Fallopian tube epithelium.
Figure 2FSH stimulation of HMGA2 expression in FTE cells of HGSCs. The level of HMGA2 protein expression was determined using western blot analysis following FSH stimulation at different doses and time points. (A) Dose response: HMGA2 protein expression in FTE cells of HGSCs after stimulation with 0 to 80 mIU/ml FSH. (B) Time response: HMGA2 protein expression in FTE cells of HGSCs after stimulation with 40 mIU/ml FSH for 0–72 h. (C) Decreased let-7 expression in HGSCs after stimulation with FSH treatment. The level of let-7 expression was determined using RT-PCR following stimulation with 40 mIU/ml FSH at different time points and was lowest from 48 h after stimulation with 40 mIU/ml FSH. let-7b expression in FTE cells of the LGSCs by FSH stimulation was not markedly altered. NC, negative control; HGSC, high-grade serous carcinoma; LGSC, low-grade serous carcinoma; FTE, Fallopian tube epithelium.