| Literature DB >> 27782833 |
Guowu Chen1, Aijie Xin1,2, Yulin Liu1,2, Changgen Shi3, Junling Chen1,2, Xiaofeng Tang1,2, Ying Chen1,2, Min Yu1,2, Xiandong Peng1,2, Lu Li1,2, Xiaoxi Sun4,5,6.
Abstract
BACKGROUND: Clinical ovulation induction induces blood estrogen (E2) in excess of physiological levels, which can hinder uterine receptivity. In contrast, progesterone produces the opposite clinical effect, suggesting that it might be capable of recovering the lost receptivity resulting from exposure to high estrogen levels. Integrins are the most widely used biological markers for monitoring uterine conditions. We studied progesterone-induced changes in integrin β expression patterns as biomarkers for changes in uterine receptivity in response to increased estrogen levels.Entities:
Keywords: Biomarkers; Concatenated progesterone effect; Integrin β1; Integrin β3; Uterine receptivity
Mesh:
Substances:
Year: 2016 PMID: 27782833 PMCID: PMC5080684 DOI: 10.1186/s12967-016-1052-0
Source DB: PubMed Journal: J Transl Med ISSN: 1479-5876 Impact factor: 5.531
Characteristics of the women in natural and stimulated cycles
| Group | COH cycle | |||
|---|---|---|---|---|
| Control group (Ctr; n = 13) | Normal effect group (NE; n = 13) | Over physiological group (OP; n = 18) | ||
| Age (year) | 30.77 ± 1.29 | 28.54 ± 0.81 | 28.61 ± 0.69 | |
| BMI (kg/m2) | 22.56 ± 0.87 | 21.19 ± 0.84 | 20.65 ± 0.76 | |
| Basal level | ||||
| E2 (pM) | 126.19 ± 12.52 | 130.43 ± 13.48 | 145.58 ± 16.46 | |
| P4 (pM) | 0.67 ± 0.10 | 0.75 ± 0.11 | 0.49 ± 0.10 | |
| LH (mIU/ml) | 4.85 ± 0.54 | 3.55 ± 0.49 | 4.35 ± 0.32 | |
| FSH (mIU/ml) | 8.19 ± 0.63 | 6.78 ± 0.48 | 7.62 ± 0.42 | |
| T (ng/dl) | 38.00 ± 3.43 | 37.38 ± 2.15 | 36.61 ± 3.01 | |
| PRL (ng/ml) | 17.86 ± 3.14 | 20.21 ± 2.41 | 16.17 ± 1.90 | |
| GN | 22.12 ± 1.14 | 22.48 ± 1.48 | ||
Values are mean ± SD
BMI body mass index; GN gonadotropin; COH controlled ovarian hyperstimulation
The hormon level of the patients at day 5 after HCG injection
| HCG administration | ||
|---|---|---|
| Normal effect group (NE; n = 13) | Over physiological group (OP; n = 18) | |
| E2 (pM) | 6545.02 ± 527.64 | 20,722.12 ± 1426.15** |
| P4 (pM) | 1.15 ± 0.18 | 1.55 ± 0.27 |
| LH (mIU/ml) | 4.75 ± 0.98 | 2.74 ± 0.63 |
Values are mean ± SD, Group NE vs Group OP
** P < 0.01
Fig. 1Expression levels of integrins β1 and β3 in endometrial cells were negatively associated with E2 levels in clinical samples. a, b Quantitative analysis of integrin β1 and β3 mRNA expression levels in the over physiological E2 group (OP). c, d Quantitative analysis of integrin β1 and β3 mRNA expression levels in the physiological effect group (NE). Double asterisk indicates significantly different from the control group, P < 0.01; NS not significantly different
Fig. 2E2 enhanced the expression and distribution of integrin β3 on the plasma membranes of Ishikawa cells. a Representative image of integrin β1 expression as detected by western blotting. b Quantitative analysis integrin β1 expression as detected by western blotting. c Quantitative analysis of integrin β1 expression on the plasma membranes of Ishikawa cells as detected by flow cytometry. d Representative image of integrin β3 expression as detected by western blotting. e Quantitative analysis integrin β3 expression as detected by western blotting. f Quantitative analysis of integrin β3 distribution on the plasma membranes of Ishikawa cells as detected by flow cytometry. Double asterisk indicates significantly different from the control group, P < 0.01
Fig. 3P4 enhanced the expression of integrin β1 and its distribution on the plasma membranes of Ishikawa cells. a Representative image of integrin β1 expression as detected by western blotting. b Quantitative analysis of integrin β1 expression as detected by western blotting. c Quantitative analysis of integrin β1 distribution on the plasma membranes of Ishikawa cells as detected by flow cytometry. d Representative image of integrin β3 expression as detected by western blotting. e Quantitative analysis of integrin β3 expression as detected by western blotting. f Quantitative analysis of integrin β3 distribution on the plasma membranes of Ishikawa cells as detected by flow cytometry. Double asterisk indicates significantly different from the control group, P < 0.01
Fig. 4P4 eliminated E2-induced reductions in the expression and plasma membrane distribution of integrin β3 in Ishikawa cells. a Representative image of integrin β1 expression as detected by western blotting. b Quantitative analysis of integrin β1 expression as detected by western blotting. c Quantitative analysis of integrin β1 expression on the plasma membranes of Ishikawa cells as detected by flow cytometry. d Representative image of integrin β3 expression as detected by western blotting. e Quantitative analysis of integrin β3 expression as detected by western blotting. f Quantitative analysis of integrin β3 distribution on the plasma membranes of Ishikawa cells as detected by flow cytometry. Double asterisk indicates significantly different in three separate assays, P < 0.01
Fig. 5Both E2 and P4 could individually modulate the attachment of embryos onto Ishikawa cells. P4 recovered the decreased efficiency of embryo attachment produced by 100 nM E2. Asterisk indicates a statistically significant difference, P < 0.05